生物
基因
赤霉素
数量性状位点
克隆(编程)
生长素
遗传学
计算机科学
程序设计语言
作者
Yingying Cao,Dandan Dou,Dongling Zhang,Yaogang Zheng,Zhenzhen Ren,Huihui Su,Chongyu Sun,Xiaomeng Hu,Miaomiao Bao,Bingqi Zhu,Tianxue Liu,Yanhui Chen,Lixia Ku
出处
期刊:Plant Science
[Elsevier BV]
日期:2022-09-13
卷期号:325: 111459-111459
被引量:7
标识
DOI:10.1016/j.plantsci.2022.111459
摘要
Leaf angle (LA) is a critical agronomic trait enhancing grain yield under high-density planting in maize. A number of researches have been conducted in recent years to investigate the quantitative trait loci/genes responsible for LA variation, while only a few genes were identified through map-based cloning. Here we cloned the ZmDWF1 gene, which was previously reported to encode Δ24-sterol reductase in the brassinosteroids (BRs) biosynthesis pathway. Overexpression of ZmDWF1 resulted in enlarged LA, indicating that ZmDWF1 is a positive regulator of LA in maize. To reveal the regulatory framework of ZmDWF1, we conducted RNA-Sequencing and yeast-two hybrid (Y2H) screening analysis. RNA-Sequencing analyzing results indicate ZmDWF1 mainly affected expression level of genes involved in cell wall associated metabolism and hormone metabolism including BR, gibberellin, and auxin. Y2H screening with Bi-FC assay confirmed three proteins (ZmPP2C-1, ZmROF1, and ZmTWD1) interacting with ZmDWF1. We revealed a new regulatory network of ZmDWF1 gene in controlling plant architecture in maize.
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