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首页> 外文期刊>The ISME journal emultidisciplinary journal of microbial ecology >Depth-dependent mycoplankton glycoside hydrolase gene activity in the open ocean-evidence from the Tara Oceans eukaryote metatranscriptomes
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Depth-dependent mycoplankton glycoside hydrolase gene activity in the open ocean-evidence from the Tara Oceans eukaryote metatranscriptomes

机译:从塔拉海洋真核生物METATRANSCRIPTOMES的开放海洋中的深度依赖性Mycoplankton糖苷酶基因活性

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摘要

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 beta-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.
机译:Mycoplankton是海洋生态系统的广泛组成部分,但其功能作用的全部范围仍然是众所周知的。海洋mycoplankton可能类似于它们的陆地对应物,包括使用碳水化合物 - 活性酶(辛糖)进行含有表面和降解的高分子量有机底物。我们调查了使用塔拉海内本地数据库的海洋地图集的转录海洋真菌巨蜥基因的患病率。我们揭示了开阔海洋中的丰富的独特转录的真菌糖苷水果酶,包括在表面水中的纤维素和深叶绿素最大(DCM)上作用的特别高的数量。还发现了各种作用于一系列生物地球化学的糖苷水解酶,其中包括β-葡聚糖和甲壳素的一系列生物地球化学上重要的多糖。该分析表明,Mycoplankton在开阔的海洋中是活跃的嗜酸体术,并为未来的研究进入海洋碳循环中的海洋真菌的深度依赖作用,包括生物碳泵。

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