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7914results about "Angiosperms/flowering plants" patented technology

Deletion mutant nucleic acids and their use in herbicide resistance

The present application relates to a kind of deletion mutant nucleic acid and its application in anti-herbicide.The deletion mutation occurs in the promoter of rice OsHPPD Gene, the length of deletion sequence is at least 10 bp, and the A in the start codon ATG of gene is 0, at least the bases located in the upstream of start codon ATG from 2041 to 2032 are deleted. OsHPPD The present application finds that by deleting part of the sequence in the promoter of rice OsHPPD Gene, rice can obtain resistance to HPPD inhibitor herbicides, which is of great application value for ensuring agricultural production safety and improving the efficiency of herbicide use.
Owner:INST OF PLANT PROTECTION CHINESE ACAD OF AGRI SCI

AsMYB19 gene and application thereof

The invention discloses an AsMYB19 gene and application thereof, and relates to the technical field of biology, the nucleotide sequence of the AsMYB19 gene is shown as SEQ ID NO.1, the AsMYB19 gene can regulate and control the tiller number and the yield of oat, gene resources and strategies are provided for oat breeding and improvement of oat germplasm resources, the breeding speed is increased, and the breeding efficiency is improved.
Owner:INSTITUTE OF ANIMAL SCIENCES OF CHINESE ACADEMY OF AGRICULTURAL SCIENCES

AsSN1 gene and application

The invention discloses an AsSN1 gene and application, and relates to the technical field of biology. The nucleotide sequence of the AsSN1 gene is as shown in SEQ ID NO.1, and the amino acid sequence of the AsSN1 protein is as shown in SEQ ID NO.2. The AsSN1 gene and the protein provided by the invention can regulate and control the spikelet number of the oats, further regulate and control the yield of the oats, provide important support for oat breeding and germplasm resource improvement, and have important significance for meeting the development requirements of animal husbandry.
Owner:INSTITUTE OF ANIMAL SCIENCES OF CHINESE ACADEMY OF AGRICULTURAL SCIENCES

Application of TaMYB-7B and coding gene thereof in regulation and control of wheat tiller number

The invention discloses application of TaMYB-7B and a coding gene thereof in regulation and control of wheat tiller number, and belongs to the technical field of gene engineering. The invention finds for the first time that the TaMYB-7B gene is a novel gene capable of simultaneously regulating and controlling the tillering number and grain traits of wheat. The TaMYB-7B gene is interfered, knocked out, silenced or mutated, so that the tiller number of a plant can be increased, the grain length is increased, the hundred-grain weight is increased, finally, the yield of a single wheat plant can be increased, and a foundation is laid for wheat yield improvement and character improvement.
Owner:SHANDONG AGRICULTURAL UNIVERSITY

SCRE10 gene for improving disease resistance of rice and application of SCRE10 gene

The invention belongs to the technical field of plant genetic engineering, and particularly relates to an SCRE10 gene for improving rice disease resistance and application of the SCRE10 gene, the base sequence of the SCRE10 gene is shown as SEQ ID NO.1, and the amino acid sequence of the SCRE10 gene is shown as SEQ ID NO.2. Through construction of a dexamethasone induced expression SCRE10 transgenic rice plant, it is found that the transgenic rice can significantly induce PR gene expression and active oxygen outbreak, and the resistance of rice to false smut and bacterial leaf blight can be improved. The invention proves that heterologous inducible expression of the Ustilaginoidea virens SCRE10 gene has the function of positively regulating the disease resistance of the rice, and the SCRE10 gene can be used for improving the disease resistance of the rice, which is of great significance to the creation of disease-resistant germplasm of the rice.
Owner:JILIN AGRICULTURAL UNIV

Tilletia controversa Kuhn effect protein g16561 and application thereof

The invention belongs to the field of prevention and treatment of tilletia controversa Kuhn, and particularly relates to a tilletia controversa Kuhn effect protein g16561 and application thereof. An amino acid sequence of the Tilletia controversa Kuhn effect protein is shown as SEQ ID NO: 2. The effect protein plays an important role in the process of inhibiting plant defense reaction, and has an interaction relationship with a wheat protein in the process of infecting wheat by Tilletia controversa Kuhn. According to the invention, the pathogenesis of Tilletia controversa Kuhn can be deeply researched, and the excavation of wheat disease-resistant genes and the cultivation of wheat disease-resistant varieties can be promoted.
Owner:SANYA NATIONAL INSTITUTE OF SOUTHERN BREEDING CHINESE ACADEMY OF AGRICULTURAL SCIENCES +2

