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110 results about "Photosynthetic efficiency" patented technology

The photosynthetic efficiency is the fraction of light energy converted into chemical energy during photosynthesis in plants and algae. where C₆H₁₂O₆ is glucose (which is subsequently transformed into other sugars, cellulose, lignin, and so forth). The value of the photosynthetic efficiency is dependent on how light energy is defined – it depends on whether we count only the light that is absorbed, and on what kind of light is used (see Photosynthetically active radiation). It takes eight (or perhaps 10 or more) photons to utilize one molecule of CO₂. The Gibbs free energy for converting a mole of CO₂ to glucose is 114 kcal, whereas eight moles of photons of wavelength 600 nm contains 381 kcal, giving a nominal efficiency of 30%. However, photosynthesis can occur with light up to wavelength 720 nm so long as there is also light at wavelengths below 680 nm to keep Photosystem II operating (see Chlorophyll). Using longer wavelengths means less light energy is needed for the same number of photons and therefore for the same amount of photosynthesis. For actual sunlight, where only 45% of the light is in the photosynthetically active wavelength range, the theoretical maximum efficiency of solar energy conversion is approximately 11%. In actuality, however, plants do not absorb all incoming sunlight (due to reflection, respiration requirements of photosynthesis and the need for optimal solar radiation levels) and do not convert all harvested energy into biomass, which results in a maximum overall photosynthetic efficiency of 3 to 6% of total solar radiation. If photosynthesis is inefficient, excess light energy must be dissipated to avoid damaging the photosynthetic apparatus. Energy can be dissipated as heat (non-photochemical quenching), or emitted as chlorophyll fluorescence.

Preparation method and application of photosynthetic promoter containing carbon quantum dots

The invention relates to the technical field of agricultural application of nano materials, and discloses a preparation method and application of a photosynthetic accelerant containing carbon quantum dots. Urea and citric acid are adopted as raw materials, and the nitrogen-carbon molar ratio and hydrothermal reaction parameters are optimized, so that efficient doping of nitrogen and accurate regulation and control of the particle size are achieved, and the photosynthetic accelerant containing the carbon quantum dots is obtained. The nitrogen-doped carbon quantum dot photosynthetic promoter with excellent upconversion performance is successfully synthesized, the promoter has good water solubility and biocompatibility, the photosynthetic efficiency of plants can be greatly improved within the concentration range of 0-100 mg / L, a safe application window is defined, and by establishing foliage spraying and water planting dual-mode application specifications, the application range of the nitrogen-doped carbon quantum dot photosynthetic promoter is widened, and the application range of the nitrogen-doped carbon quantum dot photosynthetic promoter is widened. The problems that current crops are insufficient in solar spectrum utilization and low in light energy conversion efficiency are solved in a targeted manner by utilizing an ultraviolet light-photosynthetically active radiation conversion function mediated by the carbon quantum dots and combining the targeted enrichment permeation characteristic of the carbon quantum dots in chloroplast.
Owner:XIJING UNIV

Engineering chlamydomonas for synthesizing high-value pigment as well as construction method and application of engineering chlamydomonas

PendingCN121109140AUnicellular algaeMicroorganism based processesBiotechnologyChlamydomonas reinhardtii
The invention discloses engineering chlamydomonas reinhardtii for synthesizing high-value pigment and a construction method and application thereof.An engineering chlamydomonas reinhardtii strain Blup-BKT-CHYB-CHLC is preserved in the China General Microbiological Culture Collection Center on September 1, 2025, and the preservation number is CGMCC NO.46634. The content of astaxanthin in the constructed engineering chlamydomonas reinhardtii strain reaches 25.5 mg / L, and the content of astaxanthin in the engineering chlamydomonas reinhardtii strain reaches 9.5 mg / L; in addition, the light energy utilization efficiency is remarkably enhanced, the stress resistance is improved, very strong oxidation resistance is achieved, the accumulation of astaxanthin endows the engineering strain with highlight tolerance, the yield of high-value pigments is increased, and the biomass of the engineering strain is greatly superior to that of a wild strain under the highlight condition. In addition, the chlorophyll c synthase is applied to the reconstruction of a pigment system of the chlamydomonas reinhardtii for the first time, a frontier tool is quickly converted, and a molecular mechanism of'chlorophyll c-astaxanthin-blue pigment 'for synergistically regulating the photosynthetic efficiency of the chlamydomonas reinhardtii and product synthesis is clarified for the first time. The research blank of pigment system coupling regulation and control of photosynthesis and metabolism in the chlamydomonas reinhardtii is filled.
Owner:DALIAN UNIV OF TECH

