结合肠道微生物群和代谢组学研究不同生境入侵苹果蜗牛的膳食组成

IF 3.5 1区 生物学 Q1 ZOOLOGY Integrative zoology Pub Date : 2025-01-10 DOI:10.1111/1749-4877.12942
Yue Wang, Xinni He, Zijin Qian, Shuxian Li, Muzi Jing, Xuexia Li, Wenjia Shen, Shaoshuai Xue, Hong Li, Lian Chen
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引用次数: 0

摘要

Pomacea canaliculata是一种公认的全球入侵水生物种。分析入侵物种的肠道菌群、膳食组成和代谢,有助于了解入侵物种的摄食策略和对环境的生理适应策略。肠道内容物样本采集自生活在池塘、河流和沟渠三种不同环境中的管状假单胞虫(p.c analiculata)。对这些样本进行16S rRNA基因测序分析和多重元条形码分析,包括真核18S rRNA、线粒体细胞色素c氧化酶I (COI)和叶绿体rbcL基因。此外,对肠道内容物样本进行代谢组学分析,研究代谢变化。沟渠中小管梭子鱼的膳食多样性最高,池塘中雌梭子鱼的膳食多样性高于雄梭子鱼。18S rRNA基因在鉴定杂食性物种的膳食成分方面具有很高的潜力。由于食物资源和其他环境因素的差异,不同生境的管状假单胞菌肠道菌群存在显著差异。水生环境中的细菌对小管假单胞鱼肠道菌群的影响最小。总体而言,管状假单胞虫在不同栖息地表现出生理特征的适应性变化,包括饮食的改变,这反过来又影响肠道内的微生物群和代谢途径,如氨基酸的生物合成。本研究考虑了包括食性在内的多种因素,探讨了小管鱼适应不同生境的生理机制,这对了解其入侵潜力及其对水生生态系统的威胁具有重要意义。
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Exploring Dietary Composition in an Invasive Apple Snail From Different Habitats Combining With Intestinal Microbiota and Metabolomics.

Pomacea canaliculata is recognized as a globally invasive aquatic species. Analyses of intestinal microbiota, dietary composition, and metabolism of invasive species can enhance our understanding of their feeding strategies and physiological adaptation strategies to the environment. Intestinal content samples were collected from P. canaliculata inhabiting three distinct environments including a pond, a river, and a ditch. These samples were subjected to 16S rRNA gene sequencing analysis and multiple metabarcoding analyses, including eukaryotic 18S rRNA, mitochondrial cytochrome c oxidase I (COI), and chloroplast rbcL genes. In addition, metabolomics analysis was conducted on the intestinal content samples to investigate metabolic change. The highest dietary diversity in P. canaliculata was observed in the ditch, and females exhibited a higher dietary diversity than males in the pond. The 18S rRNA gene has a high potential for identifying the dietary components of omnivorous species. The intestinal microbiota of P. canaliculata from different habitats displayed significant variations, attributed to differences in food resources and other environmental factors. Bacteria in the aquatic environment had minimal impact on the intestinal microbiota of P. canaliculata. Overall, P. canaliculata exhibited adaptive changes in physiological characteristics across different habitats, including alterations in diet, which, in turn, influence microbiota and metabolic pathways such as amino acid biosynthesis in the intestine. The present study investigated the physiological mechanisms that enable P. canaliculata to adapt to diverse habitats, considering various factors including diet, which is important for comprehending its invasive potential and the subsequent threats it poses to aquatic ecosystems.

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来源期刊
CiteScore
6.40
自引率
12.10%
发文量
81
审稿时长
>12 weeks
期刊介绍: The official journal of the International Society of Zoological Sciences focuses on zoology as an integrative discipline encompassing all aspects of animal life. It presents a broader perspective of many levels of zoological inquiry, both spatial and temporal, and encourages cooperation between zoology and other disciplines including, but not limited to, physics, computer science, social science, ethics, teaching, paleontology, molecular biology, physiology, behavior, ecology and the built environment. It also looks at the animal-human interaction through exploring animal-plant interactions, microbe/pathogen effects and global changes on the environment and human society. Integrative topics of greatest interest to INZ include: (1) Animals & climate change (2) Animals & pollution (3) Animals & infectious diseases (4) Animals & biological invasions (5) Animal-plant interactions (6) Zoogeography & paleontology (7) Neurons, genes & behavior (8) Molecular ecology & evolution (9) Physiological adaptations
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