Application of Chinese rose gene RhMYB1 in regulation of Chinese rose axillary bud germination

The invention discloses application of a Chinese rose gene RhMYB1 in regulation of Chinese rose axillary bud germination. Relates to the technical field of molecular biology, and provides application of a product for inhibiting expression of an RhMYB1 gene or transcriptional translation protein of the RhMYB1 gene in regulation of axillary bud germination of Chinese roses, and a nucleotide sequence of the RhMYB1 gene is shown as SEQ ID NO.1. According to expression results of the RhMYB1 gene in buds at different sites of Chinese roses, it is found that the expression quantity of the RhMYB1 gene in upper buds (namely active buds) is high. The RhMYB1 gene in the axillary bud is instantaneously silenced, the silent RhMYB1 gene is found to significantly inhibit the germination and growth of the axillary bud, and the overexpression RhMYB1 can promote the growth of the axillary bud.
Owner:FLOWER RES INST OF YUNNAN ACAD OF AGRI SCI

Protease for improving resistance of potatoes to late blight, coding gene and application

The invention discloses protease for improving the resistance of potatoes to late blight as well as a coding gene and application thereof, and belongs to the technical field of genetic engineering and plant disease resistance breeding. The amino acid sequence of the protease StRD21 is as shown in SEQ ID NO.2, or the protease StRD21 has a derivative sequence with the same disease-resistant function. The nucleotide sequence of the coding gene is as shown in SEQ ID NO. 1. The invention also provides a specific primer pair for cloning the gene, a potato recombinant overexpression vector containing the gene and a transgenic host cell. The StRD21 gene is introduced into potatoes and overexpressed, so that the resistance of the potatoes to late blight can be remarkably enhanced. The invention provides an effective gene resource and a biotechnological means for cultivating a new variety of disease-resistant potatoes.
Owner:YUNNAN NORMAL UNIV

Brassica napus drought-tolerant gene bnac04ARL and use thereof

Provided in the present invention are a Brassica napus drought-tolerant gene BnaC04ARL and the use thereof. The gene is expressed in a plant to improve drought tolerance of the plant. The gene comprises a nucleotide sequence selected from the group consisting of: a nucleotide sequence shown as SEQ ID NO: 1; and / or a nucleotide sequence encoding an amino acid sequence shown as SEQ ID NO: 2. The overexpression of the gene can improve the viability of Brassica napus under drought conditions, enhance root system development, and improve the thousand-grain weight, the grain yield per plant, the number of siliques per plant, dry weight per plant, silique length, etc.
Owner:GERMPLASM INNOVATION GRAND SCIENCE CENTER OF WESTERN CHINA (CHONGQING) SCIENCE CITY +1

Application of OsPES gene and encoded protein thereof in regulation and control of tiller number of rice

The invention discloses an application of an OsPES gene and an encoding protein thereof in regulating and controlling the tiller number of rice, and belongs to the technical field of biology. According to the application disclosed by the invention, two OsPES BRCT structural domain homozygous knockout strains Ospesc-cas9-1 and Ospesc-cas9-5, two OsPES overexpression strains OE-OsPES-3 and OE-OsPES-7 and two RNAi (Ribonucleic Acid Interference) interference strains RNAi-OsPES-1 and RNAi-OsPES-6 are respectively obtained by taking japonica rice'cloud guide 'as a background material and utilizing related technologies. Phenotypic observation and statistical analysis find that compared with a wild type, the tiller number of an overexpressed OsPES strain is increased, and the tiller number of an OsPES interference strain and the tiller number of a BRCT structural domain knockout strain are reduced. It is found for the first time that OsPES can positively regulate the tiller number of rice and has application significance in regulation of the tiller number of rice and new strain breeding.
Owner:福建省农业科学院水稻研究所

Application of wheat TabHLH93 protein or coding gene thereof in regulation and control of plant grain development

