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硫化氢:植物发育和胁迫抗性中的关键因子

Hydrogen Sulphide: A Key Player in Plant Development and Stress Resilience.

作者信息

Jaiswal Saumya, Singh Surendra Pratap, Singh Samiksha, Gupta Ravi, Tripathi Durgesh Kumar, Corpas Francisco J, Singh Vijay Pratap

机构信息

Plant Physiology Laboratory, Department of Botany, C.M.P. Degree College, A Constituent Post Graduate College of University of Allahabad, Prayagraj, India.

Plant Molecular Biology Laboratory, Department of Botany, Dayanand Anglo-Vedic (PG) College, Chhatrapati Shahu Ji Maharaj University, Kanpur, India.

出版信息

Plant Cell Environ. 2025 Mar;48(3):2445-2459. doi: 10.1111/pce.15309. Epub 2024 Dec 2.

Abstract

Based on the research conducted so far, hydrogen sulphide (HS) plays a crucial role in the development and stress resilience of plants. HS, which acts as a signalling molecule, responds to different stresses such as heavy metals, drought, and salinity, and it regulates various aspects of plant growth and development including seed germination, root development, stomatal movement, flowering, and fruit ripening. Additionally, HS is involved in mediating legume-Rhizobium symbiosis signalling. It modulates plant responses to external environmental stimuli by interacting with other signalling molecules like phytohormones, nitric oxide, and reactive oxygen species. Furthermore, HS exerts these regulations since it can modify protein functions through a reversible thiol-based oxidative posttranslational modification called persulfidation, particularly in stress response and developmental processes. As a result, HS is recognised as an important emerging signalling molecule with multiple roles in plants. Research in this field holds promise for engineering stress tolerance in crops and may lead to potential biotechnological applications in agriculture and environmental management.

摘要

基于目前已开展的研究,硫化氢(HS)在植物的发育和胁迫抗性中发挥着关键作用。HS作为一种信号分子,对重金属、干旱和盐度等不同胁迫作出响应,并调节植物生长发育的各个方面,包括种子萌发、根系发育、气孔运动、开花和果实成熟。此外,HS参与介导豆科植物-根瘤菌共生信号传导。它通过与植物激素、一氧化氮和活性氧等其他信号分子相互作用,调节植物对外部环境刺激的反应。此外,HS之所以能发挥这些调节作用,是因为它可以通过一种称为过硫化作用的基于硫醇的可逆氧化翻译后修饰来改变蛋白质功能,特别是在应激反应和发育过程中。因此,HS被认为是一种在植物中具有多种作用的重要新兴信号分子。该领域的研究有望培育出具有胁迫耐受性的作物,并可能在农业和环境管理中带来潜在的生物技术应用。

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