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食物专一性物种(斯蒂芬金氏鼢鼠)和广食性物种(白足鼢鼠)对杜松(杜松)取食的肝组织基因表达差异。

Differential hepatic gene expression of a dietary specialist (Neotoma stephensi) and generalist (Neotoma albigula) in response to juniper (Juniperus monosperma) ingestion.

机构信息

Department of Zoology, Weber State University, Ogden, USA.

出版信息

Comp Biochem Physiol Part D Genomics Proteomics. 2007 Mar;2(1):34-43. doi: 10.1016/j.cbd.2006.11.001. Epub 2006 Nov 17.

Abstract

Dietary specialization is thought to be rare in mammalian herbivores because of limitations of their detoxification system in processing large doses of a single type of plant secondary compound (PSC). Therefore, in order to specialize on a single species of plant, mammalian herbivores must have a highly efficient detoxification system for the particular types of PSCs they ingest. Using microarray technology, we looked at the expression of hepatic genes of a dietary specialist, Neotoma stephensi, and a sympatric generalist, Neotoma albigula, in response to diets containing different levels of one-seeded juniper (Juniperus monosperma). We found large between species differences in gene expression, as well as large within species differences when specialists fed a low juniper diet (25% juniper) were compared to specialists fed their ecologically relevant level of juniper (70% juniper). We also tested the hypothesis that the specialist relies on less costly phase I detoxification enzymes more than phase II compared to the generalist. Although we found that the specialist had higher cumulative as well as average expression of phase I versus phase II enzymes, the generalist had a similar pattern of expression for phase I versus phase II enzymes.

摘要

饮食特化被认为在哺乳动物食草动物中很少见,因为它们的解毒系统在处理大量单一类型的植物次生化合物 (PSC) 时存在限制。因此,为了专门以单一植物物种为食,哺乳动物食草动物必须具有高效的解毒系统来处理它们摄入的特定类型的 PSC。我们使用微阵列技术研究了食性专家 Neotoma stephensi 和同域广食者 Neotoma albigula 的肝脏基因表达,这些动物对含有不同水平的单种杜松 (Juniperus monosperma) 的饮食做出了反应。我们发现,在物种间存在很大的基因表达差异,而且当专家以低水平的杜松(25%)喂养时,与专家以其生态相关的杜松水平(70%)相比,物种内也存在很大的差异。我们还检验了这样一个假设,即与广食者相比,专家更依赖于成本较低的 I 相解毒酶,而不是 II 相。尽管我们发现专家的 I 相比 II 相酶的累积和平均表达都更高,但广食者的 I 相比 II 相酶的表达模式相似。

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