Intelligent agricultural crop growth analysis system based on big data

The invention discloses a smart agricultural crop growth analysis system based on big data. Initial crop data is acquired through a sensor array; performing noise reduction processing on the initial crop data by using a wavelet denoising-Kalman filtering coupling algorithm, performing feature extraction on the image data based on an improved MobileNetV3 network, and outputting a crop morphological feature vector; constructing a sequential network through LSTM to perform correlation analysis on the environment and physiology, learning a dynamic relationship between parameters and photosynthetic efficiency, and establishing a crop state prediction model; inputting the noise-reduced crop data into a prediction model for prediction, and outputting a growth health score; performing crop health grade judgment according to the growth health score, and generating a crop growth intervention strategy according to a judgment result. The growth health score of the crop can be predicted more accurately, and the resource utilization efficiency is improved.
Owner:NANTONG UNIV

Garden building method and pruning method for double-layer dwarf open-center-shaped high-photosynthetic-efficiency cultivation pear garden

The invention provides an orchard building method and a pruning method of a double-layer dwarf open-center-shaped high-photosynthetic-efficiency cultivation pear orchard, and belongs to the technical field of fruit tree cultivation. According to the orchard building method for the high-photosynthetic-efficiency cultivation pear orchard, multiple factors such as the sun drift angle, the day photosynthetic efficiency change around pear trees, the geographic latitude of the orchard and the growth period of pear varieties are comprehensively considered, and the planting row direction and the high-photosynthetic-efficiency tree form are determined and pruned according to the latitude of the place where the orchard is located and the day photosynthetic efficiency change around the pear trees. By means of the orchard building method, by selecting a high-light-effect tree form and a scientific pruning method, controlling the height and size of a tree crown, thinning and removing over-dense branches on the upper portion and adjusting a fruiting branch group, the ventilation and light transmission conditions in the tree crown can be effectively improved, shielding of the tree crown to lower leaves is reduced, and illumination of the lower leaves is further improved. The method is simple and easy to implement, convenient to popularize and apply, and capable of remarkably improving the pear tree photosynthesis efficiency and improving the fruit yield and quality of pears.
Owner:ZHEJIANG ACADEMY OF AGRICULTURE SCIENCES

Genetic traits for improved photosynthesis and food production and pathogen resistance in plants

PCT designated stageWO2025255275A2Plant peptidesVector-based foreign material introductionSucroseSynechococcus elongatus
By engineering genetic traits associated with photosynthesis in plants, transgenic plants with increased crop yield can be generated, which will ultimately lead to increased food production in the field. To obtain beneficial genetic traits for enhanced photosynthesis, accelerated evolution is applied under salt stress in a cyanobacteria species, Synechococcus elongatus PCC 7942, by conditionally suppressing its mismatch repair system. Through high-throughput screening for biomass accumulation and sucrose production, it is discovered that specific amino acid changes in the pre-Dl protein of Photosystem II (PSII), encoded by the psbA genes, can improve efficiency of photosynthesis under salt stress, as well as pathogen resistance. Next, the same amino acid changes were made in Arabadopsis and proved that photosynthetic efficiency (measured via growth rate) is also increased in this model vascular plant.
Owner:UNIV OF FLORIDA RESEARCH FOUNDATION INC

Cotton irrigation intelligent control method and system based on stem flow data

The invention relates to the technical field of agricultural irrigation control, in particular to an intelligent cotton irrigation control method and system based on stem flow data, and the method comprises the following steps: collecting data, calculating a stem flow rate, constructing a monitoring data set, extracting morning data, calculating a morning optical flow conversion coefficient, deducing a noon theoretical potential stem flow rate, and calculating a noon optical flow conversion coefficient. Comparing the theoretical value with the actual value to calculate the instantaneous deficit depth, calculating the deficit width based on the duration continuously lower than the theoretical value, screening the maximum depression depth, multiplying the maximum depression depth by the deficit width to calculate the pore closing resistance index, and constructing an opening instruction when the index is greater than a threshold value. According to the method, the potential rate is deduced through the morning conversion relation, the deficit depth and width are quantified, the pore closing resistance index is calculated to evaluate water stress, the instruction is triggered based on the physiological response, water demand diagnosis is achieved, timely water supplementing is ensured, the irrigation precision is improved, and the photosynthetic efficiency is guaranteed.
Owner:INSTITUTE OF ENVIRONMENT AND SUSTAINABLE DEVELOPMENT IN AGRICULTURE CAAS +1

