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17 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.

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

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

Plant growth elicitor dose regulation method and system based on sample analysis

PendingCN122307040ABiotechnologyGrowth plant
This invention relates to the field of inducible hormone dosage regulation, and more particularly to a method and system for regulating plant growth inducible hormone dosage based on sample analysis. The method includes the following steps: collecting rice samples from multiple cultivation environments, monitoring photosynthesis to obtain response sequences over multiple periods; eliminating inefficient samples based on the response sequences to obtain response curves for candidate samples; identifying growth stages from the response curves of the candidate samples to obtain growth stage curves; performing inducible hormone gain analysis based on the growth stage curves to obtain inducible hormone sensitivity values ​​for different samples; and iteratively calculating and risk-screening the inducible hormone combination ratio based on the inducible hormone sensitivity values ​​of different samples to output the optimal dosage ratio. This invention improves the photosynthetic efficiency and enhances growth stability of rice.
Owner:WEIFANG AOFENG CROP DISEASE CONTROL CO LTD

Application of SlCOP1 gene in regulating chlorophyll synthesis and photosynthetic efficiency of tomato

PendingCN122326619ABiotechnologyNucleotide
This invention discloses SlCOP1 The application of genes in regulating tomato chlorophyll synthesis and photosynthetic efficiency, through knockout SlCOP1 The gene enables increased chlorophyll content and enhanced photosynthetic efficiency in tomatoes. SlCOP1 Genes affect chlorophyll accumulation by regulating the gibberellin signaling pathway; the tomato SlCOP1 The gene has the nucleotide sequence of SEQ ID No: 1. This invention is the first to elucidate... SlCOP1 A novel gene regulation function for tomato chlorophyll synthesis reveals the core role of the SlCOP1-SlDELLA-GA pathway in chlorophyll synthesis regulation, providing new theoretical basis for elucidating the molecular regulatory network of plant chlorophyll synthesis. SlCOP1 Genes can serve as key target genes for precision breeding, enabling targeted improvement of tomato chlorophyll accumulation and photosynthetic efficiency traits. This provides an efficient and feasible technical path for cultivating new tomato varieties with high light efficiency and high yield, and has significant theoretical implications and broad prospects for agricultural applications.
Owner:SHENYANG AGRI UNIV

Plant chlorophyll-de-phytating enzyme cde1 and application thereof

This invention relates to the field of agricultural technology, specifically to a plant chlorophyll aphytase CDE1 and its applications. The nucleotide sequence of the plant chlorophyll aphytase CDE1 is shown in SEQ ID NO.1. Overexpression of the plant chlorophyll aphytase CDE1 provided by this invention can improve plant photosynthetic efficiency. Overexpressed CDE1 significantly increases the biomass of Arabidopsis thaliana and can be used to construct high-photometric plants in high-light environments. CDE1, as a chlorophyll aphytase, is highly conserved in higher plants. Research results in Arabidopsis thaliana can be applied to crops such as rice and corn, as well as other fruits and vegetables, and have potential application value for increasing grain yield and enhancing plant stress resistance.
Owner:SHANGHAI NORMAL UNIVERSITY

Application of abscisic acid signal transduction system in improving photosynthetic efficiency

PendingCN122427973ABiotechnologyMalate synthase
The present application relates to the application of okra malate synthase (MLS) gene and its promoter in improving photosynthetic efficiency, and specifically provides the use of MLS gene or its coded protein or its promoter in improving the agronomic traits of plants, and it is first found that the MLS gene in okra leaves is easily induced by dark condition, and when the photosynthesis and energy of the okra itself is lower than a certain threshold, the MLS gene is induced, and the malate branch starts to play a role as a compensation pathway to make up for the insufficient energy.
Owner:CAS CENT FOR EXCELLENCE IN MOLECULAR PLANT SCI

A seedling raising device for forest planting and a method for using the same

PendingCN122271154ASeedlingCanopy
This invention provides a seedling raising device and its usage method for forest stand planting, belonging to the technical field of seedling raising devices. The seedling raising device for forest stand planting includes: a seedling box body; and two sets of seedling raising components, both sets of which are located within the seedling box body. Each set of seedling raising components includes a slide rail, a seedling plate, a seedling trough, a guide plate, an air inlet, a Y-shaped channel, and a converging channel. Multiple seedling troughs, air inlets, Y-shaped channels, and converging channels are provided. Through a dual gas path design combining top spraying and bottom root zone microcirculation, this solution overcomes the defect of gas deposition and accumulation in traditional devices. Gas forms a top-down main flow and a bottom-up local microcirculation within the seedling box, allowing carbon dioxide to be evenly distributed in the canopy and root zone of the plant, greatly improving gas utilization efficiency while avoiding the inhibition of seedling respiration due to excessively high local concentrations, significantly improving photosynthetic efficiency and seedling quality.
Owner:HUZHOU VOCATIONAL TECH COLLEGE

