生物
Spike(软件开发)
粮食安全
生物技术
特质
遗传建筑学
基因组学
人口
产量(工程)
农学
数量性状位点
农业
生态学
基因组
基因
遗传学
计算机科学
人口学
社会学
程序设计语言
材料科学
软件工程
冶金
作者
Xumei Luo,Yiman Yang,Xuelei Lin,Jun Xiao
标识
DOI:10.1016/j.jgg.2023.02.015
摘要
Wheat is the most widely-grown crop globally, providing 20% of the daily consumed calories and protein content around the world. With the growing global population and frequent occurrence of extreme weather caused by climate change, ensuring adequate wheat production is essential for food security. The architecture of the inflorescence plays a crucial role in determining the grain number and size, which is a key trait for improving yield. Recent advances in wheat genomics and gene cloning techniques have improved our understanding of wheat spike development and its applications in breeding practices. Here, we summarize the genetic regulation network governing wheat spike formation, the strategies used for identifying and studying the key factors affecting spike architecture, and the progress made in breeding applications. Additionally, we highlight future directions that will aid in the regulatory mechanistic study of wheat spike determination and targeted breeding for grain yield improvement.
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