Method and device for promoting growth of indoor potted plants through heterotrophy

The invention discloses an indoor potting heterotrophic strengthening method and a device thereof, which are used for solving the problems of insufficient accumulated temperature and low photosynthesis efficiency of plants in an indoor environment by supplying organic carbon source steam to roots and preventing the conditions of excessive growth, small plants, weak vitality and high incidence of diseases caused by the problems.
Owner:GUANGDONG TIANXUAN ECOLOGICAL AGRICULTURE CO LTD

Greenhouse micro-grid dynamic scheduling and photosynthetic efficiency collaborative optimization control method and system

The invention relates to the technical field of facility agriculture and micro-grid cooperative control, and particularly discloses a greenhouse micro-grid dynamic scheduling and photosynthetic efficiency cooperative optimization control method and system. The method comprises the following steps: constructing an energy management scheduling model with maximization of accumulated net photosynthetic products of crops in a scheduling period and minimization of net energy cost of a micro-grid as a collaborative optimization target; collecting real-time environment parameter data in the greenhouse and operation data of a micro-grid wind and light storage system and a load; a multi-objective optimization algorithm is adopted to solve the model online, and a joint optimization strategy including a micro-grid dynamic scheduling instruction and a greenhouse environment coordination control instruction is output; and executing the joint optimization strategy, and dynamically regulating and controlling the power output distribution of the micro-grid, the energy storage charging and discharging state and the operation process of the environment regulation and control equipment. According to the method, the multi-target collaborative optimization model with'photosynthetic product accumulation maximization 'and'net energy cost minimization' as the core is constructed, so that comprehensive maximization of energy benefits and agricultural production benefits is realized.
Owner:HEFEI LIANLIAN INTELLIGENT TECHNOLOGY CO LTD

Intelligent inter-plant light supplement lamp control system based on PWM dimming and wireless networking

The invention discloses an inter-plant light supplement lamp intelligent control system based on PWM dimming and wireless networking, and relates to the technical field of plant light supplement illumination control, and during operation of the system, the system comprises a central management server, a wireless communication gateway, an environmental data acquisition unit, an intelligent ventilation light supplement terminal, a distributed power supply management unit and a mobile monitoring terminal. The server generates a PWM control instruction based on the environmental parameters and issues the PWM control instruction to the intelligent terminal through the wireless gateway; and the terminal adjusts the light intensity of the LED array by using the PWM driving unit, and synchronously controls the active ventilation device to improve the microenvironment between plants. Through deep integration of PWM dimming and wireless networking, gridding management and control of the greenhouse environment are realized, the photosynthetic efficiency of the middle and lower parts of plants is effectively improved, the gas diffusion rate is enhanced, the system wiring cost and energy efficiency loss are reduced, and precise agricultural production is realized.
Owner:SHENZHEN LONGMAN SCI & TECH IND

Intelligent illumination control system for greenhouse plant growth

The invention relates to the technical field of facility agriculture and environment control, and discloses an intelligent illumination control system for greenhouse plant growth. In order to solve the problems that an existing light supplementing strategy lacks physiological feedback, light damage is easily caused, and shutdown is caused by sensor faults, the system comprises a multi-mode sensing assembly, a central processing unit and a dynamic spectrum execution assembly. The system collects crop non-photochemical quenching coefficients (NPQ) and environmental factors in real time, and dynamically calculates light saturation points by using a multi-factor coupling model; when the NPQ exceeds a threshold value, the spectrum ratio is automatically adjusted to inhibit light stress; three-dimensional canopy scanning is combined to realize gridding differentiation light supplement; when the sensor fails, virtual parameters are reconstructed based on the temperature trend to maintain fault-tolerant operation; in addition, the system estimates stomatal conductance according to air humidity and matrix conductivity, and dynamically corrects target light intensity to avoid aggravation of water deficit; accurate light supply according to needs is achieved, the photosynthetic efficiency and the system reliability are remarkably improved, and the system is suitable for plant factories and multi-span greenhouses.
Owner:SOUTH CHINA AGRICULTURAL UNIVERSITY

