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作为农业土壤接种剂的植物促生细菌

Plant growth-promoting bacteria as inoculants in agricultural soils.

作者信息

Souza Rocheli de, Ambrosini Adriana, Passaglia Luciane M P

机构信息

Departamento de Genética, Instituto de Biociências, Universidade Federal do Rio Grande do Sul, Porto Alegre, RS, Brazil.

出版信息

Genet Mol Biol. 2015 Dec;38(4):401-19. doi: 10.1590/S1415-475738420150053. Epub 2015 Nov 3.

Abstract

Plant-microbe interactions in the rhizosphere are the determinants of plant health, productivity and soil fertility. Plant growth-promoting bacteria (PGPB) are bacteria that can enhance plant growth and protect plants from disease and abiotic stresses through a wide variety of mechanisms; those that establish close associations with plants, such as the endophytes, could be more successful in plant growth promotion. Several important bacterial characteristics, such as biological nitrogen fixation, phosphate solubilization, ACC deaminase activity, and production of siderophores and phytohormones, can be assessed as plant growth promotion (PGP) traits. Bacterial inoculants can contribute to increase agronomic efficiency by reducing production costs and environmental pollution, once the use of chemical fertilizers can be reduced or eliminated if the inoculants are efficient. For bacterial inoculants to obtain success in improving plant growth and productivity, several processes involved can influence the efficiency of inoculation, as for example the exudation by plant roots, the bacterial colonization in the roots, and soil health. This review presents an overview of the importance of soil-plant-microbe interactions to the development of efficient inoculants, once PGPB are extensively studied microorganisms, representing a very diverse group of easily accessible beneficial bacteria.

摘要

根际中的植物-微生物相互作用是植物健康、生产力和土壤肥力的决定因素。植物促生细菌(PGPB)是一类能够通过多种机制促进植物生长并保护植物免受病害和非生物胁迫的细菌;那些与植物建立紧密联系的细菌,如内生菌,在促进植物生长方面可能更具成效。一些重要的细菌特性,如生物固氮、磷溶解、ACC脱氨酶活性以及铁载体和植物激素的产生,都可以作为植物促生(PGP)特性进行评估。细菌接种剂可以通过降低生产成本和环境污染来提高农艺效率,一旦接种剂有效,就可以减少或消除化学肥料的使用。为使细菌接种剂在改善植物生长和生产力方面取得成功,所涉及的几个过程会影响接种效率,例如植物根系的渗出、细菌在根内的定殖以及土壤健康状况。本综述概述了土壤-植物-微生物相互作用对高效接种剂开发的重要性,因为PGPB是经过广泛研究的微生物,代表了一类极易获取的有益细菌,种类非常多样。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2130/4763327/4abe25cb2ce8/1415-4757-gmb-S1415-475738420150053-gf01.jpg

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