Liu Yunchuan, Hou Jian, Wang Xiaolu, Li Tian, Majeed Uzma, Hao Chenyang, Zhang Xueyong
Key Laboratory of Crop Gene Resources and Germplasm Enhancement, Institute of Crop Science, Chinese Academy of Agricultural Sciences, Beijing, China.
State Key Laboratory of Plant Physiology and Biochemistry, College of Biological Sciences, China Agricultural University, Beijing, China.
J Exp Bot. 2020 Oct 7;71(19):5794-5807. doi: 10.1093/jxb/eraa333.
Starch is a major component of wheat (Triticum aestivum L.) endosperm and is an important part of the human diet. The functions of many starch synthesis genes have been elucidated. However, little is known about their regulatory mechanisms in wheat. Here, we identified a novel NAC transcription factor, TaNAC019-A1 (TraesCS3A02G077900), that negatively regulates starch synthesis in wheat and rice (Oryza sativa L.) endosperms. TaNAC019-A1 was highly expressed in the endosperm of developing grains and encoded a nucleus-localized transcriptional repressor. Overexpression of TaNAC019-A1 in rice and wheat led to significantly reduced starch content, kernel weight, and kernel width. The TaNAC019-A1-overexpression wheat lines had smaller A-type starch granules and fewer B-type starch granules than wild-type. Moreover, TaNAC019-A1 could directly bind to the 'ACGCAG' motif in the promoter regions of ADP-glucose pyrophosphorylase small subunit 1 (TaAGPS1-A1, TraesCS7A02G287400) and TaAGPS1-B1 (TraesCS7B02G183300) and repress their expression, thereby inhibiting starch synthesis in wheat endosperm. One haplotype of TaNAC019-B1 (TaNAC019-B1-Hap2, TraesCS3B02G092800) was positively associated with thousand-kernel weight and underwent positive selection during the Chinese wheat breeding process. Our data demonstrate that TaNAC019-A1 is a negative regulator of starch synthesis in wheat endosperm and provide novel insight into wheat yield improvement.
淀粉是小麦(Triticum aestivum L.)胚乳的主要成分,也是人类饮食的重要组成部分。许多淀粉合成基因的功能已得到阐明。然而,它们在小麦中的调控机制却鲜为人知。在此,我们鉴定出一个新的NAC转录因子TaNAC019-A1(TraesCS3A02G077900),它对小麦和水稻(Oryza sativa L.)胚乳中的淀粉合成起负调控作用。TaNAC019-A1在发育中籽粒的胚乳中高表达,编码一种定位于细胞核的转录抑制因子。在水稻和小麦中过表达TaNAC019-A1导致淀粉含量、粒重和粒宽显著降低。与野生型相比,过表达TaNAC019-A1的小麦品系具有更小的A型淀粉粒和更少的B型淀粉粒。此外,TaNAC019-A1可直接结合到ADP-葡萄糖焦磷酸化酶小亚基1(TaAGPS1-A1,TraesCS7A02G287400)和TaAGPS1-B1(TraesCS7B02G183300)启动子区域的“ACGCAG”基序上,并抑制它们的表达,从而抑制小麦胚乳中的淀粉合成。TaNAC019-B1的一个单倍型(TaNAC019-B1-Hap2,TraesCS3B02G092800)与千粒重呈正相关,且在中国小麦育种过程中经历了正向选择。我们的数据表明TaNAC019-A1是小麦胚乳淀粉合成的负调控因子,并为小麦产量改良提供了新的见解。