Cotton one-film six-row wide-narrow-row close planting and staggered planting method

The invention discloses a one-film six-row wide-narrow-row close-planting staggered planting method for cotton, which comprises the following steps: measuring the soil nutrient content of a region to be planted, calculating the comprehensive score of soil fertility, selecting a basic plant spacing according to the tillering coefficient of a cotton variety, fitting an accumulated temperature correction function, calculating a predicted value of the tillering rate, and calculating a dynamic offset in combination with the latitude of a planting field. Determining a narrow row spacing and a sowing depth according to the dynamic offset, extracting a growth picture of the same variety of cotton in the same region after the flowering and boll-setting period, extracting a planting row spacing mean value of the canopy coverage in a preset range as a wide row spacing, planting cotton according to the basic plant spacing, the narrow row spacing, the wide row spacing and the sowing depth, and monitoring the canopy photosynthetically active radiation in real time. And dynamically regulating and controlling a drip irrigation fertilization strategy according to the photosynthetically active radiation of the canopy. By means of the method, the photosynthetic efficiency, the water and fertilizer utilization efficiency and the stress resistance of cotton groups can be improved, a brand new technical path is provided for high-yield and high-quality cultivation of cotton, and the method has important significance in promoting intelligent transformation of the cotton planting industry.
Owner:博尔塔拉蒙古自治州农业技术推广中心

Sunlight greenhouse high-photosynthetic-efficiency cultivation method for overwintering tomatoes

The invention relates to the technical field of vegetable facility cultivation, and discloses a sunlight greenhouse high-lighting-effect cultivation method for overwintering tomatoes, which comprises the following steps: S1, greenhouse preparation: selecting a single-slope sunlight greenhouse with a front slope covering and walls on the east, middle and west sides, covering the front slope with a light-transmitting heat-insulating material, and covering the front slope with a heat-insulating roller shutter quilt containing double-layer heat-insulating cotton at night. According to the sunlight greenhouse high-photosynthetic-efficiency cultivation method for the overwintering tomatoes, by optimizing model selection and configuration of a greenhouse (such as covering a front slope with a high-light-transmittance PO film), adopting an accurate one-ridge double-row staggered-row planting mode and cooperating with scientific pruning and pruning, illumination distribution and a plant population structure in the greenhouse are systematically improved, and the yield of the greenhouse is increased; according to the method, the effective light reception of the middle and lower parts of the plants under the weak light condition in winter is remarkably enhanced, the photosynthetic efficiency of the whole canopy is improved, the problems of excessive growth of the plants, canopy closing, uneven coloring and the like caused by a traditional close planting mode are effectively solved, and a solid foundation is laid for realizing high quality and high yield of the overwintering tomatoes.
Owner:山东物泽生态农业科技发展有限公司

Estimation method of wetland vegetation photosynthetic efficiency under influence of climate change

PendingCN120849749AComplex mathematical operationsICT adaptationData setWetland vegetation
The invention discloses a method for estimating the photosynthetic efficiency of wetland vegetation under the influence of climate change, relates to the technical field of agricultural remote sensing, and aims to solve the problems that the photosynthetic efficiency of the wetland vegetation is inaccurately estimated and the future cannot be predicted in the conventional method. The method comprises the steps of 1, obtaining and preprocessing a data set; 2, collecting the month-by-month data into a growth season data set; 3, calculating to obtain a multi-year average LAI value in the research time period; 4, obtaining wetland vegetation distribution as a research area range; 5, obtaining a pixel-by-pixel growth season SIF value, a pixel-by-pixel growth season LAI value, a pixel-by-pixel growth season historical meteorological element value and a pixel-by-pixel growth season future meteorological element value in the research area range; 6, calculating the photosynthetic efficiency value of the wetland vegetation pixel by pixel in the range of the research area; 7, constructing a pixel-by-pixel wetland vegetation photosynthetic efficiency estimation model under the influence of climate change; and 8, predicting the photosynthetic efficiency of the future wetland vegetation in the range of the research area. According to the method, the future wetland vegetation photosynthetic efficiency can be quickly and accurately estimated and predicted on the regional scale.
Owner:NORTHEAST INST OF GEOGRAPHY & AGRIECOLOGY C A S