The invention belongs to the technical field of plant genetic engineering molecular breeding, and particularly relates to application of wheat TabHLH93 protein or a coding gene thereof in regulation and control of plant grain development. According to the invention, a binary expression vector capable of realizing ectopic expression of the TabHLH93 gene is constructed and is genetically transformed into common wheat to obtain a progeny with high expression of the TabHLH93 gene, so that overexpression of the TabHLH93 gene is realized, and it is verified that the TabHLH93 has a function of regulating and controlling the size of wheat grains and also has an important regulation and control effect on agronomic characters such as wheat plant height, tiller number, spike length and thousand seed weight. A candidate gene with an important application prospect is provided for wheat high-yield genetic improvement, and the gene has important significance for guaranteeing grain safety.
Owner:SHANDONG UNIV

Method for improving inductivity and genetic transformation efficiency of hairy roots of toona ciliata

PendingCN121495958AAntibody mimetics/scaffoldsPlant peptidesBiotechnologyAegiceras corniculatum
The invention discloses a method for improving the inductivity and genetic transformation efficiency of hairy roots of toona ciliata. According to the method, agrobacterium rhizogenes carrying RUBY-TcGRF8-GIF2 chimeric protein are injected into stems and petioles of aseptic seedlings of the toona ciliata, and the TcGRF8-GIF2 chimeric gene is over-expressed, so that the induction efficiency and the genetic transformation efficiency of the toona ciliata hairy roots are remarkably improved, and the transformation period of the toona ciliata hairy roots is remarkably shortened. Specifically, after overexpression of the TcGRF8-GIF2 gene, the induction time of the hairy roots is shortened from 70 days of a RUBY-XbaI no-load plasmid control group to 25 days, the induction rate and conversion rate of the hairy roots mediated by agrobacterium tumefaciens are improved, the operation efficiency of genetic transformation of the toona ciliata is effectively improved, and the method has important significance for promoting genetic improvement of the toona ciliata.
Owner:SOUTH CHINA AGRICULTURAL UNIVERSITY

Application of GsRZ1A gene in improvement of alkali resistance of plants

The invention discloses application of a GsRZ1A gene in improving alkali resistance of plants, and belongs to the technical field of genetic engineering. The nucleotide sequence of the GsRZ1A gene is as shown in SEQ ID NO: 1, and the coded amino acid sequence of the GsRZ1A gene is as shown in SEQ ID NO: 2. A transgenic line is obtained by constructing an overexpression vector of the GsRZ1A gene and transforming soybeans. A transgenic line is subjected to alkali stress treatment, and a result shows that the overexpressed GsRZ1A soybean line shows a faster relative growth rate, the total leaf area, the leaf chlorophyll content and the relative water content are all higher than those of a control line of an empty vector, the total root length and the total root surface area of a root system are also remarkably larger than those of a control group, and the antioxidant enzyme activity can be improved; the accumulation of superoxide anions and malonaldehyde is reduced, and the accumulation of osmotic regulation substances such as soluble sugar is increased to enhance the tolerance of the soybeans to alkali stress, so that the method has an important application prospect in alkali-resistant plant breeding.
Owner:QINGDAO AGRI UNIV

CeNF-YA3 gene, expression vector and application of CeNF-YA3 gene in regulation and control of vegetable fat

The invention belongs to the technical field of molecular biology, and particularly relates to a CeNF-YA3 gene, an expression vector and application of the CeNF-YA3 gene in vegetable fat regulation and control. The nucleotide sequence of the CeNF-YA3 gene is as shown in SEQ ID NO.1. After the CeNF-YA3 gene is over-expressed, the grease content of arabidopsis seeds and leaves can be remarkably increased; in addition, the invention also provides a series of vectors containing the CeNF-YA3 gene for subcellular localization, yeast hybridization and plant overexpression for the first time, and proves that the CeNF-YA3 protein has a transcriptional activation function, is localized in a cell nucleus and accords with the basic characteristics of transcription factors for the first time. Therefore, the technical scheme of the invention provides scientific guidance for the application of the CeNF-YA3 gene and the protein thereof.
Owner:SANYA RES INST OF CHINESE ACAD OF TROPICAL AGRI

