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一种探索细菌多样性的鸟枪法以及对位于东喜马拉雅山的萨米蒂湖糖苷水解酶的简要洞察。

A shotgun approach to explore the bacterial diversity and a brief insight into the glycoside hydrolases of Samiti lake located in the Eastern Himalayas.

作者信息

Rai Aditi, Saha Shyama Prasad, Manvar Toral, Bhattacharjee Arindam

机构信息

Department of Microbiology, University of North Bengal, P.O. NBU, District Darjeeling, West Bengal, Pin-734013, India.

Xcelris Labs Ltd, Ahmedabad, Gujarat, 380006, India.

出版信息

J Genet Eng Biotechnol. 2022 Dec 5;20(1):162. doi: 10.1186/s43141-022-00444-y.

Abstract

BACKGROUND

The Himalayas have always been an enigma and, being biodiversity hotspots, are considered extremely important from an ecological point of view. Recent advances in studies regarding high-altitude lakes have garnered relevant importance as these habitats could harbor potential psychrophilic and psychrotrophic microbes with bio-prospective applications. Contemplating the above scenario, the present study has been undertaken to understand the diversity and the functional capacities of the microbes thriving in this lake.

RESULTS

In our present study on Samiti Lake, the abundance of Proteobacteria as the major phylum was seen in both the soil and water samples. Incase of the ABSLW (water) and ABS1 (soil) sample, 148,066 and 239,754 predicted genes, were taken for functional analysis. The KEGG analysis showed that ABSLW and ABS1 had 122,911 and 160,268, genes assigned to KO terms respectively. Whereas in case of COG functional analysis, 104,334 and 130,191 genes were assigned to different COG classes for ABSLW and ABS1 respectively. Further, on studying the glycoside hydrolases, an abundance of GH13, GH2, GH3, GH43, and GH23 in both the soil and water samples were seen.

CONCLUSION

Our study has provided a comprehensive report about the bacterial diversity and functional capacities of microbes thriving in Samiti Lake.  It has also thrown some light on the occurrence of glycoside hydrolases in this region, as they have numerous biotechnological applications in different sectors.

摘要

背景

喜马拉雅山脉一直是个谜,作为生物多样性热点地区,从生态学角度来看极为重要。近期关于高海拔湖泊的研究进展具有重要意义,因为这些栖息地可能蕴藏着具有生物勘探应用潜力的嗜冷和耐冷微生物。考虑到上述情况,开展了本研究以了解在该湖泊中繁衍生息的微生物的多样性和功能能力。

结果

在我们目前对萨米蒂湖的研究中,在土壤和水样中均发现变形菌门作为主要门类的丰度较高。在ABSLW(水)和ABS1(土壤)样本中,分别提取了148,066个和239,754个预测基因进行功能分析。KEGG分析表明,ABSLW和ABS1分别有122,911个和160,268个基因被分配到KO术语。而在COG功能分析中,ABSLW和ABS1分别有104,334个和130,191个基因被分配到不同的COG类别。此外,在研究糖苷水解酶时,在土壤和水样中均发现了大量的GH13、GH2、GH3、GH43和GH23。

结论

我们的研究提供了一份关于萨米蒂湖微生物细菌多样性和功能能力的综合报告。它还揭示了该地区糖苷水解酶的存在情况,因为它们在不同领域有众多生物技术应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f3b1/9723087/72cadbe0a4ec/43141_2022_444_Fig1_HTML.jpg

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