This work was financially supported by the National Key Research and Development Program of China(Grant No.2022YFF1002900 and 2020YFE0202900);the National Natural Science Foundation of China(32270576);Jiangsu Provincial Key Research and Development Program(BE2022346);Seed Industry Revitalization Project of Jiangsu Province(JBGS[2021]006 and JBGS[2021]013);the Jiangsu Agricultural Technology System(JATS[2023]422);the Joint Research of Wheat Variety Improvement of Anhui;Zhongshan Biological Breeding Laboratory(ZSBBL)(ZSBBL-KY2023-02-2)。
Polyploidization in plants often leads to increased cell size and grain size,which may be affected by the increased genome dosage and transcription abundance.The synthesized Triticum durum(AABB)-Hay-naldia villosa(WM)...
The Triticum-Aegilops complex provides ideal models for the study of polyploidization,and mitochondrial genomes(mtDNA)can be used to trace cytoplasmic inheritance and energy production following polyploidization.In th...
supported by the National Key Research and Development Program of China(2016YFD0100302);the CAAS Program(Y2017PT39);Jiangsu Collaborative Innovation Center for Modern Crop Production。
Common wheat(Triticum aestiuum L.)is one of the most important crops because it provides about 20%of the total calories for humans.T.aestiuum is an excellent modern species for studying concerted evolution of sub-geno...
The work related to synthetic wheat is supported by National Natural Science Foundation of China (31661143007 and 31571665) and the Major Breeding Program from Ministry of Science and Technology of China (2016YFD0101004 and 2016YFD0102002).
In recent years, wheat yield per hectare appears to have reached a plateau, leading to concerns for future food security with an increasing world population. Since its invention, synthetic hexaploid wheat (SHW) has ...