Passion fruit PeDREB1 gene and application thereof in enhancing temperature and drought stress tolerance

The invention belongs to the technical field of molecular biology and genetic engineering, and particularly relates to a passion fruit PeDREB1 gene and application thereof in regulating temperature and drought stress tolerance. By overexpressing the passion fruit PeDREB1 transcription factor in the plant, the tolerance of the transgenic plant to temperature stress (low temperature and high temperature) and drought stress can be obviously enhanced, the growth recovery capability of the transgenic arabidopsis thaliana overexpressed with PeDREB1 after low temperature stress is obviously superior to that of a wild type, and the leaf area growth rate is increased by about 0.45-2.28%; under the condition that 0.2 mol / L to 0.3 mol / L mannitol simulates drought stress, the seed germination rate is increased by 5.39 percent to 9.29 percent, and the root length growth rate is increased by 1.08 percent to 6.72 percent; the invention provides a clear gene target and a directly applicable molecular resource for plant stress resistance molecular breeding, can provide theoretical support for subsequent clarification of a regulation mechanism of plant response temperature and drought stress, and also lays a foundation for plant stress resistance genetic improvement and new germplasm creation.
Owner:FUJIAN AGRI & FORESTRY UNIV

Application of PtNF-YB9 gene of trifoliate orange in drought-resistant genetic improvement of plants

The invention belongs to the field of plant genetic engineering, and discloses application of a PtNF-YB9 gene of trifoliate orange in drought-resistant genetic improvement of plants. The PtNF-YB9 gene is a transcription factor gene which is separated and cloned from Poncirus trifoliata, and the sequence of the PtNF-YB9 gene is as shown in SEQ ID NO. 1. The gene or the homologous gene thereof is knocked out or inhibited in a plant, the drought resistance of the plant is remarkably reduced, and the drought resistance of the plant is remarkably enhanced by overexpressing the gene or the homologous gene thereof. The development and utilization of the genetic resource are beneficial to reducing the agricultural production cost and realizing the green and environment-friendly agricultural goal.
Owner:INST OF FRUIT & TEA HUBEI ACAD OF AGRI SCI

Application of GSE3.1 protein and coding gene thereof in regulation and control of grain length, grain width and grain weight of rice seeds

The invention relates to the field of rice gene engineering, and discloses an application of a GSE3.1 protein and a coding gene thereof in regulating and controlling the grain length, the grain width and the grain weight of rice seeds. According to the invention, a GSE3.1 gene is edited based on a CRISPR / Cas9 technology, a japonica rice variety Zhonghua 11 (ZH11) is introduced by using an agrobacterium-mediated method, and a knockout mutant is obtained through screening. The homozygous knockout mutation of the GSE3.1 gene in the invention leads to reduction of the grain width and grain length of rice seeds and reduction of thousand grain weight. According to the invention, the constructed plant overexpression vector ProActin: GSE3.1 is expressed in wild type ZH11, so that compared with the wild type plant, the seed grain length and grain width of the transgenic plant are obviously increased, and the thousand grain weight is obviously increased. Therefore, the GSE3.1 gene and the encoding protein thereof can regulate and control the size and the weight of the rice seeds, and are of great significance to cultivation of high-yield rice varieties.
Owner:HAINAN UNIVERSITY SANYA NANFAN RESEARCH INSTITUTE

Nlr plug-in gene for improving disease resistance of plants and application thereof

The application discloses an NLR plug-in gene for improving plant disease resistance and application thereof, and belongs to the field of plant molecular biology and biotechnology.The NLR plug-in gene StEM1 has a whole gene sequence as shown in SEQ ID NO.1 and a CDS sequence as shown in SEQ ID NO.2, and the amino acid sequence of the encoded protein is as shown in SEQ ID NO.3.The gene plays a key role in improving plant disease resistance, especially resistance to field late blight variant bacteria.In the NLR background, overexpression of the gene significantly promotes the disease resistance of tobacco and potato to pathogenic pythium, and the gene is a gene for enhancing plant disease resistance by improving ETI immunity.Overexpression of the gene in the NLR background is obtained by a genetic transformation method, and a strain line is obtained to resist field variant strains, so as to cope with field diseases of crops.The application provides an excellent gene resource for green prevention and control of late blight and disease-resistant genetic engineering breeding.
Owner:SANYA INSTITUTE OF NANJING AGRICULTURAL UNIVERSITY +1

