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茉莉酸、乙烯和油菜素内酯控制不定根和侧根的形成,作为对重金属和类金属的应激回避反应。

Jasmonates, Ethylene and Brassinosteroids Control Adventitious and Lateral Rooting as Stress Avoidance Responses to Heavy Metals and Metalloids.

机构信息

Department of Medicine, University of Perugia, Piazzale Menghini 8/9, 06132 Perugia, Italy.

Department of Environmental Biology, Sapienza University of Rome, Piazzale Aldo Moro 5, 00185 Rome, Italy.

出版信息

Biomolecules. 2021 Jan 8;11(1):77. doi: 10.3390/biom11010077.

Abstract

Developmental and environmental signaling networks often converge during plant growth in response to changing conditions. Stress-induced hormones, such as jasmonates (JAs), can influence growth by crosstalk with other signals like brassinosteroids (BRs) and ethylene (ET). Nevertheless, it is unclear how avoidance of an abiotic stress triggers local changes in development as a response. It is known that stress hormones like JAs/ET and BRs can regulate the division rate of cells from the first asymmetric cell divisions (ACDs) in meristems, suggesting that stem cell activation may take part in developmental changes as a stress-avoidance-induced response. The root system is a prime responder to stress conditions in soil. Together with the primary root and lateral roots (LRs), adventitious roots (ARs) are necessary for survival in numerous plant species. AR and LR formation is affected by soil pollution, causing substantial root architecture changes by either depressing or enhancing rooting as a stress avoidance/survival response. Here, a detailed overview of the crosstalk between JAs, ET, BRs, and the stress mediator nitric oxide (NO) in auxin-induced AR and LR formation, with/without cadmium and arsenic, is presented. Interactions essential in achieving a balance between growth and adaptation to Cd and As soil pollution to ensure survival are reviewed here in the model species and rice.

摘要

发育和环境信号网络通常在植物生长过程中会因应环境变化而汇聚。应激激素,如茉莉酸(JAs),可以通过与其他信号如油菜素内酯(BRs)和乙烯(ET)的串扰来影响生长。然而,目前尚不清楚避免非生物胁迫如何引发局部发育变化作为一种应对反应。已知应激激素如 JAs/ET 和 BRs 可以调节分生组织中第一次不对称细胞分裂(ACDs)的细胞分裂率,这表明干细胞激活可能作为应激回避诱导的反应参与发育变化。根系是对土壤中胁迫条件的主要响应者。与主根和侧根(LRs)一起,不定根(ARs)对于许多植物物种的生存是必要的。AR 和 LR 的形成受土壤污染的影响,通过抑制或增强生根作为应激回避/生存反应,从而导致根系结构发生重大变化。本文详细概述了 JAs、ET、BRs 和应激介体一氧化氮(NO)在生长素诱导的 AR 和 LR 形成中的串扰,以及在有/没有镉和砷的情况下的情况。本文回顾了在模式物种 和水稻中,为了在 Cd 和 As 土壤污染中实现生长和适应之间的平衡并确保生存,这些相互作用是必不可少的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/37c7/7827588/8bb369a1d482/biomolecules-11-00077-g001.jpg

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