Department of Microbiology, Genetics, and Immunology, Michigan State University, East Lansing, MI, USA.
Plant Resilience Institute, Michigan State University, East Lansing, MI, USA.
Nat Commun. 2024 Jul 27;15(1):6347. doi: 10.1038/s41467-024-50463-1.
Mitigating the effects of climate stress on crops is important for global food security. The microbiome associated with plant roots, the rhizobiome, can harbor beneficial microbes that alleviate stress, but the factors influencing their recruitment are unclear. We conducted a greenhouse experiment using field soil with a legacy of growing switchgrass and common bean to investigate the impact of short-term drought severity on the recruitment of active bacterial rhizobiome members. We applied 16S rRNA and 16S rRNA gene sequencing for both crops and metabolite profiling for switchgrass. We included planted and unplanted conditions to distinguish environment- versus plant-mediated rhizobiome drivers. Differences in community structure were observed between crops and between drought and watered and planted and unplanted treatments within crops. Despite crop-specific communities, drought rhizobiome dynamics were similar across the two crops. The presence of a plant more strongly explained the rhizobiome variation in bean (17%) than in switchgrass (3%), with a small effect of plant mediation during drought observed only for the bean rhizobiome. The switchgrass rhizobiome was stable despite changes in rhizosphere metabolite profiles between planted and unplanted treatments. We conclude that rhizobiome responses to short-term drought are crop-specific, with possible decoupling of plant exudation from rhizobiome responses.
缓解气候压力对作物的影响对全球粮食安全很重要。与植物根系相关的微生物组,即根瘤菌组,可以容纳缓解压力的有益微生物,但影响它们招募的因素尚不清楚。我们使用含有种植柳枝稷和普通豆历史的田间土壤进行了温室实验,以研究短期干旱严重程度对活性细菌根瘤菌成员招募的影响。我们对两种作物进行了 16S rRNA 和 16S rRNA 基因测序,并对柳枝稷进行了代谢物分析。我们包括种植和未种植的条件,以区分环境和植物介导的根瘤菌驱动因素。在作物之间以及在作物内的干旱和浇水以及种植和未种植处理之间观察到群落结构的差异。尽管存在作物特异性群落,但两种作物的干旱根瘤菌动态相似。植物的存在比柳枝稷(3%)更能解释豆科植物(17%)根瘤菌的变异,在干旱期间仅观察到豆科植物根瘤菌的植物介导作用很小。尽管在种植和未种植处理之间的根际代谢物图谱发生了变化,柳枝稷的根瘤菌仍然稳定。我们得出的结论是,根瘤菌对短期干旱的反应是特定于作物的,植物的分泌物与根瘤菌的反应可能脱钩。