GmbZIP36 protein related to aluminum resistance of plants in acid soil as well as coding gene and application of GmbZIP36 protein

The invention discloses a GmbZIP36 protein related to aluminum resistance of plants in acid soil as well as a coding gene and application of the GmbZIP36 protein, and belongs to the technical field of bioengineering. The amino acid sequence of the GmbZIP36 protein is shown as SEQ ID NO: 2, 3 or 4, and the nucleotide sequence of the coding gene of the GmbZIP36 protein is shown as SEQ ID NO: 1. The invention finds that the expression of the GmbZIP36 gene is induced by aluminum stress, the relative root elongation and root biomass of arabidopsis thaliana and soybean under the aluminum stress can be obviously improved by over-expressing the gene in a plant, and aluminum accumulation is reduced, so that the aluminum resistance of the plant is enhanced. The invention provides a recombinant vector containing the gene, a host cell and application of the recombinant vector and the host cell in regulating and controlling the aluminum resistance of plants. Meanwhile, the invention also provides a method for producing an aluminum-resistant transgenic plant by using the gene, a kit for detecting the gene or protein and a method for carrying out assisted breeding by using the molecular marker linked with the gene. The invention provides a key gene resource for aluminum-resistant molecular breeding of crops, and has important significance for cultivating new varieties of crops adapting to acid soil.
Owner:INST OF LASER MFG HENAN ACAD OF SCI

Application of apple MdMYS1 gene in regulation and control of wax content of plant fruits and leaves

The invention discloses application of an apple MdMYS1 gene in regulating and controlling the wax content of plant fruits and leaves, and belongs to the technical field of plant genetic engineering. According to the invention, the MdMYS1 gene with high expression quantity in apple varieties with more waxiness is separated, and the nucleotide sequence of the MdMYS1 gene is shown as SEQ ID NO. 1. Through subcellular localization, the transcription factor expressed by the MdMYS1 gene is found to be localized on a cell nucleus. Experimental results show that overexpression of the MdMYS1 gene can significantly increase the wax content of the apple fruits and leaves by promoting biosynthesis of wax, which indicates that the MdMYS1 gene plays a key role in regulation and control of the wax content of the apple fruits and leaves. The invention provides an efficient and rapid way for apple breeding, provides a gene material for improving apple quality, and has a wide application prospect in improving economic benefits and ecological benefits of apple planting.
Owner:QINGDAO AGRI UNIV

Application of uORF in upstream non-coding region of ABA2 gene in regulation of crop agronomic traits

The invention discloses application of an upstream non-coding region uORF of an ABA2 gene in regulation and control of crop agronomic traits, in particular to application in improvement of pre-harvest sprouting resistance of rice and cultivation of pre-harvest sprouting resistant rice strains, and belongs to the technical field of gene engineering. The invention finds that uORF in the upstream non-coding region of the crop ABA2 gene can inhibit the translation level of downstream ABA2 protein on the basis of not influencing the transcriptional level, so that the uORF can participate in regulation and control of crop agronomic traits in which ABA participates in regulation and control, such as improvement of pre-harvest sprouting resistance of rice. Therefore, the upstream non-coding region uORF of the crop ABA2 gene can be modified through a hybridization or gene editing technology, so that the purpose of regulating and controlling crop agronomic traits in which ABA participates in regulation and control is achieved, for example, site-directed mutagenesis is performed on an initiation codon of the upstream non-coding region uORF of the rice ABA2 gene, and the pre-harvest sprouting resistance of rice is improved.
Owner:INST OF GENETICS & DEVELOPMENTAL BIOLOGY CHINESE ACAD OF SCI

Tomato disease-resistant gene mutant, and use thereof in prevention and treatment of tobrfv

