发掘微生物作为植物微生物群的力量,促进可持续农业。

IF 6.1 1区 生物学 Q1 MICROBIOLOGY
Arpan Mukherjee , Bansh Narayan Singh , Simranjit Kaur , Minaxi Sharma , Ademir Sérgio Ferreira de Araújo , Arthur Prudêncio de Araujo Pereira , Raj Morya , Gerardo Puopolo , Vânia Maria Maciel Melo , Jay Prakash Verma
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引用次数: 0

摘要

近年来,对植物及其相关微生物群(统称为植物微生物群)之间复杂的相互作用和相互影响的研究揭示了微生物群落在促进植物生长和健康方面的关键作用。植物与栖息在其根、叶和其他植物组织中的各种微生物建立了错综复杂的关系。这些微生物群主要包括细菌、古菌、真菌、原生动物和病毒,在植物内部和周围形成了一个动态的、相互关联的网络。通过互利或合作的相互作用,这些微生物对植物健康和发育的各个方面做出了贡献。植物微生物群的直接机制包括通过获取养分促进植物的生长和发育。微生物能够溶解必需的矿物质,固定大气中的氮,并将有机物转化为可利用的形式,从而增加植物可利用的养分库。此外,微生物群还能增强植物的免疫反应、拮抗植物病原体并提高抗逆性,从而帮助植物抵御病原体侵袭和不利环境条件等生物和非生物压力。此外,植物微生物群还在植物激素调节方面发挥着重要作用,促进植物体内的激素平衡。这种调节影响着各种生长过程,包括根系发育、开花和结果。微生物群落还能产生次级代谢产物,直接或间接促进植物的生长、发育和健康。对植物微生物群落功能潜力的了解催生了创新的农业实践,如基于微生物的生物肥料和生物农药,它们利用有益微生物的力量提高作物产量,同时减少对化学投入品的依赖。在本综述中,我们讨论并强调了有关植物微生物组的研究空白,以及如何利用植物微生物组作为单一和合成生物絮凝剂的来源,促进植物生长和健康。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Unearthing the power of microbes as plant microbiome for sustainable agriculture

In recent years, research into the complex interactions and crosstalk between plants and their associated microbiota, collectively known as the plant microbiome has revealed the pivotal role of microbial communities for promoting plant growth and health. Plants have evolved intricate relationships with a diverse array of microorganisms inhabiting their roots, leaves, and other plant tissues. This microbiota mainly includes bacteria, archaea, fungi, protozoans, and viruses, forming a dynamic and interconnected network within and around the plant. Through mutualistic or cooperative interactions, these microbes contribute to various aspects of plant health and development. The direct mechanisms of the plant microbiome include the enhancement of plant growth and development through nutrient acquisition. Microbes have the ability to solubilize essential minerals, fix atmospheric nitrogen, and convert organic matter into accessible forms, thereby augmenting the nutrient pool available to the plant. Additionally, the microbiome helps plants to withstand biotic and abiotic stresses, such as pathogen attacks and adverse environmental conditions, by priming the plant's immune responses, antagonizing phytopathogens, and improving stress tolerance. Furthermore, the plant microbiome plays a vital role in phytohormone regulation, facilitating hormonal balance within the plant. This regulation influences various growth processes, including root development, flowering, and fruiting. Microbial communities can also produce secondary metabolites, which directly or indirectly promote plant growth, development, and health. Understanding the functional potential of the plant microbiome has led to innovative agricultural practices, such as microbiome-based biofertilizers and biopesticides, which harness the power of beneficial microorganisms to enhance crop yields while reducing the dependency on chemical inputs. In the present review, we discuss and highlight research gaps regarding the plant microbiome and how the plant microbiome can be used as a source of single and synthetic bioinoculants for plant growth and health.

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来源期刊
Microbiological research
Microbiological research 生物-微生物学
CiteScore
10.90
自引率
6.00%
发文量
249
审稿时长
29 days
期刊介绍: Microbiological Research is devoted to publishing reports on prokaryotic and eukaryotic microorganisms such as yeasts, fungi, bacteria, archaea, and protozoa. Research on interactions between pathogenic microorganisms and their environment or hosts are also covered.
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