Temperature‐mediated microbial carbon utilization in China's lakes

碳纤维 环境科学 碳循环 微生物种群生物学 气候变化 生态学 全球变暖 溶解有机碳 固碳 丰度(生态学) 环境化学 生物 化学 生态系统 二氧化碳 细菌 复合数 遗传学 复合材料 材料科学
作者
Yao Guo,Songsong Gu,Kaixuan Wu,Andrew J. Tanentzap,Junqi Yu,Xiangfen Liu,Qianzheng Li,Peng He,Dongru Qiu,Ye Deng,Pei Wang,Zhenbin Wu,Qiaohong Zhou
出处
期刊:Global Change Biology [Wiley]
卷期号:29 (17): 5044-5061 被引量:23
标识
DOI:10.1111/gcb.16840
摘要

Microbes play an important role in aquatic carbon cycling but we have a limited understanding of their functional responses to changes in temperature across large geographic areas. Here, we explored how microbial communities utilized different carbon substrates and the underlying ecological mechanisms along a space-for-time substitution temperature gradient of future climate change. The gradient included 47 lakes from five major lake regions in China spanning a difference of nearly 15°C in mean annual temperatures (MAT). Our results indicated that lakes from warmer regions generally had lower values of variables related to carbon concentrations and greater carbon utilization than those from colder regions. The greater utilization of carbon substrates under higher temperatures could be attributed to changes in bacterial community composition, with a greater abundance of Cyanobacteria and Actinobacteriota and less Proteobacteria in warmer lake regions. We also found that the core species in microbial networks changed with increasing temperature, from Hydrogenophaga and Rhodobacteraceae, which inhibited the utilization of amino acids and carbohydrates, to the CL500-29-marine-group, which promoted the utilization of all almost carbon substrates. Overall, our findings suggest that temperature can mediate aquatic carbon utilization by changing the interactions between bacteria and individual carbon substrates, and the discovery of core species that affect carbon utilization provides insight into potential carbon sequestration within inland water bodies under future climate warming.
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