Suppr超能文献

PGPB-微藻互作对缓解植物盐胁迫的作用。

The Role of PGPB-Microalgae interaction in Alleviating Salt Stress in Plants.

机构信息

Centre of Biotechnology, University of Allahabad, Uttar Pradesh, Prayagraj, 211002, India.

出版信息

Curr Microbiol. 2024 Jul 16;81(9):270. doi: 10.1007/s00284-024-03805-7.

Abstract

Plant development and yield are severely hampered by climate change. Plants are very prone to a variety of abiotic stressors during growth, making them susceptible to destruction which can reduce the productivity by 20-60%. These stresses generate reactive oxygen species (ROS), which damage lipids, proteins, and nucleic acids. Microalgae and plant growth-promoting bacteria (PGPB) are remarkably effective at reducing the effects of salt stress and promoting plant growth, thereby increasing agricultural yield, and helping ensure global food security. Through a variety of mechanisms, including the production of phytohormones, 1-aminocyclopropane-1-carboxylic acid deaminase, exopolysaccharide, siderophores, hydrogen cyanide, extracellular polymeric substances, volatile organic compounds, and modulation of antioxidants defense machinery under abiotic stresses promote plant growth after inoculation of PGPB and microalgae. These microorganisms also maintain ion homeostasis, offer osmotic balance, stimulate genes that respond to salt and drought, rewire the metabolism, modify the transcription of ion transporter genes, and more. To counteract the negative consequences of salinity stress, this study summarizes the effects of PGPB- microalgae along with a tentative protective mechanism during salinity stress for sustainable agriculture.

摘要

植物的生长和产量严重受到气候变化的影响。在生长过程中,植物极易受到各种非生物胁迫,这使它们易受到破坏,从而使生产力降低 20-60%。这些胁迫会产生活性氧(ROS),从而破坏脂质、蛋白质和核酸。微藻和植物促生菌(PGPB)在减轻盐胁迫和促进植物生长方面非常有效,从而提高农业产量,有助于确保全球粮食安全。通过多种机制,包括植物激素的产生、1-氨基环丙烷-1-羧酸脱氨酶、胞外多糖、铁载体、氢氰酸、细胞外聚合物、挥发性有机化合物以及调节非生物胁迫下抗氧化防御机制,接种 PGPB 和微藻后可促进植物生长。这些微生物还能维持离子平衡、提供渗透平衡、刺激对盐和干旱响应的基因、重新布线代谢、改变离子转运体基因的转录等。为了抵消盐度胁迫的负面影响,本研究总结了 PGPB-微藻在盐度胁迫下对可持续农业的影响及其潜在的保护机制。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验