Mauchline T H, Chedom-Fotso D, Chandra G, Samuels T, Greenaway N, Backhaus A, McMillan V, Canning G, Powers S J, Hammond-Kosack K E, Hirsch P R, Clark I M, Mehrabi Z, Roworth J, Burnell J, Malone J G
Department of AgroEcology, Rothamsted Research, Harpenden, UK.
The Wellcome Trust Centre for Human Genetics.
Environ Microbiol. 2015 Nov;17(11):4764-78. doi: 10.1111/1462-2920.13038. Epub 2015 Oct 6.
Manipulation of the soil microbiota associated with crop plants has huge promise for the control of crop pathogens. However, to fully realize this potential we need a better understanding of the relationship between the soil environment and the genes and phenotypes that enable microbes to colonize plants and contribute to biocontrol. A recent 2 years of investigation into the effect of wheat variety on second year crop yield in the context of take-all fungal infection presented the opportunity to examine soil microbiomes under closely defined field conditions. Amplicon sequencing of second year soil samples showed that Pseudomonas spp. were particularly affected by the wheat cultivar grown in year one. Consequently, 318 rhizosphere-associated Pseudomonas fluorescens strains were isolated and characterized across a variety of genetic and phenotypic traits. Again, the wheat variety grown in the first year of the study was shown to exert considerable selective pressure on both the extent and nature of Pseudomonas genomic diversity. Furthermore, multiple significant correlations were identified within the phenotypic/genetic structure of the Pseudomonas population, and between individual genotypes and the external wheat field environment. The approach outlined here has considerable future potential for our understanding of plant-microbe interactions, and for the broader analysis of complex microbial communities.
操控与农作物相关的土壤微生物群对于控制作物病原体有着巨大的前景。然而,为了充分实现这一潜力,我们需要更好地理解土壤环境与使微生物能够定殖于植物并有助于生物防治的基因和表型之间的关系。最近在全蚀病菌感染情况下对小麦品种对次年作物产量影响进行的两年调查,提供了在严格界定的田间条件下研究土壤微生物组的机会。次年土壤样本的扩增子测序表明,假单胞菌属受到第一年种植的小麦品种的特别影响。因此,从各种遗传和表型特征中分离并鉴定了318株与根际相关的荧光假单胞菌菌株。同样,研究第一年种植的小麦品种对假单胞菌基因组多样性的程度和性质都施加了相当大的选择压力。此外,在假单胞菌种群的表型/遗传结构内,以及在个体基因型与外部小麦田环境之间发现了多个显著相关性。这里概述的方法对于我们理解植物-微生物相互作用以及更广泛地分析复杂微生物群落具有相当大的未来潜力。