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北美湖泊中菌落内共生微生物群落对氮、磷和温度水平变化的动态响应

Dynamic Responses of Endosymbiotic Microbial Communities Within Colonies in North American Lakes to Altered Nitrogen, Phosphorus, and Temperature Levels.

作者信息

Gobler Christopher J, Jankowiak Jennifer G

机构信息

School of Marine and Atmospheric Sciences, Stony Brook University, Southampton, NY, United States.

出版信息

Front Microbiol. 2022 Feb 10;12:781500. doi: 10.3389/fmicb.2021.781500. eCollection 2021.

Abstract

The toxic cyanobacterium, , is a pervasive cyanobacterial harmful algal bloom (CHAB) - forming genus that naturally occurs in colonies that harbor diverse microbiomes of heterotrophic bacteria. While the effects of nutrient loading and climatic warming on CHABs are well-known, little is known regarding how these environmental drivers alter the structural and functional potential of the microbial assemblages associated with blooms that, in turn, may impact cyanobacterial growth. Here, we used next-generation sequencing of 16S ribosomal rRNA genes to characterize the dynamics of the bacterial assemblages within colonies in two temperate North American lakes: Lake Erie and Lake Agawam (NY, United States) and quantified their responses to experimentally increased levels of nitrogen (N), phosphorus (P) and temperature. Across experiments, populations were consistently and significantly promoted by N and, to a lesser extent, elevated temperature ( < 0.05). In contrast, bacterial assemblages within colonies were more resilient to environmental perturbations, with the relative abundance of 7-16% of amplicon sequence variants changing and several individual taxa displaying significant ( < 0.05) increases and decreases in relative abundance, primarily in response to elevated temperature and to a lesser extent, N. In contrast to individual taxa, community diversity was not significantly altered by individual treatments during experiments but rather was inversely correlated with the intensity of blooms ( < 0.001). While predicted metabolic function was even less impacted by environmental drivers than microbial diversity, the predicted abundance of nitrogenase (), alkaline phosphatase (), and urease () genes significantly increased in response to N but decreased in response to increased temperature ( < 0.05). Collectively, the resilience of microbial community structure and function within colonies suggests they may support the ability of to persist through short-term fluctuations in environmental conditions by supplying essential nutrients.

摘要

有毒蓝藻……是一种普遍形成蓝藻有害藻华(CHAB)的属,自然存在于含有多种异养细菌微生物群的群体中。虽然营养物质负荷和气候变暖对蓝藻有害藻华的影响是众所周知的,但对于这些环境驱动因素如何改变与藻华相关的微生物群落的结构和功能潜力,进而可能影响蓝藻生长,人们却知之甚少。在这里,我们使用16S核糖体RNA基因的下一代测序来表征北美两个温带湖泊伊利湖和阿加瓦姆湖(美国纽约)中……群体内细菌群落的动态,并量化它们对实验性增加的氮(N)、磷(P)和温度水平的反应。在所有实验中,……群体受到氮的持续且显著的促进,在较小程度上也受到温度升高的促进(P<0.05)。相比之下,……群体内的细菌群落对环境扰动更具弹性,7 - 16%的扩增子序列变体的相对丰度发生变化,几个个体分类群的相对丰度有显著(P<0.05)增加和减少,主要是对温度升高的反应以及在较小程度上对氮的反应。与个体分类群不同,实验期间单个处理并未显著改变群落多样性,而是与……藻华的强度呈负相关(P<0.001)。虽然预测的代谢功能受环境驱动因素的影响甚至小于微生物多样性,但固氮酶(……)、碱性磷酸酶(……)和脲酶(……)基因的预测丰度对氮的反应显著增加,但对温度升高的反应则降低(P<0.05)。总体而言,……群体内微生物群落结构和功能的弹性表明,它们可能通过提供必需营养物质来支持……在环境条件短期波动中持续存在的能力。

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