Ren Kexin, Mo Yuanyuan, Xiao Peng, Rønn Regin, Xu Zijie, Xue Yuanyuan, Chen Huihuang, Rivera Windell L, Rensing Christopher, Yang Jun
Aquatic EcoHealth Group, Key Laboratory of Urban Environment and Health, Fujian Key Laboratory of Watershed Ecology, Institute of Urban Environment, Chinese Academy of Sciences, Xiamen 361021, China.
Key Laboratory of Urban Environment and Health, Ningbo Urban Environment Observation and Research Station, Institute of Urban Environment, Chinese Academy of Sciences, Xiamen 361021, China.
ISME Commun. 2024 Feb 24;4(1):ycae026. doi: 10.1093/ismeco/ycae026. eCollection 2024 Jan.
Microeukaryotic plankton communities are keystone components for keeping aquatic primary productivity. Currently, variations in microeukaryotic plankton diversity have often been explained by local ecological factors but not by evolutionary constraints. We used amplicon sequencing of 100 water samples across five years to investigate the ecological preferences of the microeukaryotic plankton community in a subtropical riverine ecosystem. We found that microeukaryotic plankton diversity was less associated with bacterial abundance (16S rRNA gene copy number) than bacterial diversity. Further, environmental effects exhibited a larger influence on microeukaryotic plankton community composition than bacterial community composition, especially at fine taxonomic levels. The evolutionary constraints of microeukaryotic plankton community increased with decreasing taxonomic resolution (from 97% to 91% similarity levels), but not significant change from 85% to 70% similarity levels. However, compared with the bacterial community, the evolutionary constraints were shown to be more affected by environmental variables. This study illustrated possible controlling environmental and bacterial drivers of microeukaryotic diversity and community assembly in a subtropical river, thereby indirectly reflecting on the quality status of the water environment by providing new clues on the microeukaryotic community assembly.
微型真核浮游生物群落是维持水生初级生产力的关键组成部分。目前,微型真核浮游生物多样性的变化通常用当地生态因素来解释,而不是用进化限制来解释。我们对五年内采集的100份水样进行扩增子测序,以研究亚热带河流生态系统中微型真核浮游生物群落的生态偏好。我们发现,微型真核浮游生物多样性与细菌丰度(16S rRNA基因拷贝数)的相关性低于与细菌多样性的相关性。此外,环境效应对微型真核浮游生物群落组成的影响比对细菌群落组成的影响更大,尤其是在精细分类水平上。微型真核浮游生物群落的进化限制随着分类分辨率的降低(从97%相似度水平降至91%相似度水平)而增加,但从85%相似度水平降至70%相似度水平时没有显著变化。然而,与细菌群落相比,进化限制受环境变量的影响更大。本研究阐明了亚热带河流中微型真核生物多样性和群落组装可能的环境和细菌控制驱动因素,从而通过提供微型真核生物群落组装的新线索间接反映水环境的质量状况。