supported by funding from the fund for National Key Research and Development Program of China(2023YFD2301203-05);National Natural Science Foundation of China(32260510);Special Financial Project for Seed Industry Development in the Autonomous Region(BNZJ2024-10,BNZJ2024-30);Key Project for Science and Technology Development of Shihezi city,Xinjiang Production and Construction Crops(2022NY01);Shihezi University high-level talent research project(RCZK202337);Science and Technol-ogy Planning of Shuanghe city,Xinjiang Production and Construction Crops(2021NY02).
Background Cotton is an important cash crop in China and a key component of the global textile market.Verticil-lium wilt is a major factor affecting cotton yield.Single nucleotide polymorphism(SNP)markers and phenotyp...
financially funded by the National Natural Science Foundation of China(U2004205);the China Agricultural University-Syngenta Project.
Fusarium ear rot(FER),caused by Fusarium verticillioides,is a destructive fungal disease of maize.FER resistance is a complex,quantitatively inherited trait controlled by multiple minor-effect genes.In this study,we e...
supported by the National Natural Science Foundation of China(No.31902028);Key-Area Research and Development Program of Guangdong Province(2020B020220001);Beijing Joint Research Program for Germplasm Innovation and New Variety Breeding(G20220628003-03);Modern Agro-industry Technology Research System(CARS-23);Science and Technology Innovation Program of the Chinese Academy of Agricultural Science(CAAS-ASTIP-IVFCAAS);Central Public-interest Scientific Institution Basal Research Fund(Y2017PT52);the Key Laboratory of Biology and Genetic Improvement of Horticultural Crops,Ministry of Agriculture,P.R.China.
Fruit quality and yield are reduced when cucumber(Cucumis sativus L.)plants are exposed to low temperature(LT)stress,yet,the inheritance and genes linked to cold tolerance in adult plants have not been reported yet.He...
supported by the grants from Biological Breeding-National Science and Technology Major Project (2023ZD0407104);National Natural Science Foundation of China (32372080);Yunnan Fundamental Research Project (202201AS070071).
Rice is a major crop susceptible to chilling stress.The identification of quantitative trait loci and genes for cold tolerance is crucial for the rice breeding.Of 30 quantitative-trait loci affecting seedling cold tol...
funded by the Major Project of Agricultural Biological Breeding,China(2022ZD0401902);the Science and Technology Innovation Project of Beijing Academy of Agriculture and Forestry Sciences,China(KJCX20230301 and KJCX20230307)。
Identifying stable quantitative trait loci(QTLs)for yield-related traits across populations and environments is crucial for wheat breeding and genetic studies.Consensus maps also play important roles in wheat genetic ...
funded by the Natural Science Foundation of Xinjiang Uygur Autonomous Region,China(2022D01B222);the China Agriculture Research System(CARS-15-06);the Key R&D Project of Eight Division of Xinjiang Production and Construction Corps,China(2021NY01)。
Cotton breeding for the development of early-maturing varieties is an effective way to improve multiple cropping indexes and alleviate the conflict between grains and cotton in the cultivated fields in China.In the pr...
the Henan Special Funds for Major Science and Technology,China(221100110400);the Henan Scienti?c and Technological Joint Project for Agricultural Improved Varieties,China(2022010503);the National Natural Science Foundation of China(31902038 and 32072564)。
Seed size is an important agronomic trait in melons that directly affects seed germination and subsequent seedling growth.However,the genetic mechanism underlying seed size in melon remains unclear.In the present stud...
supported by grants from the Scientific and Technological Innovation 2030 (2023ZD040680109);the National Natural Science Foundation of China (32388201);the Laboratory of Lingnan Modern Agriculture Project (NT2021002);the Chinese Academy of Sciences (159231KYSB20200008);the CAS-Croucher Funding Scheme for Joint Laboratories;the National Key Laboratory of Plant Molecular Genetics。
Rice grain number is a crucial agronomic trait impacting yield. In this study, we characterized a quantitative trait locus(QTL), GRAIN NUMBER 1.1(GN1.1), which encodes a Flowering Locus T-like1(FT-L1) protein and acts...
supported by the National Key Research and Development Program of China(2023ZD04073);STI2030-Major Projects(2022ZD04001);the National Natural Science Foundation of China(31821005,U20A2031,32061143042);the Earmarked Fund for China Agriculture Research System(CARS-01);the National Key Laboratory of Crop Genetic Improvement Self-Research Program(ZW22B0204).
The multiparent advanced generation intercross(MAGIC)population is characterized with great potentials in power and resolution of quantitative trait locus(QTL)mapping,but single nucleotide polymorphism(SNP)-based GWAS...
supported by the Key Research and Development Program of Jiangsu Province(BE2022343);the Seed Industry Revitalization Project of Jiangsu Province(JBGS[2021]009);the National Natural Science Foundation of China(32061143030 and 31972487);Jiangsu Province University Basic Science Research Project(21KJA210002);the Innovative Research Team of Universities in Jiangsu Province,the High-End Talent Project of Yangzhou University,the Priority Academic Program Development of Jiangsu Higher Education Institutions(PAPD),and Qing Lan Project of Jiangsu Province.
The nutritional composition and overall quality of maize kernels are largely determined by the key chemical com-ponents:protein,oil,and starch.Nevertheless,the genetic basis underlying these nutritional quality traits...