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Exploring the functional soil-microbe interface and exoenzymes through soil metaexoproteomics

机译:通过土壤元外考古学探索功能性土壤-微生物界面和外切酶

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摘要

Functionally important proteins at the interface of cell and soil are of potentially low abundance when compared with commonly recovered intracellular proteins. A novel approach was developed and used to extract the metaexoproteome, the subset of proteins found outside the cell, in the context of a soil enriched with the nitrogen-containing recalcitrant polymer chitin. The majority of proteins recovered was of bacterial origin and localized to the outer membrane or extracellular milieu. A wide variety of transporter proteins were identified, particularly those associated with amino-acid and phosphate uptake. The metaexoproteome extract retained chitinolytic activity and we were successful in detecting Nocardiopsis-like chitinases that correlated with the glycoside hydrolase family 18 (GH18) chi gene data and metataxonomic analysis. Nocardiopsis-like chitinases appeared to be solely responsible for chitinolytic activity in soil. This is the first study to detect and sequence bacterial exoenzymes with proven activity in the soil enzyme pool.
机译:与通常回收的细胞内蛋白质相比,细胞和土壤界面上功能重要的蛋白质可能含量较低。在富含氮的顽固聚合物几丁质的土壤中,开发了一种新的方法并将其用于提取metaexoproteome蛋白质组,即在细胞外发现的蛋白质子集。回收的大多数蛋白质是细菌来源的,位于外膜或细胞外环境中。鉴定了多种转运蛋白,尤其是与氨基酸和磷酸盐吸收有关的转运蛋白。 metaexoproteomeome提取物保留了几丁质酶活性,我们成功地检测了与糖苷水解酶家族18(GH18)chi基因数据和相关分类学分析相关的诺卡氏菌样几丁质酶。诺卡氏菌样几丁质酶似乎是土壤中几丁质分解活动的唯一原因。这是第一项检测和鉴定土壤酶库中具有活性的细菌外酶的研究。

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