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不同大小分数中的微生物的季节性演替及其模块结构由动态沿海水中的宏环境和微环境过滤共同决定。

Seasonal succession of microbes in different size-fractions and their modular structures determined by both macro- and micro-environmental filtering in dynamic coastal waters.

机构信息

LMO Research Team, National Institute of Ecology, 1210 Geumgang-ro, Maseo-myeon, Seocheon 33657, Republic of Korea; Cell Factory Research Center, Korea Research Institute of Bioscience and Biotechnology (KRIBB), 125 Gwahak-ro, Yuseong-gu, Daejeon 34141, Republic of Korea.

Cell Factory Research Center, Korea Research Institute of Bioscience and Biotechnology (KRIBB), 125 Gwahak-ro, Yuseong-gu, Daejeon 34141, Republic of Korea.

出版信息

Sci Total Environ. 2021 Aug 25;784:147046. doi: 10.1016/j.scitotenv.2021.147046. Epub 2021 Apr 20.

Abstract

Microbes interact with each other in response to various environmental changes in coastal marine ecosystems. To explore how the macroenvironment (environmental filtering) and species-engineered microenvironment (niche construction) affect the ecological network of the marine microbiome in the highly dynamic coastal waters of Korea, we analyzed the modular structures of the microbial community and identified microbial interconnections in different size fractions for a year. Fluctuations in the macroenvironment, such as temperature and nutrient concentrations driven by seasonal changes, are the major factors in determining successive microbial modules. Compared to particle-associated (PA) microbes, free-living (FL) microbes seemed to be more affected by macroenvironmental filtering. Modules related to nutrients were further divided into various modules according to different lifestyles. In addition, a large transient discharge of the Changjiang (Yangtze River) in summer also formed a distinct microbial module, which was related to the high ammonia concentration arising from phytoplankton degradation. Microbes belonging to the SAR11, SAR86, and SAR116 clades, Flavobacteriaceae, and MG IIa-L showed repeated interconnections in temperature-related modules, while the SAR202 clade, Marinimicrobia, DEV007 clade, and Arctic97B-4 and Sva0996 marine groups displayed repeated connections in nutrient-related modules. These 'skeleton'-forming microbes created species-engineered microenvironments, further fine-tuning microbial modular structures. Furthermore, they serve as keystone species for module stability by linking interdependent microbial partners within their own modules through universally beneficial metabolic activities. Therefore, they could reinforce the ecological resilience of microbial communities under abiotic and biotic perturbations in dynamic coastal waters. In conclusion, both macro- and micro-environmental filtering were important for determining the seasonal succession of microbial community structures.

摘要

微生物在海岸海洋生态系统中相互作用,以响应各种环境变化。为了探究宏环境(环境过滤)和物种构建的微环境(生态位构建)如何影响韩国高度动态沿海水域海洋微生物组的生态网络,我们分析了微生物群落的模块化结构,并在一年内确定了不同大小分数的微生物相互连接。由季节变化驱动的温度和营养浓度等宏环境波动是决定连续微生物模块的主要因素。与颗粒相关(PA)微生物相比,自由生活(FL)微生物似乎更容易受到宏环境过滤的影响。与营养有关的模块根据不同的生活方式进一步分为各种模块。此外,夏季长江(扬子江)的大量瞬时排放也形成了一个独特的微生物模块,这与浮游植物降解产生的高氨浓度有关。属于 SAR11、SAR86 和 SAR116 进化枝、黄杆菌科和 MG IIa-L 的微生物在与温度相关的模块中反复连接,而 SAR202 进化枝、Marinimicrobia、DEV007 进化枝和 Arctic97B-4 和 Sva0996 海洋群在与营养相关的模块中反复连接。这些形成“骨架”的微生物创造了物种构建的微环境,进一步微调了微生物模块化结构。此外,它们通过在自己的模块中通过普遍有益的代谢活动将相互依存的微生物伙伴联系起来,成为模块稳定性的关键种。因此,它们可以增强动态沿海水域中微生物群落对非生物和生物胁迫的生态恢复力。总之,宏环境和微环境过滤对于确定微生物群落结构的季节性演替都很重要。

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