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玉米初生根中的时空生长素响应网络。

Temporal and spatial auxin responsive networks in maize primary roots.

作者信息

McReynolds Maxwell R, Dash Linkan, Montes Christian, Draves Melissa A, Lang Michelle G, Walley Justin W, Kelley Dior R

机构信息

Department of Plant Pathology and Microbiology, Iowa State University, Ames, Iowa 50011, USA.

Department of Genetics, Development and Cell Biology, Iowa State University, Ames, Iowa 50011, USA.

出版信息

Quant Plant Biol. 2022 Oct 3;3:e21. doi: 10.1017/qpb.2022.17. eCollection 2022.

Abstract

Auxin is a key regulator of root morphogenesis across angiosperms. To better understand auxin-regulated networks underlying maize root development, we have characterized auxin-responsive transcription across two time points (30 and 120 min) and four regions of the primary root: the meristematic zone, elongation zone, cortex and stele. Hundreds of auxin-regulated genes involved in diverse biological processes were quantified in these different root regions. In general, most auxin-regulated genes are region unique and are predominantly observed in differentiated tissues compared with the root meristem. Auxin gene regulatory networks were reconstructed with these data to identify key transcription factors that may underlie auxin responses in maize roots. Additionally, Auxin-Response Factor subnetworks were generated to identify target genes that exhibit tissue or temporal specificity in response to auxin. These networks describe novel molecular connections underlying maize root development and provide a foundation for functional genomic studies in a key crop.

摘要

生长素是被子植物根形态发生的关键调节因子。为了更好地理解生长素调控的玉米根发育网络,我们对初生根的两个时间点(30分钟和120分钟)以及四个区域:分生区、伸长区、皮层和中柱的生长素响应转录进行了表征。在这些不同的根区域对数百个参与不同生物学过程的生长素调控基因进行了定量分析。总体而言,大多数生长素调控基因是区域特异性的,与根分生组织相比,主要在分化组织中观察到。利用这些数据重建了生长素基因调控网络,以确定可能是玉米根中生长素反应基础的关键转录因子。此外,生成了生长素反应因子子网,以识别对生长素表现出组织或时间特异性的靶基因。这些网络描述了玉米根发育潜在的新分子联系,并为一种关键作物的功能基因组学研究奠定了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9f6d/10095944/421e24db6c76/S2632882822000170_figAb.jpg

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