A tea seedling cultivation device

This utility model belongs to the field of tea tree cultivation technology, and particularly relates to a tea tree seedling cultivation device, including a support plate, a middle partition plate installed at the top of the support plate, a top frame plate installed at the top of the middle partition plate, and multiple sets of mounting slots evenly spaced on the top frame plate. Multiple sets of drive discs are rotatably connected to the middle partition plate, and each drive disc has a linkage gear set installed at its bottom. By installing a rotatable connecting bracket at the top of the top frame plate, and mounting multiple sets of supplementary lighting lamps on the connecting bracket, when the illumination angle of the supplementary lighting lamps needs to be adjusted, a third motor drives the drive gear to rotate, which in turn drives the third motor on the connecting bracket to rotate, thereby automatically adjusting the illumination angle of the supplementary lighting lamps. This solves the defect of fixed illumination angle in existing technologies. Through synchronously rotating mounting cylinders and automatic adjustment of the supplementary lighting lamp angle, this device effectively adapts to the light requirements of tea tree seedlings at different growth stages, improving photosynthetic efficiency.
Owner:MENGHAI PUREN AGRI MANOR CO LTD

Plant polypeptide Pep8 for improving salt tolerance of sweet potatoes and application of plant polypeptide Pep8

The invention discloses a novel polypeptide with sweet potato salt tolerance regulation activity and derived from sweet potatoes. The amino acid sequence of protein coded by the novel polypeptide is AGPSKSGKGGKKRR. Functional verification shows that the salt tolerance of the sweet potatoes can be remarkably improved by exogenous application, so that the growth and development of the sweet potatoes are promoted in a salt stress environment, and the photosynthetic efficiency is improved. The novel polypeptide provided by the invention can be used for cultivating a new sweet potato variety with enhanced salt tolerance, and has important application value for expanding a sweet potato planting area and improving the utilization rate of saline-alkali soil.
Owner:CHINA WEST NORMAL UNIVERSITY

Cold adaptation regulatory gene RAF3 / RAF6 and application thereof

This invention provides a cold adaptation regulatory gene RAF3 / RAF6 This invention relates to the field of genetic engineering technology and its applications. Specifically, it provides a cold adaptation regulatory gene. RAF3 / RAF6 , wherein RAF3 The genome sequence is shown in SEQ ID No. 1. RAF6 The genome sequence is shown in SEQ ID No. 2. This invention also provides the... RAF3 / RAF6 The encoded protein, and its role in reducing RAF3 / RAF6 By reducing the expression level of a protein or decreasing its activity or content, the cold tolerance and photosynthetic efficiency of plants can be improved, meaning that under cold conditions, RAF3 and / or RAF6 It reduced photosynthesis while enhancing the expression of cold-response genes, ultimately inhibiting plant growth and promoting plant adaptation to cold stress.
Owner:GUANGZHOU UNIVERSITY OF CHINESE MEDICINE

Method for enhancing adhesion ability of coral larvae after enhancement and release

The invention discloses a method for enhancing adhesion ability of coral larvae after enhancement and release. According to the method, coral larvae (such as coral plankton larvae) are exposed to a 40 mM calcium chloride (CaCl2) solution to be treated for 12-24 hours, and then enhancement and release are carried out. The treated larvae show remarkably enhanced adhesion ability after releasing, the accumulated adhesion rate within 3 days reaches 66.33% and is increased by 240% compared with that of a control group in the same period, and the average survival rate reaches 98.14%. Meanwhile, the transverse growth area and the budding number of attached larvae are remarkably increased, and the density of zooxanthellae, the photosynthetic efficiency and the chlorophyll content have no negative effects. The CaCl2 solution is used for successfully inducing the continuous attachment effect of the coral larvae, the method is easy and convenient to operate, low in cost and environmentally friendly, the attachment success rate of enhancement and release of the coral larvae and the subsequent growth performance of the larvae are remarkably increased, and the method is suitable for repairing and protecting a coral reef ecological system.
Owner:SOUTH CHINA SEA INST OF OCEANOLOGY CHINESE ACAD OF SCI

Application of OsFRK4 in regulating interaction of rice source library to improve photosynthetic efficiency and grain weight

