Suppr超能文献

探索两种在不同环境(陆地和水生)中繁盛的苔藓物种细菌群落的宏转录组。

Exploring the Metatranscriptome of Bacterial Communities of Two Moss Species Thriving in Different Environments-Terrestrial and Aquatic.

作者信息

Baev Vesselin, Gecheva Gana, Apostolova Elena, Gozmanova Mariyana, Yahubyan Galina

机构信息

Department of Molecular Biology, Faculty of Biology, University of Plovdiv, Tzar Assen 24, 4000 Plovdiv, Bulgaria.

Department of Ecology and Environmental Conservation, Faculty of Biology, University of Plovdiv, Tzar Assen 24, 4000 Plovdiv, Bulgaria.

出版信息

Plants (Basel). 2024 Apr 26;13(9):1210. doi: 10.3390/plants13091210.

Abstract

Mosses host diverse bacterial communities essential for their fitness, nutrient acquisition, stress tolerance, and pathogen defense. Understanding the microbiome's taxonomic composition is the first step, but unraveling their functional capabilities is crucial for grasping their ecological significance. Metagenomics characterizes microbial communities by composition, while metatranscriptomics explores gene expression, providing insights into microbiome functionality beyond the structure. Here, we present for the first time a metatranscriptomic study of two moss species, (Hedw.) and (Hedw.) Dixon., renowned as key biomonitors of atmospheric and water pollution. Our investigation extends beyond taxonomic profiling and offers a profound exploration of moss bacterial communities. Pseudomonadota and Actinobacteria are the dominant bacterial phyla in both moss species, but their proportions differ. In , Actinobacteria make up 62.45% and Pseudomonadota 32.48%, while in , Actinobacteria account for only 25.67% and Pseudomonadota 69.08%. This phylum-level contrast is reflected in genus-level differences. Our study also shows the expression of most genes related to nitrogen cycling across both microbiomes. Additionally, functional annotation highlights disparities in pathway prevalence, including carbon dioxide fixation, photosynthesis, and fatty acid biosynthesis, among others. These findings hint at potential metabolic distinctions between microbial communities associated with different moss species, influenced by their specific genotypes and habitats. The integration of metatranscriptomic data holds promise for enhancing our understanding of bryophyte-microbe partnerships, opening avenues for novel applications in conservation, bioremediation, and sustainable agriculture.

摘要

苔藓拥有多样的细菌群落,这些群落对其健康、养分获取、胁迫耐受性和病原体防御至关重要。了解微生物组的分类组成是第一步,但阐明它们的功能能力对于理解其生态意义至关重要。宏基因组学通过组成来表征微生物群落,而宏转录组学则探索基因表达,提供超越结构的微生物组功能见解。在这里,我们首次对两种苔藓物种——( Hedw.)和( Hedw.) Dixon.进行了宏转录组学研究,这两种苔藓被誉为大气和水污染的关键生物监测器。我们的研究不仅局限于分类分析,还对苔藓细菌群落进行了深入探索。变形菌门和放线菌门是两种苔藓物种中的主要细菌门,但它们的比例不同。在中,放线菌占62.45%,变形菌门占32.48%,而在中,放线菌仅占25.67%,变形菌门占69.08%。这种门水平的差异反映在属水平的差异上。我们的研究还表明,两个微生物组中与氮循环相关的大多数基因都有表达。此外,功能注释突出了途径普遍性的差异,包括二氧化碳固定、光合作用和脂肪酸生物合成等。这些发现暗示了与不同苔藓物种相关的微生物群落之间潜在的代谢差异,这受到它们特定的基因型和栖息地的影响。宏转录组学数据的整合有望增强我们对苔藓 - 微生物伙伴关系的理解,为保护、生物修复和可持续农业中的新应用开辟道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4c5c/11085137/1bbc419240d7/plants-13-01210-g001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验