A tea seedling high temperature state recognition method and system based on chlorophyll fluorescence imaging

InactiveCN122176364ACharacter and pattern recognitionBiological modelsData setArbitrary Fluorescence Unit
This invention discloses a method for identifying the high-temperature state of tea seedlings based on chlorophyll fluorescence imaging, comprising the following steps: Step S1, acquiring chlorophyll fluorescence parameters and images of tea seedlings under different high-temperature stress conditions, performing Spearman rank correlation analysis on each parameter, and determining that the parameter significantly correlated with the stress level is the maximum photosynthetic efficiency Fv / Fm; Step S2, preprocessing the chlorophyll fluorescence images corresponding to Fv / Fm to construct a high-temperature stress state dataset; Step S3, constructing an improved YOLOv11-MEIP model, wherein the improved YOLOv11-MEIP model replaces the backbone network of the original network with a MobileNetV4 network and introduces EUCB, iRMB, and PConv modules; Step S4, training, validating, and testing the improved YOLOv11-MEIP model; Step S5, deploying the tested improved YOLOv11-MEIP model for identifying the high-temperature stress state of tea seedlings. This study aims to provide a rapid and accurate monitoring method for the high-temperature stress state of tea seedlings, meeting the real-time monitoring needs of large-scale tea gardens.
Owner:YUNNAN AGRICULTURAL UNIVERSITY

A technique for breeding a melon mutant with an angle between petiole and stem less than 45 degrees

The application discloses a melon mutant and variety breeding technology with a leaf stalk and a main stem included at an angle less than 45 degrees, relates to the technical field of melon variety breeding, and comprises the following steps: S1, screening excellent melon germplasm resources with inherent genetic traits of small leaf blades and upright leaf stalks as basic breeding parents, and simultaneously considering comprehensive agronomic traits, disease resistance traits and fruit quality traits of the parents; S2, separating offspring populations by means of artificial hybridization or continuous selfing of the screened breeding parents, and constructing a genetic variation basic population; and S3, under the condition of high-density standardized planting of facilities. The application breeds a new melon variety suitable for high-density cultivation, improves land utilization efficiency, group photosynthetic efficiency and unit area yield, simultaneously improves field ventilation and light penetration conditions, and reduces the risk of disease occurrence. Moreover, due to the fact that the outward expansion degree of the whole plant is obviously reduced, the row width is increased, which is beneficial to mechanical spraying, fertilization and weeding operations, and a large number of labor is reduced.
Owner:LUOYANG NONGFA AGRI TECH CO LTD

Natural oxygen energy generating device and oxygen production method

This invention provides a natural oxygen energy generator and an oxygen production method. A grow light is activated when the natural light intensity is below a preset value. A placement box is slidably mounted on a mounting frame, housing potted plants, and has multiple light-transmitting holes on its perimeter walls. The top of the placement box has a detachable transparent cover. A lifting mechanism adjusts the height of the placement box on the mounting frame, and a light sensor detects the position of natural light, allowing the lifting mechanism to adjust the height of the placement box accordingly. The grow light, lifting mechanism, and light sensor ensure optimal light exposure for the potted plants throughout the day, guaranteeing photosynthetic efficiency, improving oxygen production efficiency, and ultimately increasing indoor oxygen levels.
Owner:HENAN INST OF ATMOSPHERIC SCI & TECH

Application of OsFd1 in genetic engineering of heat-tolerant and stable-yield rice germplasm

PendingCN122278863ABiotechnologyCarbon assimilation
This invention relates to the field of bioengineering and discloses the application of OsFd1 in the creation of heat-resistant and stable-yielding rice germplasm through genetic engineering. This invention discovers that increasing the expression level of OsFd1 in rice can effectively enhance its high-temperature tolerance, specifically manifested in improved photosynthetic efficiency, carbon assimilation efficiency, growth status, pollen fertility, and yield. Therefore, OsFd1 can be applied to the creation of new heat-resistant and stable-yielding rice germplasm.
Owner:SANYA NATIONAL INSTITUTE OF SOUTHERN BREEDING CHINESE ACADEMY OF AGRICULTURAL SCIENCES +1

Methods to improve cyclic electron transport activity, photosynthetic rate, and plant height in plants

This invention provides a method for improving cyclic electron transport activity, photosynthetic rate, and plant height in plants. The inventors focused on identifying targeted regulatory targets to enhance plant photosynthetic efficiency, and identified the jasmonic acid signaling pathway-related synthetic gene OPR3. Mutants of OPR3 exhibited increased cyclic photosynthetic electron transport activity, net photosynthetic rate, plant height, and leaf area. This invention provides a novel target for plant trait improvement.
Owner:CAS CENT FOR EXCELLENCE IN MOLECULAR PLANT SCI

