Institute of Soil and Water Resources and Environmental Science, College of Environmental and Resource Sciences, Zhejiang University, Hangzhou, China.
Zhejiang Provincial Key Laboratory of Agricultural Resources and Environment, Zhejiang University, Hangzhou, China.
ISME J. 2021 Sep;15(9):2655-2664. doi: 10.1038/s41396-021-00957-3. Epub 2021 Mar 21.
Microbial community circadian rhythms have a broad influence on host health and even though light-induced environmental fluctuations could regulate microbial communities, the contribution of light to the circadian rhythms of rhizosphere microbial communities has received little attention. To address this gap, we monitored diel changes in the microbial communities in rice (Oryza sativa L.) rhizosphere soil under light-dark and constant dark regimes, identifying microbes with circadian rhythms caused by light exposure and microbial circadian clocks, respectively. While rhizosphere microbial communities displayed circadian rhythms under light-dark and constant dark regimes, taxa possessing circadian rhythms under the two conditions were dissimilar. Light exposure concealed microbial circadian clocks as a regulatory driver, leading to fewer ecological niches in light versus dark communities. These findings disentangle regulation mechanisms for circadian rhythms in the rice rhizosphere microbial communities and highlight the role of light-induced regulation of rhizosphere microbial communities.
微生物群落的昼夜节律对宿主健康有广泛的影响,尽管光照引起的环境波动可以调节微生物群落,但光照对根际微生物群落昼夜节律的贡献却很少受到关注。为了弥补这一空白,我们监测了在光照-黑暗和持续黑暗两种条件下,水稻(Oryza sativa L.)根际土壤中微生物群落的昼夜变化,分别确定了由光照引起的具有昼夜节律的微生物和微生物昼夜节律钟。虽然根际微生物群落在光照-黑暗和持续黑暗两种条件下都显示出昼夜节律,但在这两种条件下具有昼夜节律的分类群是不同的。光照掩盖了微生物昼夜节律钟作为调节驱动因素,导致光照下的生态位比黑暗下的生态位少。这些发现揭示了水稻根际微生物群落昼夜节律的调节机制,并强调了光照诱导的根际微生物群落调节作用。