Institute of Environmental Biotechnology, Graz University of Technology, Petersgasse 12, Graz, 8010, Austria.
Leibniz Institute for Agricultural Engineering and Bioeconomy (ATB), Max-Eyth Allee 100, 14469, Potsdam, Germany.
New Phytol. 2022 Jun;234(6):2088-2100. doi: 10.1111/nph.17820. Epub 2021 Nov 25.
Plants evolved in association with a diverse community of microorganisms. The effect of plant phylogeny and domestication on host-microbiome co-evolutionary dynamics are poorly understood. Here we examined the effect of domestication and plant lineage on the composition of the endophytic microbiome of 11 Malus species, representing three major groups: domesticated apple (M. domestica), wild apple progenitors, and wild Malus species. The endophytic community of M. domestica and its wild progenitors showed higher microbial diversity and abundance than wild Malus species. Heirloom and modern cultivars harbored a distinct community composition, though the difference was not significant. A community-wide Bayesian model revealed that the endophytic microbiome of domesticated apple is an admixture of its wild progenitors, with clear evidence for microbiome introgression, especially for the bacterial community. We observed a significant correlation between the evolutionary distance of Malus species and their microbiome. This study supports co-evolution between Malus species and their microbiome during domestication. This finding has major implications for future breeding programs and our understanding of the evolution of plants and their microbiomes.
植物与多种多样的微生物群落共同进化。植物系统发育和驯化对宿主-微生物共进化动态的影响还知之甚少。在这里,我们研究了驯化和植物谱系对 11 种苹果属植物内生微生物组组成的影响,这些植物代表了三个主要组:栽培苹果(Malus domestica)、野生苹果祖先和野生苹果属植物。M. domestica 及其野生祖先的内生群落表现出更高的微生物多样性和丰度,而野生苹果属植物则不然。传统品种和现代品种具有不同的群落组成,尽管差异不显著。一个全社区贝叶斯模型表明,驯化苹果的内生微生物组是其野生祖先的混合物,微生物组渐渗的证据明显,特别是对细菌群落而言。我们观察到苹果属植物的进化距离与其微生物组之间存在显著相关性。这项研究支持了在驯化过程中苹果属植物与其微生物组之间的共同进化。这一发现对未来的繁殖计划以及我们对植物及其微生物组进化的理解具有重大意义。