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海洋真核生物宏转录组揭示开阔海域中微生物糖苷水解酶基因活性的深度依赖性

Depth-dependent mycoplankton glycoside hydrolase gene activity in the open ocean-evidence from the Tara Oceans eukaryote metatranscriptomes.

机构信息

Marine Biological Association of the UK, The Laboratory, Citadel Hill, Plymouth, UK.

School of Geographical Sciences, University of Bristol, University Road, Bristol, UK.

出版信息

ISME J. 2020 Sep;14(9):2361-2365. doi: 10.1038/s41396-020-0687-2. Epub 2020 Jun 3.

Abstract

Mycoplankton are widespread components of marine ecosystems, yet the full extent of their functional role remains poorly known. Marine mycoplankton are likely functionally analogous to their terrestrial counterparts, including performing saprotrophy and degrading high-molecular weight organic substrates using carbohydrate-active enzymes (CAZymes). We investigated the prevalence of transcribed oceanic fungal CAZyme genes using the Marine Atlas of Tara Ocean Unigenes database. We revealed an abundance of unique transcribed fungal glycoside hydrolases in the open ocean, including a particularly high number that act upon cellulose in surface waters and the deep chlorophyll maximum (DCM). A variety of other glycoside hydrolases acting on a range of biogeochemically important polysaccharides including β-glucans and chitin were also found. This analysis demonstrates that mycoplankton are active saprotrophs in the open ocean and paves the way for future research into the depth-dependent roles of marine fungi in oceanic carbon cycling, including the biological carbon pump.

摘要

海洋菌是海洋生态系统中广泛存在的组成部分,但它们的全部功能作用仍知之甚少。海洋菌可能在功能上与陆地菌类似,包括进行腐生作用以及利用碳水化合物活性酶(CAZymes)降解高分子量有机底物。我们使用 Tara 海洋单基因图谱海洋非冗余基因数据库调查了海洋真菌 CAZyme 基因转录的普遍性。我们发现了海洋中大量独特的转录真菌糖苷水解酶,包括在地表水和深海叶绿素最大值(DCM)中作用于纤维素的特别高数量的糖苷水解酶。还发现了其他各种作用于一系列具有生物地球化学重要性的多糖,包括β-葡聚糖和几丁质的糖苷水解酶。这项分析表明,海洋菌是海洋中的活跃腐生菌,为未来研究海洋真菌在海洋碳循环中的深度相关作用铺平了道路,包括生物碳泵。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5459/7609696/2c63bf7a8458/41396_2020_687_Fig1_HTML.jpg

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