The invention discloses an application of OsFRK4 in regulating the interaction of a rice source library to improve the photosynthetic efficiency and the grain weight. The OsFRK4 disclosed by the invention is a protein of which the amino acid sequence is SEQ ID No.3. According to the application disclosed by the invention, the weight of plant grains can be improved by knocking out the OsFRK4 gene, and the source-library synergistic improvement is realized while the crop yield is greatly improved from the aspects of improving the photosynthesis of rice source leaves and accelerating the conversion of carbohydrates in the grains to starch. Therefore, the invention has important application potential for improving crop yield potential and photosynthetic utilization efficiency and realizing source-library synergistic yield increase.
Owner:INSTITUTE OF CROP SCIENCE CHINESE ACADEMY OF AGRICULTURAL SCIENCES

Application of OsRPP13 gene in regulation and control of heat resistance and photosynthetic performance of rice

The invention discloses application of an OsRPP13 gene in regulation and control of heat resistance and photosynthetic performance of rice. According to the invention, a CRISPR-Cas9 carrier is constructed, and rice OsRPP13 gene knockout mutant strains (osrpp13-2, osrpp13-18 and osrpp13-20) are obtained by using an agrobacterium tumefaciens-mediated transformation method. The inventor discloses the function of the OsRPP13 gene in the aspect of regulating and controlling the temperature tolerance and the photosynthetic performance of a rice plant by improving a culture temperature simulation experiment. Through the research, a gene resource is provided for high-temperature-resistant and high-photosynthetic-efficiency molecular breeding of rice. The rice can survive and grow in a temperature range exceeding the original adaptive temperature range, the photosynthetic efficiency is improved, and a gene resource is provided for high-photosynthetic-efficiency molecular breeding and genetic improvement of the rice.
Owner:SANYA INST OF HENAN UNIV +1

Method for reducing inhibition of free nitrous acid on toxicity of microalgae

The invention discloses a method for reducing inhibition of free nitrous acid on toxicity of microalgae, and belongs to the technical field of biology and new medicine. In order to solve the problem that free nitrous acid (FNA) in a microalgae-nitrifying bacteria co-culture system destroys a microalgae photosynthetic system and inhibits growth, alpha-ketoglutaric acid with the final concentration of 0.5-1.0 mM is exogenously added into the microalgae-nitrifying bacteria co-culture system, so that carbon and nitrogen metabolism of microalgae is regulated and controlled, the tolerance of the microalgae to FNA is enhanced, the photosynthetic efficiency and biomass of the microalgae are remarkably improved, and the microalgae-nitrifying bacteria co-culture system can be used for preparing the microalgae-nitrifying bacteria co-culture system. The ammonia nitrogen removal rate and the system stability are improved; the method is easy and convenient to operate, low in cost, suitable for high-ammonia-nitrogen wastewater treatment and capable of assisting long-term stable operation of a phycomycete symbiotic system.
Owner:JIANGSU UNIV

Device for improving photosynthesis efficiency of underwater plants

The utility model relates to the technical field of water ecological management devices, in particular to a device for improving the photosynthesis efficiency of underwater plants, which comprises a device shell and a flexible light guide device, the top and the bottom of the device shell are of hollow structures, the flexible light guide device is arranged in the device shell, the top of the flexible light guide device is connected with the device shell, and the flexible light guide device is arranged in the device shell. The bottom of the flexible light guide device naturally falls above an underwater plant, the flexible light guide device is used for transmitting sunlight on the water surface to an underwater target area, and the flexible light guide device is made of a flexible light guide material; the fixing mechanism comprises a fixing ring arranged on the device shell and a supporting structure connected with the fixing ring; the supporting structure is used for fixing the whole device on the water surface and allowing the position of the flexible light guide device to be adjusted so as to adapt to the water depth and underwater plant distribution. The device has the advantages that natural light on the water surface is stably transmitted to the deep position of the water body in a low-loss mode, and a stable photosynthesis light source is provided for underwater plants in combination with LED lamplight.
Owner:上海宏波工程咨询管理有限公司

