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植物适应非生物胁迫的独脚金内酯:植物研究的新兴途径。

Strigolactones in plant adaptation to abiotic stresses: An emerging avenue of plant research.

机构信息

Department of Biochemistry and Molecular Biology, Bangabandhu Sheikh Mujibur Rahman Agricultural University, Gazipur, Bangladesh.

Stress Adaptation Research Unit, RIKEN Center for Sustainable Resource Science, Yokohama, Japan.

出版信息

Plant Cell Environ. 2018 Oct;41(10):2227-2243. doi: 10.1111/pce.13364. Epub 2018 Jul 24.

Abstract

Phytohormones play central roles in boosting plant tolerance to environmental stresses, which negatively affect plant productivity and threaten future food security. Strigolactones (SLs), a class of carotenoid-derived phytohormones, were initially discovered as an "ecological signal" for parasitic seed germination and establishment of symbiotic relationship between plants and beneficial microbes. Subsequent characterizations have described their functional roles in various developmental processes, including root development, shoot branching, reproductive development, and leaf senescence. SLs have recently drawn much attention due to their essential roles in the regulation of various physiological and molecular processes during the adaptation of plants to abiotic stresses. Reports suggest that the production of SLs in plants is strictly regulated and dependent on the type of stresses that plants confront at various stages of development. Recently, evidence for crosstalk between SLs and other phytohormones, such as abscisic acid, in responses to abiotic stresses suggests that SLs actively participate within regulatory networks of plant stress adaptation that are governed by phytohormones. Moreover, the prospective roles of SLs in the management of plant growth and development under adverse environmental conditions have been suggested. In this review, we provide a comprehensive discussion pertaining to SL-mediated plant responses and adaptation to abiotic stresses.

摘要

植物激素在提高植物对环境胁迫的耐受性方面发挥着核心作用,环境胁迫会降低植物的生产力,并威胁未来的粮食安全。独脚金内酯(SLs)是一类类胡萝卜素衍生的植物激素,最初被发现是寄生种子萌发和植物与有益微生物共生关系建立的“生态信号”。随后的研究描述了它们在各种发育过程中的功能作用,包括根系发育、分枝、生殖发育和叶片衰老。由于 SLs 在植物适应非生物胁迫过程中对各种生理和分子过程的调节中具有重要作用,因此最近受到了广泛关注。有报道称,植物中 SLs 的产生受到严格调控,并依赖于植物在发育的各个阶段所面临的胁迫类型。最近,有证据表明 SLs 与其他植物激素(如脱落酸)之间存在交叉对话,以响应非生物胁迫,这表明 SLs 积极参与由植物激素调控的植物应激适应的调控网络。此外,还提出了 SLs 在逆境条件下管理植物生长和发育中的潜在作用。在这篇综述中,我们全面讨论了 SL 介导的植物对非生物胁迫的响应和适应。

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