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天山不同海拔苔藓覆盖土壤中细菌多样性分析及产ACC脱氨酶菌株的筛选——以一号冰川为例

Bacterial Diversity Analysis and Screening for ACC Deaminase-Producing Strains in Moss-Covered Soil at Different Altitudes in Tianshan Mountains-A Case Study of Glacier No. 1.

作者信息

Shi Yanlei, Yuan Ye, Feng Yingying, Zhang Yinghao, Fan Yonghong

机构信息

Xinjiang Key Laboratory of Biological Resources and Genetic Engineering, College of Life Science & Technology, Xinjiang University, Urumqi 830046, China.

出版信息

Microorganisms. 2023 Jun 7;11(6):1521. doi: 10.3390/microorganisms11061521.

Abstract

The elevation of the snowline of the No. 1 Glacier in the Tianshan Mountains is increasing due to global warming, which has created favorable conditions for moss invasion and offers an opportunity to investigate the synergistic effects of incipient succession by mosses, plants, and soils. In this study, the concept of altitude distance was used instead of succession time. To investigate the changes of bacterial-community diversity in moss-covered soils during glacial degeneration, the relationship between bacterial community structure and environmental factors was analyzed and valuable microorganisms in moss-covered soils were explored. To do so, the determination of soil physicochemical properties, high-throughput sequencing, the screening of ACC-deaminase-producing bacteria, and the determination of ACC-deaminase activity of strains were performed on five moss-covered soils at different elevations. The results showed that the soil total potassium content, soil available phosphorus content, soil available potassium content, and soil organic-matter content of the AY3550 sample belt were significantly different compared with those of other sample belts ( < 0.05). Secondly, there was a significant difference ( < 0.05) in the ACE index or Chao1 index between the moss-covered-soil AY3550 sample-belt and the AY3750 sample-belt bacterial communities as the succession progressed. The results of PCA analysis, RDA analysis, and cluster analysis at the genus level showed that the community structure of the AY3550 sample belt and the other four sample belts differed greatly and could be divided into two successional stages. The enzyme activities of the 33 ACC-deaminase-producing bacteria isolated and purified from moss-covered soil at different altitudes ranged from 0.067 to 4.7375 U/mg, with strains DY1-3, DY1-4, and EY2-5 having the highest enzyme activities. All three strains were identified as by morphology, physiology, biochemistry, and molecular biology. This study provides a basis for the changes in moss-covered soil microhabitats during glacial degradation under the synergistic effects of moss, soil, and microbial communities, as well as a theoretical basis for the excavation of valuable microorganisms under glacial moss-covered soils.

摘要

由于全球变暖,天山一号冰川雪线上升,这为苔藓入侵创造了有利条件,并为研究苔藓、植物和土壤初始演替的协同效应提供了契机。本研究用海拔距离概念替代演替时间。为探究冰川退化过程中苔藓覆盖土壤细菌群落多样性变化,分析了细菌群落结构与环境因子的关系,并探索了苔藓覆盖土壤中的有价值微生物。为此,对五个不同海拔的苔藓覆盖土壤进行了土壤理化性质测定、高通量测序、产ACC脱氨酶细菌筛选及菌株ACC脱氨酶活性测定。结果表明,AY3550样带土壤全钾含量、土壤有效磷含量、土壤有效钾含量和土壤有机质含量与其他样带相比差异显著(<0.05)。其次,随着演替进行,苔藓覆盖土壤AY3550样带和AY3750样带细菌群落的ACE指数或Chao1指数存在显著差异(<0.05)。属水平的主成分分析(PCA)、冗余分析(RDA)和聚类分析结果表明,AY3550样带与其他四个样带的群落结构差异很大,可分为两个演替阶段。从不同海拔苔藓覆盖土壤中分离纯化得到的33株产ACC脱氨酶细菌的酶活性在0.067至4.7375 U/mg之间,其中DY1-3、DY1-4和EY2-5菌株酶活性最高。通过形态学、生理学、生物化学和分子生物学方法将这三株菌均鉴定为 。本研究为苔藓、土壤和微生物群落协同作用下冰川退化过程中苔藓覆盖土壤微生境变化提供了依据,也为冰川苔藓覆盖土壤中有价值微生物的挖掘提供了理论依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f5d7/10302524/848cd18cd2cc/microorganisms-11-01521-g001.jpg

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