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植物生长促进细菌和丛枝菌根真菌的生物功效:实验室和温室条件下的评估。

Biological Efficacy of Plant Growth-Promoting Bacteria and Arbuscular Mycorrhizae Fungi: Assessments in Laboratory and Greenhouse Conditions.

机构信息

Agricultural Microbiology Laboratory, Tibaitatá Research Center, Corporación Colombiana de Investigación Agropecuaria (AGROSAVIA), Mosquera, Colombia.

Laboratories Department and Agricultural Microbiology Laboratory, Corporación Colombiana de Investigación Agropecuaria (AGROSAVIA), Mosquera, Colombia.

出版信息

Curr Protoc. 2023 Apr;3(4):e732. doi: 10.1002/cpz1.732.

Abstract

Utilizing the interactions of microorganisms with plants offers a favorable path to increase crop production and replace the use of synthetic fertilizers. Different bacteria and fungi have been used as biofertilizers to improve agricultural production, yield, and sustainability. Beneficial microorganisms can act as free-living organisms, symbiotes, and endophytes. Soil bacteria called plant growth-promoting bacteria (PGPB) and fungi called arbuscular mycorrhizae fungi (AMF) stimulate the growth and health of plants by direct and indirect mechanisms including nitrogen fixation, phosphorus solubilization, phytohormone production, enzyme production, antibiotic synthesis, and induced systemic resistance. To use these microorganisms as a biofertilizer, it is necessary to assess their efficacy under laboratory and greenhouse conditions. Few reports detail the methods used to develop a test under different environmental conditions, and without these details it is difficult to develop suitable methodologies to evaluate microorganism-plant relationships. We describe four protocols that go from sample preparation to testing in vitro the efficacy of different biofertilizers. Each protocol can be used to test a different biofertilizer microorganism, focusing on bacteria such as Rhizobium sp., Azotobacter sp., Azospirillum sp., Bacillus sp. as well as AMF such as Glomus sp. These protocols can be used in several stages of biofertilizer development, including microorganism selection, microorganism characterization, and in vitro evaluation of efficacy for the registration process. © 2023 Wiley Periodicals LLC. Basic Protocol 1: Evaluating the biological effect of biofertilizer based on PGPB under laboratory conditions Basic Protocol 2: Evaluating the biological effect of biofertilizer based on PGPB under greenhouse conditions Basic Protocol 3: Evaluating the biological effect of biofertilizer based on symbiotic nitrogen-fixing bacteria Basic Protocol 4: Evaluating the biological effect of biofertilizer based on AMF.

摘要

利用微生物与植物的相互作用提供了一条有利的途径,可以增加作物产量并替代合成肥料的使用。不同的细菌和真菌已被用作生物肥料,以提高农业生产、产量和可持续性。有益的微生物可以作为自由生活的生物体、共生体和内生菌发挥作用。土壤细菌称为植物生长促进细菌(PGPB)和真菌称为丛枝菌根真菌(AMF)通过直接和间接机制刺激植物的生长和健康,包括固氮、磷溶解、植物激素产生、酶产生、抗生素合成和诱导系统抗性。为了将这些微生物用作生物肥料,有必要在实验室和温室条件下评估它们的功效。很少有报告详细说明在不同环境条件下开发测试的方法,没有这些细节,就很难开发出合适的方法来评估微生物-植物关系。我们描述了四个从样品制备到体外测试不同生物肥料功效的方案。每个方案都可用于测试不同的生物肥料微生物,重点是细菌如根瘤菌、固氮菌、固氮螺菌、芽孢杆菌以及丛枝菌根真菌如球囊霉属。这些方案可用于生物肥料开发的几个阶段,包括微生物选择、微生物特性描述以及登记过程中的体外功效评估。 © 2023 Wiley Periodicals LLC. 基本方案 1:在实验室条件下评估基于 PGPB 的生物肥料的生物效应 基本方案 2:在温室条件下评估基于 PGPB 的生物肥料的生物效应 基本方案 3:评估基于共生固氮细菌的生物肥料的生物效应 基本方案 4:评估基于 AMF 的生物肥料的生物效应。

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