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通过差异基因表达揭示对植物毒素具有抗性和易感性的帚尾袋貂种群的代谢分化

Metabolic differentiation of brushtail possum populations resistant and susceptible to plant toxins revealed via differential gene expression.

作者信息

Carmelet-Rescan David, Morgan-Richards Mary, Trewick Steven A

机构信息

Wildlife and Ecology, School of Natural Sciences, Massey University, Private Bag 11-222, Palmerston North, New Zealand.

出版信息

J Comp Physiol B. 2025 Feb;195(1):103-121. doi: 10.1007/s00360-024-01591-z. Epub 2024 Nov 4.

Abstract

The Australian brushtail possum (Trichosurus vulpecula) is adapted to a wide range of food plants across its range and is exposed to numerous physiological challenges. Populations that are resistant to the plant toxin sodium fluoroacetate are of particular interest as this compound has been used since the 1940s for vertebrate pest management around the world. Candidate gene identification is an important first step in understanding how spatial populations have responded to local selection resulting in local physiological divergence. We employ differential gene expression of liver samples from wild-caught brushtail possums from toxin-resistant and toxin-susceptible populations to identify candidate genes that might be involved in metabolic pathways associated with toxin-resistance. This allowed us to identify genetic pathways involved in resistance to the plant toxin sodium fluoroacetate in Western Australian possums but not those originally from south eastern Australia. We identified differentially expressed genes in the liver that are associated with cell signalling, encapsulating structure, cell mobility, and tricarboxylic acid cycle. The gene expression differences detected indicate which metabolic pathways are most likely to be associated with sodium fluoroacetate resistance in these marsupials and we provide a comprehensive list of candidate genes and pathways to focus on for future studies.

摘要

澳大利亚帚尾袋貂(Trichosurus vulpecula)在其分布范围内适应多种食物植物,并面临众多生理挑战。对植物毒素氟乙酸钠具有抗性的种群尤其令人关注,因为自20世纪40年代以来,这种化合物就在全球范围内用于脊椎动物害虫管理。候选基因鉴定是了解空间种群如何响应局部选择从而导致局部生理差异的重要第一步。我们利用从对毒素具有抗性和易感性的野生捕获帚尾袋貂肝脏样本中的差异基因表达,来鉴定可能参与与毒素抗性相关代谢途径的候选基因。这使我们能够确定西澳大利亚袋貂中与抗植物毒素氟乙酸钠相关的遗传途径,但不是那些原产于澳大利亚东南部的袋貂。我们在肝脏中鉴定出了与细胞信号传导、包囊结构、细胞移动性和三羧酸循环相关的差异表达基因。检测到的基因表达差异表明哪些代谢途径最有可能与这些有袋动物对氟乙酸钠的抗性相关,并且我们提供了一份候选基因和途径的综合清单,以供未来研究重点关注。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/55f7/11839783/62d61e79ae94/360_2024_1591_Fig1_HTML.jpg

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