PCT designated stageWO2026061116A1Plant peptidesFermentationDiseaseArginine
The present invention belongs to the technical field of biological prevention and treatment for viral diseases. Disclosed in the present invention are a tomato disease-resistant gene mutant, and the use thereof in the prevention and treatment of ToBRFV. It is found in the present invention that mutating the nucleotide at position 1927 of the coding region sequence of tomato Tm-22 gene from G to A, or mutating the amino acid at position 643 of the LRR domain of a protein that is encoded by tomato Tm-22 gene from glycine to arginine can remarkably reduce the accumulation level of ToBRFV capsid protein (CP). The gene (named Tm-22-Mut5) can serve as a novel ToBRFV resistant gene, and also retains the resistance to TMV, ToMV and ToMMV. The Tm-22-Mut5 and a pre-screened Tm-22-Mut3-1 mutant (tyrosine at position 767 of the LRR domain thereof is mutated to phenylalanine) undergo combinatorial mutagenesis to obtain a mutant Tm-22-Mut6. Analysis shows that the Tm-22-Mut6 can remarkably reduce the accumulation level of the ToBRFV capsid protein. Compared with the pFGCTm-22-Mut3-1 mutant obtained by screening in the previous research and the newly obtained mutant Tm-22-Mut5, the Tm-22-Mut6 has further improved resistance to ToBRFV.
Owner:SHANDONG AGRICULTURAL UNIVERSITY

Application of OsMYB36 protein and coding gene thereof in regulating and controlling salt tolerance of rice

The invention relates to the field of rice gene engineering, and discloses an application of OsMYB36 protein and a coding gene thereof in regulation and control of rice salt tolerance. The gene of the OsMYB36 protein is edited on the basis of a CRISPR / Cas9 technology, an agrobacterium-mediated method is utilized to introduce a japonica rice variety Zhonghua 11, and a knockout mutant is obtained through screening; tests prove that the survival rate of the rice mutant with the OsMYB36 gene knocked out is remarkably higher than that of a wild-type Zhonghua 11 plant after the rice mutant is subjected to stress treatment for 11 days by 150 mM NaCl and 200 mM NaCl salt and then rehydrated for 7 days after the rice mutant is subjected to two-leaf and one-core stage. And a simple and effective technical means is provided for rapidly creating a new salt-tolerant rice strain. Therefore, the OsMYB36 protein and the coding gene thereof disclosed by the invention can regulate and control the salt tolerance of the rice, and are of great significance to the cultivation of salt-tolerant transgenic rice.
Owner:NATIONAL TECHNOLOGY INNOVATION CENTER FOR SALT-ALKALI TOLERANT RICE AT SANYA +1

Soybean cultivar 20201139

A soybean cultivar designated 20201139 is disclosed. The invention relates to the seeds of soybean cultivar 20201139, to the plants of soybean cultivar 20201139, to the plant parts of soybean cultivar 20201139, and to methods for producing progeny of soybean cultivar 20201139. The invention also relates to methods for producing a soybean plant containing in its genetic material one or more transgenes and to the transgenic soybean plants and plant parts produced by those methods. The invention also relates to soybean cultivars or breeding cultivars, and plant parts derived from soybean cultivar 20201139. The invention also relates to methods for producing other soybean cultivars, lines, or plant parts derived from soybean cultivar 20201139, and to the soybean plants, varieties, and their parts derived from use of those methods. The invention further relates to hybrid soybean seeds, plants, and plant parts produced by crossing cultivar 20201139 with another soybean cultivar.
Owner:M S TECH LLC

Soybean cultivar 28310330

A soybean cultivar designated 28310330 is disclosed. The invention relates to the seeds of soybean cultivar 28310330, to the plants of soybean cultivar 28310330, to the plant parts of soybean cultivar 28310330, and to methods for producing progeny of soybean cultivar 28310330. The invention also relates to methods for producing a soybean plant containing in its genetic material one or more transgenes and to the transgenic soybean plants and plant parts produced by those methods. The invention also relates to soybean cultivars or breeding cultivars, and plant parts derived from soybean cultivar 28310330. The invention also relates to methods for producing other soybean cultivars, lines, or plant parts derived from soybean cultivar 28310330, and to the soybean plants, varieties, and their parts derived from use of those methods. The invention further relates to hybrid soybean seeds, plants, and plant parts produced by crossing cultivar 28310330 with another soybean cultivar.
Owner:M S TECH LLC

Application of OsBTB05 gene or OsBTB05 protein in regulation and control of storability of rice seeds and related breeding method

