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抗性而非果实性状决定了番茄驯化梯度上与根相关的细菌群落组成。

Resistance and Not Plant Fruit Traits Determine Root-Associated Bacterial Community Composition along a Domestication Gradient in Tomato.

作者信息

Smulders Lisanne, Ferrero Victoria, de la Peña Eduardo, Pozo María J, Díaz Pendón Juan Antonio, Benítez Emilio, López-García Álvaro

机构信息

Department Enviromental Protection, Estación Experimental del Zaidín (EEZ), CSIC, 18008 Granada, Spain.

Department of Biodiversity and Environmental Management, Campus de Vegazana s/n, University of León, 24071 León, Spain.

出版信息

Plants (Basel). 2021 Dec 23;11(1):43. doi: 10.3390/plants11010043.

Abstract

Soil bacterial communities are involved in multiple ecosystem services, key in determining plant productivity. Crop domestication and intensive agricultural practices often disrupt species interactions with unknown consequences for rhizosphere microbiomes. This study evaluates whether variation in plant traits along a domestication gradient determines the composition of root-associated bacterial communities; and whether these changes are related to targeted plant traits (e.g., fruit traits) or are side effects of less-often-targeted traits (e.g., resistance) during crop breeding. For this purpose, 18 tomato varieties (wild and modern species) differing in fruit and resistance traits were grown in a field experiment, and their root-associated bacterial communities were characterised. Root-associated bacterial community composition was influenced by plant resistance traits and genotype relatedness. When only considering domesticated tomatoes, the effect of resistance on bacterial OTU composition increases, while the effect due to phylogenetic relatedness decreases. Furthermore, bacterial diversity positively correlated with plant resistance traits. These results suggest that resistance traits not selected during domestication are related to the capacity of tomato varieties to associate with different bacterial groups. Taken together, these results evidence the relationship between plant traits and bacterial communities, pointing out the potential of breeding to affect plant microbiomes.

摘要

土壤细菌群落参与多种生态系统服务,对决定植物生产力至关重要。作物驯化和集约化农业实践常常破坏物种间的相互作用,对根际微生物群落产生未知影响。本研究评估了沿着驯化梯度的植物性状变异是否决定了根际细菌群落的组成;以及这些变化是与目标植物性状(如果实性状)相关,还是作物育种过程中较少关注的性状(如抗性)的副作用。为此,在田间试验中种植了18个果实和抗性性状不同的番茄品种(野生种和现代品种),并对其根际细菌群落进行了表征。根际细菌群落组成受植物抗性性状和基因型相关性的影响。仅考虑驯化番茄时,抗性对细菌OTU组成的影响增加,而系统发育相关性导致的影响减小。此外,细菌多样性与植物抗性性状呈正相关。这些结果表明,驯化过程中未被选择的抗性性状与番茄品种与不同细菌类群关联的能力有关。综上所述,这些结果证明了植物性状与细菌群落之间的关系,指出了育种影响植物微生物群落的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/920e/8747438/cf9b3e0518be/plants-11-00043-g001.jpg

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