拟南芥
次生细胞壁
细胞壁
基因调控网络
转录因子
基因
基因表达调控
生物
细胞生物学
非生物胁迫
功能(生物学)
拟南芥
木质素
木质部
计算生物学
基因表达
遗传学
植物
突变体
作者
Mallorie Taylor‐Teeples,Li Lin,Miguel de Lucas,Gina Turco,Ted Toal,Allison Gaudinier,N. Young,Gina M. Trabucco,Michael T. Veling,Ronald M. Lamothe,Pubudu Handakumbura,G. Xiong,Changquan Wang,Jason Corwin,Αθανάσιος Τσουκαλάς,L. Zhang,Doreen Ware,Markus Pauly,Daniel J. Kliebenstein,Katayoon Dehesh
出处
期刊:Nature
[Nature Portfolio]
日期:2014-12-22
卷期号:517 (7536): 571-575
被引量:745
摘要
The plant cell wall is an important factor for determining cell shape, function and response to the environment. Secondary cell walls, such as those found in xylem, are composed of cellulose, hemicelluloses and lignin and account for the bulk of plant biomass. The coordination between transcriptional regulation of synthesis for each polymer is complex and vital to cell function. A regulatory hierarchy of developmental switches has been proposed, although the full complement of regulators remains unknown. Here we present a protein-DNA network between Arabidopsis thaliana transcription factors and secondary cell wall metabolic genes with gene expression regulated by a series of feed-forward loops. This model allowed us to develop and validate new hypotheses about secondary wall gene regulation under abiotic stress. Distinct stresses are able to perturb targeted genes to potentially promote functional adaptation. These interactions will serve as a foundation for understanding the regulation of a complex, integral plant component.
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