Division of Agroecology and Environment, Agroscope, Zurich, Switzerland.
Department of Environmental Sciences, University of Basel, Bernoullistrasse 32, 4056, Basel, Switzerland.
Microbiome. 2021 May 7;9(1):103. doi: 10.1186/s40168-021-01049-2.
Plants influence their root and rhizosphere microbial communities through the secretion of root exudates. However, how specific classes of root exudate compounds impact the assembly of root-associated microbiotas is not well understood, especially not under realistic field conditions. Maize roots secrete benzoxazinoids (BXs), a class of indole-derived defense compounds, and thereby impact the assembly of their microbiota. Here, we investigated the broader impacts of BX exudation on root and rhizosphere microbiotas of adult maize plants grown under natural conditions at different field locations in Europe and the USA. We examined the microbiotas of BX-producing and multiple BX-defective lines in two genetic backgrounds across three soils with different properties.
Our analysis showed that BX secretion affected the community composition of the rhizosphere and root microbiota, with the most pronounced effects observed for root fungi. The impact of BX exudation was at least as strong as the genetic background, suggesting that BX exudation is a key trait by which maize structures its associated microbiota. BX-producing plants were not consistently enriching microbial lineages across the three field experiments. However, BX exudation consistently depleted Flavobacteriaceae and Comamonadaceae and enriched various potential plant pathogenic fungi in the roots across the different environments.
These findings reveal that BXs have a selective impact on root and rhizosphere microbiota composition across different conditions. Taken together, this study identifies the BX pathway as an interesting breeding target to manipulate plant-microbiome interactions. Video Abstract.
植物通过分泌根分泌物来影响其根和根际微生物群落。然而,特定类别的根分泌物化合物如何影响与根相关的微生物组的组装还不是很清楚,尤其是在现实的田间条件下。玉米根分泌苯并恶嗪类化合物(BXs),一类吲哚衍生的防御化合物,从而影响其微生物组的组装。在这里,我们研究了 BX 分泌对在欧洲和美国不同田间地点自然条件下生长的成年玉米植株的根和根际微生物组的更广泛影响。我们在三个具有不同性质的土壤中,在两个遗传背景下,检查了 BX 产生和多个 BX 缺陷型系的微生物组。
我们的分析表明,BX 分泌影响了根际和根微生物组的群落组成,对根真菌的影响最为明显。BX 分泌的影响至少与遗传背景一样强,这表明 BX 分泌是玉米构建其相关微生物组的关键特征。在三个田间实验中,BX 产生的植物并没有一致地富集微生物类群。然而,BX 分泌在不同环境中一致地耗尽了黄杆菌科和根瘤菌科,并在根中富集了各种潜在的植物病原真菌。
这些发现表明,BX 对不同条件下的根和根际微生物组组成有选择性的影响。总的来说,这项研究确定了 BX 途径是一个有趣的育种目标,可以用来操纵植物-微生物组相互作用。