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在SIR测量中,利用不同底物时细菌分类群的群落和多样性是否正在发生变化?

Are Changes Occurring in Bacterial Taxa Community and Diversity with the Utilization of Different Substrates within SIR Measurements?

作者信息

Steinberger Yosef, Doniger Tirza, Applebaum Itaii, Sherman Chen

机构信息

The Mina & Everard Goodman Faculty of Life Sciences, Bar-Ilan University, Ramat Gan 5290002, Israel.

出版信息

Microorganisms. 2024 Oct 9;12(10):2034. doi: 10.3390/microorganisms12102034.

Abstract

This research explores how the availability of substrates affects the regulation of soil microbial communities and the taxonomical composition of bacteria. The goal is to understand the impact of organic matter and substrate availability and quality on the diversity of soil bacteria. The study observed gradual changes in bacterial diversity in response to the addition of different substrate-induced respiration (SIR) substrates. Understanding the structure, dynamics, and functions of soil microbial communities is essential for assessing soil quality in sustainable agriculture. The preference for carbon sources among bacterial phyla is largely influenced by their life history and trophic strategies. Bacterial phyla like , , and , which thrive in nutrient-rich environments, preferentially utilize glucose. On the other hand, oligotrophic bacterial phyla such as or , which are found in lower numbers, have a lower ability to utilize labile C. The main difference between the two lies in their substrate utilization strategies. Understanding these distinct strategies is crucial for uncovering the bacterial functional traits involved in soil organic carbon turnover. Additionally, adding organic matter can promote the growth of copiotrophic bacteria, thus enhancing soil fertility.

摘要

本研究探讨了底物的可利用性如何影响土壤微生物群落的调控以及细菌的分类组成。目标是了解有机物质、底物可利用性和质量对土壤细菌多样性的影响。该研究观察到,随着不同底物诱导呼吸(SIR)底物的添加,细菌多样性发生了逐渐变化。了解土壤微生物群落的结构、动态和功能对于评估可持续农业中的土壤质量至关重要。细菌门对碳源的偏好很大程度上受其生活史和营养策略的影响。在营养丰富环境中茁壮成长的细菌门,如 、 和 ,优先利用葡萄糖。另一方面,寡营养细菌门,如 或 ,数量较少,利用不稳定碳的能力较低。两者的主要区别在于它们的底物利用策略。了解这些不同的策略对于揭示参与土壤有机碳周转的细菌功能特性至关重要。此外,添加有机物质可以促进富养细菌的生长,从而提高土壤肥力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/512b/11510085/d2ccff9b2358/microorganisms-12-02034-g001.jpg

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