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首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Influence of organic-mineral aggregates on microbial degradation of the dinoflagellate Scrippsiella trochoidea
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Influence of organic-mineral aggregates on microbial degradation of the dinoflagellate Scrippsiella trochoidea

机译:有机矿物聚集体对鞭毛鞭毛藻鞭毛藻微生物降解的影响

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摘要

Aggregation of particulate organic matter (POM) and mineral grains may result in physical protection of organic matter (OM). To test this, phytoplankton cells of the dinoflagellate Scrippsiella trochoidea were inoculated with a natural bacterial assemblage and incubated with or without the clay montmorillonite. Within 5 h, aggregation of phytoplankton OM and clay resulted in transfer of the majority (similar to 80%) of OM into the > 1.6 g cm(-3) density fraction. Degradation of particulate organic carbon (POC), particulate nitrogen (PN), dissolved organic carbon (DOC), and dissolved and particulate total hydrolyzable amino acids (THAA), were modeled with a multi-G approach. Quantity of resistant OM was between two and four times larger during clay incubation relative to clay-free incubation. The two incubations did not exhibit significant differences in degradation state of particulate amino acids nor were there indications of preferential sorption of basic amino acids. The results suggest that a considerable fraction of phytoplankton OM can become resistant, at least on a timescale of weeks, mostly due to aggregation of POM and clay mineral grains. Copyright (c) 2005 Elsevier Ltd
机译:颗粒有机物(POM)和矿物颗粒的聚集可能导致对有机物(OM)的物理保护。为了测试这一点,用天然细菌组合接种了鞭毛鞭毛藻鞭毛藻的浮游植物细胞,并在有或没有粘土蒙脱石的情况下进行了温育。在5小时内,浮游植物OM和黏土的聚集导致大部分(约80%)的OM转移到密度> 1.6 g cm(-3)的部分。使用multi-G方法对颗粒有机碳(POC),颗粒氮(PN),溶解有机碳(DOC)以及溶解和颗粒总可水解氨基酸(THAA)的降解进行了建模。相对于无黏土温育,抗性OM的量在黏土温育期间大两倍至四倍。两次温育均未显示出颗粒氨基酸降解状态的显着差异,也未显示碱性氨基酸优先吸附的迹象。结果表明,至少在数周的时间范围内,相当一部分浮游植物OM会产生抗药性,这主要是由于POM和粘土矿物颗粒的聚集。版权所有(c)2005 Elsevier Ltd

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