Haematococcus cultivation method based on flexible LED array and photobioreactor

The invention discloses a haematococcus culture method based on a flexible LED array and a photobioreactor, and relates to the field of bioengineering, and the method comprises the following steps: preparing an SE culture medium according to the growth requirements of haematococcus; pumping the SE culture medium into the sterilized and cooled photobioreactor to a working volume through a sterile pipeline; the photobioreactor is started, sterile air with set flow is introduced, and mild stirring is carried out. According to the invention, the flexible LED array is adopted to surround the transparent reaction inner cavity, so that three-dimensional light distribution is realized, illumination dead angles are eliminated, and the light receiving uniformity of cells is greatly improved; an OD680-target light intensity linear curve is fitted through a pre-experiment, a reactor controller and an LED driving module are combined, light intensity automatic linear adjustment is achieved, light damage is avoided, and the photosynthetic efficiency is greatly improved compared with a traditional rigid LED. The photobioreactor realizes integrated control of illumination and ventilation, reduces manual operation, reduces pollution risk, is stable in product content among batches, and meets the requirements of industrial large-scale production.
Owner:云南爱尔发生物技术股份有限公司

An externally embedded photobioreactor and its use

The application provides an external embedding type photobioreactor and application thereof, and belongs to the technical field of bioengineering. The external embedding type photobioreactor is used in the process of aerated culture of microalgae, so that the mixing, mass transfer, photosynthetic efficiency and CO2 fixation efficiency of the algal liquid are strengthened, and the biological yield of the microalgae is improved. In the application, the external embedding type photobioreactor comprises a center column, external elbow pipes connected to two sides of the center column, an embedded curved body and an aeration port at the bottom of the center column. The combination of the external elbow pipes and the embedded curved body ensures the general flow of the algal liquid and the circulation of the backflow, and at the same time, the vortex flow of the algal liquid flow is increased as much as possible, so that the mixing efficiency is promoted. The existence of the embedded curved body guarantees the formation of the overall upward flow and downward flow of the algal liquid, and at the same time, the residence time of CO2 in the reactor is increased, and the carbon fixation efficiency is improved.
Owner:JIANGSU UNIV

Methods and applications of the low-temperature response gene PbbZIP44 in enhancing plant cold resistance

This invention provides a cold-resistance gene containing a BRZL domain isolated and cloned from pear rootstock. PbbZIP44 This study also provides insights into the application of this gene in enhancing plant cold resistance. Through the construction of... PbbZIP44 Gene overexpression and silencing vectors were developed and introduced into Arabidopsis thaliana, *Pyrus pyrifolia* callus, and *Pyrus pyrifolia* seedlings using Agrobacterium-mediated genetic transformation. Stable and transient expression were achieved, resulting in stable overexpressing plants and TRV-mediated silencing lines for low-temperature resistance functional analysis. Results showed that under low-temperature stress, the overexpressing lines exhibited stronger growth, lower malondialdehyde content and relative conductivity, as well as higher photosynthetic efficiency and antioxidant capacity compared to wild-type plants; while the silencing lines showed the opposite physiological response.
Owner:YANGZHOU UNIV

Use of GmSAUR46b in Regulating Soybean Yield, Light Stress Resistance and Plant Height

The application discloses application of GmSAUR46b in regulating soybean yield, light stress resistance and plant height. GmSAUR46b The application discloses that molecular breeding by using the gene can be used for directional improvement of soybean plant type, such as breeding short-stalk anti-lodging varieties, optimizing midrib structure to improve photosynthetic efficiency, regulating trichome density to enhance stress resistance, and has important agricultural application value.
Owner:XIANGHU LABORATORY

Plants with increased photorespiration efficiency

Presented herein are plants with altered photorespiratory characteristics. Disruption of transport proteins involved in shuttling glycolate and / or glycerate results in reductions in photosynthetic rates, reduced plant growth and alterations in gene expression and photosynthetic metabolite profiles. Such disruptions are also combined with introduced genes expressing components of alternate photorespiratory enzyme pathways to increase photosynthetic efficiency.
Owner:THE GOVERNMENT OF THE UNITED STATES OF AMERICA AS REPRESENTED BY THE SECRETARY DEPARTMENT OF HEALTH & HUMAN SERVICES

A method for enhancing photosynthetic efficiency and improving soil organic matter carbon sequestration using silicon-titanium composite microorganisms

