胞间连丝
脱落酸
韧皮部
生长素
激素
生物物理学
植物激素
木质部
细胞内
生物
植物
化学
细胞生物学
细胞壁
生物化学
基因
作者
Poonam Mehra,Bipin K. Pandey,Dalia Melebari,Jason Banda,Nicola Leftley,Valentin Couvreur,James Rowe,Moran Anfang,Hugues De Gernier,Emily Morris,Craig J. Sturrock,Sacha J. Mooney,Ranjan Swarup,Christine Faulkner,Tom Beeckman,Rishikesh P. Bhalerao,Eilon Shani,Alexander M. Jones,Ian C. Dodd,Robert E. Sharp,Ari Sadanandom,Xavier Draye,Malcolm J. Bennett
出处
期刊:Science
[American Association for the Advancement of Science (AAAS)]
日期:2022-11-17
卷期号:378 (6621): 762-768
被引量:56
标识
DOI:10.1126/science.add3771
摘要
Plant roots exhibit plasticity in their branching patterns to forage efficiently for heterogeneously distributed resources, such as soil water. The xerobranching response represses lateral root formation when roots lose contact with water. Here, we show that xerobranching is regulated by radial movement of the phloem-derived hormone abscisic acid, which disrupts intercellular communication between inner and outer cell layers through plasmodesmata. Closure of these intercellular pores disrupts the inward movement of the hormone signal auxin, blocking lateral root branching. Once root tips regain contact with moisture, the abscisic acid response rapidly attenuates. Our study reveals how roots adapt their branching pattern to heterogeneous soil water conditions by linking changes in hydraulic flux with dynamic hormone redistribution.
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