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气候驱动的海洋微生物群落生物多样性和生物地球化学功能的演替。

Climate-driven succession in marine microbiome biodiversity and biogeochemical function.

作者信息

Larkin Alyse A, Brock Melissa L, Fagan Adam J, Moreno Allison R, Gerace Skylar D, Lees Lauren E, Suarez Stacy A, Eloe-Fadrosh Emiley A, Martiny Adam

出版信息

Res Sq. 2024 Aug 16:rs.3.rs-4682733. doi: 10.21203/rs.3.rs-4682733/v1.

Abstract

Seasonal and El Niño-Southern Oscillation (ENSO) warming result in similar ocean changes as predicted with climate change. Climate-driven environmental cycles have strong impacts on microbiome diversity, but impacts on microbiome function are poorly understood. We quantified changes in microbial genomic diversity and functioning over 11 years covering seasonal and ENSO cycles at a coastal site in the southern California Current. We observed seasonal oscillations between large genome lineages during cold, nutrient rich conditions in winter and spring versus small genome lineages, including and , in summer and fall. Parallel interannual changes separated communities depending on ENSO condition. Biodiversity shifts translated into clear oscillations in microbiome functional potential. Ocean warming induced an ecosystem with less iron but more macronutrient stress genes, depressed organic carbon degradation potential and biomass, and elevated carbon-to-nutrient biomass ratios. The consistent microbial response observed across time-scales points towards large climate-driven changes in marine ecosystems and biogeochemical cycles.

摘要

季节性变暖以及厄尔尼诺-南方涛动(ENSO)变暖所导致的海洋变化与气候变化预测结果相似。气候驱动的环境周期对微生物群落多样性有强烈影响,但对微生物群落功能的影响却知之甚少。我们在南加州海流的一个沿海站点,对涵盖季节性和ENSO周期的11年时间里微生物基因组多样性和功能的变化进行了量化。我们观察到,在冬季和春季寒冷、营养丰富的条件下,大基因组谱系与夏季和秋季的小基因组谱系(包括 和 )之间存在季节性振荡。根据ENSO状况,群落还出现了平行的年际变化。生物多样性的变化转化为微生物群落功能潜力的明显振荡。海洋变暖导致生态系统中铁含量降低,但大量营养素应激基因增多,有机碳降解潜力和生物量降低,碳与营养素生物量的比率升高。在不同时间尺度上观察到的一致微生物反应表明,海洋生态系统和生物地球化学循环受到了由气候驱动的巨大变化的影响。

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