Daylight greenhouse wall heat insulation is floor type driving mechanism

The utility model discloses a floor type driving mechanism of sunlight greenhouse wall heat preservation quilt, relates to sunlight greenhouse wall heat preservation quilt winding technical field. The utility model discloses a greenhouse big -arch shelter body, the inside heat preservation quilt winding mechanism of greenhouse big -arch shelter body is provided with, and the winding end of heat preservation quilt winding mechanism is provided with heat preservation quilt body, and the surface of heat preservation quilt winding mechanism is provided with a plurality of elastic support mechanism, and a plurality of elastic support mechanism are provided with a plurality of elastic adjusting mechanism, and the inside heat preservation quilt traction mechanism of greenhouse big -arch shelter body is provided with. The utility model discloses a plurality of elastic support mechanism's support end carries out synchronous support to the heat preservation quilt body of winding, until the heat preservation quilt body is all wound up, this design has changed the disadvantage that traditional independent fixed gable heat preservation quilt long -term obstructs gable scattered light, effectively promotes the light intensity and the illumination time length of greenhouse edge area, significantly improves the photosynthetic efficiency of crop, creates more suitable growth environment for crop.
Owner:INNER MONGOLIA AGRICULTURAL UNIVERSITY

A method for rapid assessment of rice flood disaster loss based on multi-source remote sensing constraint interpolation and stress process modeling

PendingCN122336580ARice growthCrop growth
This invention discloses a rapid assessment method for rice flood damage based on multi-source remote sensing constrained interpolation and stress process modeling, belonging to the field of agricultural remote sensing and disaster assessment technology. The method includes: extracting NDVI time-series curves for each field using optical images; dividing the rice growth stage according to characteristic inflection points and assigning stress-sensitive weight coefficients to each stage, constructing a growth stage-stress-sensitive weight coefficient matrix; acquiring solar-induced chlorophyll fluorescence products, calculating the photosynthetic efficiency index and comparing it with the NDVI ratio of the same period to identify early stress areas and correct stress exposure levels; inputting the growth stage weight coefficients and corrected stress exposure levels into a growth stage-weighted stress cumulative loss model, combining it with the counterfactual baseline yield assimilated from the pre-disaster crop growth model, obtaining the yield loss rate and the amount of loss, and outputting a spatial distribution map of the loss. This invention achieves rapid and accurate assessment of rice flood damage.
Owner:HEILONGJIANG UNIV

A chemical capping method for optimizing root-shoot coordination and photosynthetic efficiency in cotton

PendingCN122074502Asuppression of top dominanceRaise the ratioBiocidePlant growth regulatorsRoot capPaclobutrazol
This invention discloses a chemical topping method for optimizing root-shoot coordination and photosynthetic efficiency in cotton. The method uses a paclobutrazol-zinc complex as the topping agent, applied precisely during the topping period, and is coupled with localized cultivation management measures in southern Xinjiang. By systematically monitoring indicators such as plant height, number of fruiting branches, photosynthetic parameters, root productivity, and biomass allocation, the method achieves dynamic regulation and effect evaluation of cotton growth. Through a synergistic mechanism of shoot control, root promotion, and light enhancement, this invention significantly improves the net photosynthetic rate, root boll-setting capacity, and boll load of cotton, optimizes the allocation of assimilates to reproductive organs, and simultaneously and significantly increases seed cotton and lint yield while stabilizing fiber quality. This provides a reliable technical solution for green, high-yield, and high-quality cotton cultivation in arid regions.
Owner:TARIM UNIV

A high-photosynthetic-efficiency, fast-growing Chlorella mutant and its application in carbon reduction in paddy fields

This invention discloses a high-photosynthetic-efficiency, fast-growing Chlorella mutant strain and its application in carbon reduction in paddy fields. The strain is the common Chlorella vulgaris mutant DSC19, deposited at the China General Microbiological Culture Collection Center (CGMCC) on January 14, 2026, with accession number CGMCC NO.46951. This Chlorella mutant strain DSC19 exhibits high-density growth, reducing the cost of preparing algal bio-fertilizer; it also possesses excellent photosynthetic oxygen release capacity, inhibiting the formation of methane and nitrous oxide, and can reduce carbon dioxide emissions through photosynthetic carbon fixation, thus improving the application effect of this algae strain in greenhouse gas emission reduction in paddy fields.
Owner:BEIJING GENGTIANXIA BIOTECHNOLOGY CO LTD