果胶
细胞生物学
形态发生
延伸率
转录因子
苗木
乙烯
发芽
生物物理学
果胶酶
抄写(语言学)
化学
细胞壁
原子力显微镜
生物
材料科学
植物
生物化学
酶
纳米技术
复合材料
极限抗拉强度
语言学
哲学
基因
催化作用
作者
Qingqing Wu,Yue Li,Mohan Lyu,Yiwen Luo,Hui Shi,Shangwei Zhong
出处
期刊:Science Advances
[American Association for the Advancement of Science]
日期:2020-11-27
卷期号:6 (48)
被引量:30
标识
DOI:10.1126/sciadv.abc9294
摘要
How mechanical forces regulate plant growth is a fascinating and long-standing question. After germination underground, buried seedlings have to dynamically adjust their growth to respond to mechanical stimulation from soil barriers. Here, we designed a lid touch assay and used atomic force microscopy to investigate the mechanical responses of seedlings during soil emergence. Touching seedlings induced increases in cell wall stiffness and decreases in cell elongation, which were correlated with pectin degradation. We revealed that PGX3, which encodes a polygalacturonase, mediates touch-imposed alterations in the pectin matrix and the mechanics of morphogenesis. Furthermore, we found that ethylene signaling is activated by touch, and the transcription factor EIN3 directly associates with PGX3 promoter and is required for touch-repressed PGX3 expression. By uncovering the link between mechanical forces and cell wall remodeling established via the EIN3-PGX3 module, this work represents a key step in understanding the molecular framework of touch-induced morphological changes.
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