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与南极维管植物相关的内生细菌生物膜形成菌。

Endophytic Bacterial Biofilm-Formers Associated with Antarctic Vascular Plants.

作者信息

Iungin Olga, Prekrasna-Kviatkovska Yevheniia, Kalinichenko Oleksandr, Moshynets Olena, Potters Geert, Sidorenko Marina, Savchuk Yaroslav, Mickevičius Saulius

机构信息

Department of Biotechnology, Leather and Fur, Faculty of Chemical and Biopharmaceutical Technologies, Kyiv National University of Technologies and Design, 01011 Kyiv, Ukraine.

Biofilm Study Group, Department of Cell Regulatory Mechanisms, Institute of Molecular Biology and Genetics, National Academy of Sciences of Ukraine, 03143 Kyiv, Ukraine.

出版信息

Microorganisms. 2024 Sep 25;12(10):1938. doi: 10.3390/microorganisms12101938.

Abstract

and are the only two vascular plants colonized on the Antarctic continent, which is usually exposed to extreme environments. Endophytic bacteria residing within plant tissues can exhibit diverse adaptations that contribute to their ecological success and potential benefits for their plant hosts. This study aimed to characterize 12 endophytic bacterial strains isolated from these plants, focusing on their ecological adaptations and functional roles like plant growth promotion, antifungal activities, tolerance to salt and low-carbon environments, wide temperature range, and biofilm formation. Using 16S rRNA sequencing, we identified several strains, including novel species like Hafnia and Agreia. Many strains exhibited nitrogen-fixing ability, phosphate solubilization, ammonia, and IAA production, potentially benefiting their hosts. Additionally, halotolerance and carbon oligotrophy were also shown by studied bacteria. While some Antarctic bacteria remain strictly psychrophilic, others demonstrate a remarkable ability to tolerate a wider range of temperatures, suggesting that they have acquired mechanisms to cope with fluctuations in environmental temperature and developed adaptations to survive in intermediate hosts like mammals and/or birds. Such adaptations and high plasticity of metabolism of Antarctic endophytic bacteria provide a foundation for research and development of new promising products or mechanisms for use in agriculture and technology.

摘要

[植物名称1]和[植物名称2]是仅有的两种生长在南极大陆的维管植物,该大陆通常处于极端环境中。植物组织内的内生细菌可表现出多种适应性,这有助于它们在生态上取得成功,并对其植物宿主具有潜在益处。本研究旨在对从这些植物中分离出的12株内生细菌菌株进行表征,重点关注它们的生态适应性和功能作用,如促进植物生长、抗真菌活性、耐盐性和低碳环境耐受性、宽温度范围以及生物膜形成。通过16S rRNA测序,我们鉴定出了几株菌株,包括哈夫尼亚菌属(Hafnia)和阿格雷亚菌属(Agreia)等新物种。许多菌株表现出固氮能力、溶解磷酸盐能力、产生氨和吲哚-3-乙酸(IAA)的能力,这可能对它们的宿主有益。此外,所研究的细菌还表现出耐盐性和碳寡营养性。虽然一些南极细菌仍然严格嗜冷,但其他细菌表现出显著的耐受更广泛温度范围的能力,这表明它们已经获得了应对环境温度波动的机制,并发展出在哺乳动物和/或鸟类等中间宿主中生存的适应性。南极内生细菌的这种适应性和高度可塑性的代谢为农业和技术领域新的有前景的产品或机制的研发奠定了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e31a/11509575/6d92cbf0cf48/microorganisms-12-01938-g001.jpg

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