The invention belongs to the field of plant seed biology and rice breeding, and discloses an application of an OsBTB05 gene or an OsBTB05 protein in regulation and control of storage resistance of rice seeds and a related breeding method. In particular discloses application of an OsBTB05 gene or an OsBTB05 protein in regulation and control of the storability of rice seeds, the nucleotide sequence of the OsBTB05 gene is shown as SEQ ID NO: 1 or SEQ ID NO: 2, and the amino acid sequence of the OsBTB05 protein is shown as SEQ ID NO: 3. The invention also discloses a molecular marker-assisted selection method for breeding the high-storage-resistance rice variety and a method for reducing the storage resistance of the rice seeds. The invention proves that the OsBTB05 gene is a key factor for regulating and controlling the storability of the rice seeds, and the expression level of the OsBTB05 gene is in significant positive correlation with the storability of the seeds. A clear molecular target and a brand-new gene resource are provided for improving the seed storage resistance from a genetic source.
Owner:HUNAN AGRI UNIV

Application of VDAC1 / 3a allele in regulation and control of tomato cold resistance

The invention belongs to the technical field of plant molecular biology, and relates to application of VDAC1 / 3a allele in regulation of tomato cold resistance. According to the invention, the expression quantity of the SlVDAC1 / 3a gene in the VDAC1 / 3a allele is reduced by means of knockout or mutation and the like, so that the cold resistance of the tomato can be enhanced, the yield of the tomato and the content of soluble solids are not negatively influenced, and a theoretical basis and gene resources are provided for cultivating and screening cold-resistant tomato varieties.
Owner:HUAZHONG AGRI UNIV +1

Method for creating herbicide-resistant rice through gene editing of OsEPSPS gene promoter region

The invention relates to the technical field of gene editing, and particularly provides a method for creating herbicide-resistant rice through gene editing of an OsEPSPS gene promoter region, and the method is characterized in that WT / 29bp single allelic deletion mutation is introduced into the OsEPSPS gene promoter region, i.e., A in an OsEPSPS gene initiation codon ATG is 0 site, A in the OsEPSPS gene initiation codon ATG is 0 site, A in the OsEPSPS gene initiation codon ATG is 0 site, and A in the OsEPSPS gene initiation codon ATG is 0 site; 29bp is deleted from the 112nd site to the 1150th site at the upstream of the initiation codon ATG on one allele, and the other allele is kept unchanged. By introducing the single allelic deletion mutation, the rice can obtain resistance to EPSPS inhibitor herbicides, the resistance is identified in T0-generation plants carrying the mutation and can be stably inherited to offspring plants, and the application value is high for guaranteeing agricultural production safety and improving the use efficiency of the herbicides.
Owner:SANYA NATIONAL INSTITUTE OF SOUTHERN BREEDING CHINESE ACADEMY OF AGRICULTURAL SCIENCES +1

Novel tomato plants with ToBRFV resistance

The present invention relates to tomato plants comprising two copies of an allele associated with enhanced resistance to ToBRFV infection. The invention also relates to seeds and parts of said plants, such as fruits. The invention further relates to methods of making, identifying and using such seeds and plants.
Owner:SYNGENTA CROP PROTECITON AG

Application of rice OsPBL8 gene in enhancing resistance of rice to magnaporthe oryzae

The invention relates to the technical field of biology, in particular to application of a rice OsPBL8 gene in enhancing resistance of rice to magnaporthe oryzae. The rice OsPBL8 gene is a rice endogenous gene participating in the processes of plant growth and development, abiotic stress response, hormone signal channel regulation and control and the like. The invention provides application of the OsPBL8 gene in the field of disease resistance, the OsPBL8 gene is overexpressed through gene editing, and the expression quantity of receptor-like cytoplasm kinase OsPBL8 in plants is increased, so that a plurality of signal channels are regulated and controlled, and the germ resistance of the plants is synergistically improved. By adjusting key hub nodes of plant targeted immune signal transduction, more lasting broad-spectrum disease resistance can be provided, good universality is achieved, disease resistance and growth can be balanced, good practicability is achieved, and improvement of disease resistance of various rice varieties is facilitated.
Owner:SUZHOU UNIV