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宏转录组学和宏条形码分析揭示了中国沿海海域真菌群落及其活性的时空变化。

Metatranscriptomics and metabarcoding reveal spatiotemporal shifts in fungal communities and their activities in Chinese coastal waters.

机构信息

College of Science, Shantou University, Shantou, China.

State Key Laboratory of Mycology, Institute of Microbiology, Chinese Academy of Sciences, Beijing, China.

出版信息

Mol Ecol. 2023 Jun;32(11):2750-2765. doi: 10.1111/mec.16905. Epub 2023 Mar 12.

Abstract

Fungal communities are diverse and abundant in coastal waters, yet, their ecological roles and adaptations remain largely unknown. To address these gaps, ITS2 metabarcoding and metatranscriptomic analyses were used to capture the whole suite of fungal diversity and their metabolic potential in water column and sediments in the Yellow Sea during August and October 2019. ITS2 metabarcoding described successfully the abundance of Dikarya during August and October at the different examined habitats, but strongly underrepresented or failed to identify other fungal taxa, including zoosporic and early-diverging lineages, that were abundant in the mycobiome as uncovered by metatranscriptomes. Metatranscriptomics also revealed enriched expression of genes annotated to zoosporic fungi (e.g., chytrids) mainly in the surface water column in October. This enriched expression was correlated with the two-fold increase in chlorophyll-a intensity attributed to phytoplanktonic species which are known to be parasitized by chytrids. The concurrent high expression of genes related to calcium signalling and GTPase activity suggested that these metabolic traits facilitate the parasitic lifestyle of chytrids. Similarly, elevated expression of phagosome genes annotated to Rozellomycota, an early-diverging fungal phylum not fully detected with ITS2 metabarcoding, suggested that this taxon utilizes a suite of feeding modes, including phagotrophy in this coastal setting. Our data highlight the necessity of using combined approaches to accurately describe the community structure of coastal mycobiome. We also provide in-depth insights into the fungal ecological roles in coastal waters, and report potential metabolic mechanisms utilized by fungi to cope with environmental stresses that occur during distinct seasonal months in coastal ecosystems.

摘要

真菌群落广泛存在于沿海水域,且种类丰富,但它们的生态角色和适应机制在很大程度上仍未被揭示。为了解决这些问题,本研究采用 ITS2 宏条形码和宏转录组分析方法,于 2019 年 8 月和 10 月,在黄海采集水层和沉积物样本,以捕获整个真菌多样性及其代谢潜能。ITS2 宏条形码成功描述了 8 月和 10 月不同生境中担子菌的丰度,但对其他真菌类群,包括有性孢子真菌和早期分化的谱系,存在严重的代表性不足或无法识别,这些真菌类群在宏转录组中大量存在。宏转录组学还揭示了富含 zoosporic fungi(如壶菌)的基因的表达在 10 月主要在水层中富集。这种富集表达与叶绿素-a 强度增加两倍有关,而这种增加归因于浮游植物物种,已知这些浮游植物物种被壶菌寄生。同时,与钙信号和 GTPase 活性相关的基因的高表达表明这些代谢特征有助于壶菌的寄生生活方式。同样,Rozellomycota 相关吞噬体基因的高表达,Rozellomycota 是一个早期分化的真菌门,ITS2 宏条形码无法完全检测到,这表明该分类群利用了一系列摄食方式,包括在沿海环境中的吞噬作用。本研究数据突出了采用综合方法准确描述沿海真菌群落结构的必要性。此外,本研究还深入探讨了真菌在沿海水域中的生态作用,并报告了真菌在沿海生态系统中不同季节应对环境压力时可能利用的代谢机制。

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