生物
大块分离分析
突变体
基因
细胞分裂
细胞周期
植物
遗传分析
遗传学
转录组
细胞生物学
普通小麦
细胞分裂素
蛋白质降解
细胞周期检查点
突变
分子育种
位置克隆
园艺
氨基酸
遗传筛选
生长素
细胞
候选基因
作者
Danping Li,Zhencheng Xie,Yaoyu Chen,Chunhao Dong,Chuan Xia,Jizeng Jia,Yongtao Zhao,Lichao Zhang,X. Kong,X Liu
标识
DOI:10.1093/plphys/kiag043
摘要
Leaf width is an important component of plant architecture that strongly affects light capture during photosynthesis and thus grain yield, particularly under dense planting conditions. However, the genetic and molecular mechanisms regulating leaf width in wheat (Triticum aestivum L.) remain unclear. Here, we identified the narrow-leaf mutant nl1 with fewer small veins than the wild-type and isolated the narrow-leaf gene Narrow Leaf 1 (NL1) through a combination of map-based cloning and bulked segregant exome capture sequencing (BSE-seq). NL1 encodes CELL DIVISION CYCLE 48-like (CDC48-like). A single Ser-to-Phe amino acid substitution in this protein led to a narrow-leaf phenotype. Transcriptomic analysis and measurement of endogenous phytohormone levels in nl1 vs. the wild-type suggested that NL1 might regulate cell division and the cytokinin pathway to control leaf width. Haplotype analysis showed that Hap2 of NL1 has been selected during wheat breeding. These findings provide insights into the genetic and molecular mechanisms underlying the role of NL1 in regulating leaf width and point to the potential of Hap2 for improving wheat plant architecture.
科研通智能强力驱动
Strongly Powered by AbleSci AI