This invention discloses a method for increasing photosynthetic efficiency and improving soil organic matter carbon sequestration using silicon-titanium composite microorganisms. The method comprises: S1: soil selection and treatment to provide suitable environmental conditions for the silicon-titanium composite microorganisms; S2: mixing the silicon-titanium composite microorganism strains with the soil; and S3: providing the soil with nutrient solution for the survival and reproduction of the silicon-titanium composite microorganisms through drip irrigation. This invention adds silicon-titanium composite microorganisms to the soil, allowing for symbiotic growth between the planted plants with high photosynthetic efficiency and rapid growth rate. This method enables the silicon-titanium composite microorganisms to be more evenly distributed in the soil, facilitating their continuous growth and reproduction. It eliminates the need for large-scale supplementation of bio-fertilizers, reducing costs. Furthermore, this method increases the survival rate of the silicon-titanium composite microorganisms. Providing nutrients to the microorganisms through drip irrigation not only provides water and nutrients to the plants but also promotes the growth and reproduction of the silicon-titanium composite microorganisms, enabling them to continuously sequestrate carbon.
Owner:FU JIAN DUN FENG TAN HUI NONG YE KE JI YOU XIAN GONG SI

Adjustable illumination device for flammulina velutipes cultivation

The utility model relates to the technical field of illumination devices, and discloses an adjustable illumination device for flammulina velutipes cultivation, which comprises a connecting plate, the inner wall of the connecting plate is slidably connected with a sliding frame, one side of the inner wall of the sliding frame is provided with a connecting rod, the outer wall of the connecting rod is connected with a telescopic rod through a caliper assembly, and the telescopic rod is used for limiting the connecting rod. One end of the telescopic rod is connected with the connecting plate through a moving assembly so as to be used for adjusting the position of the sliding frame, a rotating plate is slidably connected to the inner wall of the sliding frame, and a rotating assembly is arranged at one end of the rotating plate so as to be used for adjusting the angle of the rotating plate. According to the needle mushroom cultivation device, the position of the illumination plate can be adjusted by pulling and rotating the connecting rod upwards, and meanwhile, the angle of the illumination plate is adjusted by pulling the rotating plate downwards and rotating the illumination plate, so that the growth environment of needle mushrooms can be improved, and the illumination uniformity, the photosynthetic efficiency and the overall growth quality are improved; therefore, healthy growth and high yield of the needle mushrooms are promoted.
Owner:FUJIAN WANCHEN BIOTECHNOLOGY CO LTD

A microalgal particle cultivator and system for carbon capture

This application provides a microalgae particle culturer and system for carbon capture. The microalgae particle culturer for carbon capture includes a tank, a first guide tube, and a second guide tube. The tank has a bottom inlet pipe and an upper overflow port. The first guide tube is coaxially located in the middle of the tank, with its bottom opposite the inlet pipe and forming a flow gap with the bottom of the tank. A guide member is located above the top of the first guide tube, below the overflow port, forming a flow gap with it. The top of the second guide tube is fixed to the top wall of the tank, and its bottom is fitted around the outer periphery of the first guide tube, forming flow gaps with both the inner wall of the tank and the first guide tube. At least one of the tank, the first guide tube, or the second guide tube contains a lighting component. This application achieves efficient particle culture, convenient harvesting, and carbon fixation by constructing a stable reflux channel, inducing particle deposition, promoting microalgae suspension and particle aggregation, and providing directional supplemental lighting to improve photosynthetic efficiency and enhance CO2 absorption in the water.
Owner:TIANRUN (SHANDONG) ECOLOGICAL ENVIRONMENT TECH CO LTD

Method for regulating and controlling transportation of boron to overground part of plant by using photoperiod

The invention discloses a method for regulating and controlling boron to be transported to the overground part of a plant by utilizing a photoperiod, which comprises the following steps: cleaning seeds, cultivating seedlings, preparing a growth solution and supplementing light for cultivation, and is characterized in that the boron is transported to the overground part of the plant by utilizing the photoperiod on the basis of a synergistic effect mechanism of photoperiod regulation and control-transpiration tension enhancement-boron element transportation. By implementing daily light supplementing treatment in the growth period of the seedlings, the photosynthesis efficiency of the plants is remarkably improved, and the problem of plant growth stagnation caused by top end necrosis due to boron deficiency can be effectively avoided. Moreover, by accurately improving the transportation efficiency of boron in the plant body, the application amount of the boron fertilizer can be reduced, accumulation and residue of boron in soil are reduced, agricultural non-point source pollution can be relieved, and the environmental risk is reduced. Under the adverse conditions of drought, salt and alkali and the like, effective transportation and supply of boron can still be maintained, normal growth and development of plants are guaranteed, and adaptability and stability of crops in a non-ideal environment are improved.
Owner:FOSHAN UNIVERSITY