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作 者:Hui Zhang Hui Zhi Di Yuan Hongkai Liang Wei Zhang Guanqing Jia Xianmin Diao
机构地区:[1]State Key Laboratory of Crop Gene Resources and Breeding/Key Laboratory of Grain Crop Genetic Resources Evaluation and Utilization,Ministry of Agriculture and Rural Affairs/Institute of Crop Sciences,Chinese Academy of Agricultural Sciences,Beijing 100081,China [2]Zhongyuan Research Center,Chinese Academy of Agricultural Sciences,Xinxiang 453500,China
出 处:《Journal of Integrative Agriculture》2024年第12期4263-4266,共4页农业科学学报(英文版)
基 金:supported by the National Key Research and Development Program of China(2023YFD1200704 and 2023YFD1200700);the National Natural Science Foundation of China(32241042);the China Agricultural ResearchSystem(CARS06-14.5-A04);the Key Laboratory of Crop Gene Resource and Germplasm Enhancement,Ministry of Agriculture and Rural Affairs,China,and the Technology Innovation Program of Chinese Academy of Agricultural Sciences.
摘 要:Increasing crop grain yields is an urgent global priority due to population growth,shrinking arable land,and severe climate change in recent years(Tang et al.2023).Unraveling the process of panicle development is crucial for enhancing the grain yield of cereal crops.In the development of rice panicles,the inflorescence meristem(IM)gives rise to two types of lateral branch meristems(BMs):primary branch meristem(pBM)and secondary branch meristem(sBM).The pBM generates sBM and spikelet meristems(SMs),and the sBM further differentiates into more SMs(Zhang and Yuan 2014).
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