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捕食性腹足动物毒液基因表达与饮食的年龄相关关联。

Age-related association of venom gene expression and diet of predatory gastropods.

作者信息

Chang Dan, Duda Thomas F

机构信息

Department of Ecology and Evolutionary Biology and Museum of Zoology, University of Michigan, Ann Arbor, Michigan, USA.

Department of Statistics, University of Michigan, Ann Arbor, Michigan, USA.

出版信息

BMC Evol Biol. 2016 Jan 28;16:27. doi: 10.1186/s12862-016-0592-5.

Abstract

BACKGROUND

Venomous organisms serve as wonderful systems to study the evolution and expression of genes that are directly associated with prey capture. To evaluate the relationship between venom gene expression and prey utilization, we examined these features among individuals of different ages of the venomous, worm-eating marine snail Conus ebraeus. We determined expression levels of six genes that encode venom components, used a DNA-based approach to evaluate the identity of prey items, and compared patterns of venom gene expression and dietary specialization.

RESULTS

C. ebraeus exhibits two major shifts in diet with age-an initial transition from a relatively broad dietary breadth to a narrower one and then a return to a broader diet. Venom gene expression patterns also change with growth. All six venom genes are up-regulated in small individuals, down-regulated in medium-sized individuals, and then either up-regulated or continued to be down-regulated in members of the largest size class. Venom gene expression is not significantly different among individuals consuming different types of prey, but instead is coupled and slightly delayed with shifts in prey diversity.

CONCLUSION

These results imply that changes in gene expression contribute to intraspecific variation of venom composition and that gene expression patterns respond to changes in the diversity of food resources during different growth stages.

摘要

背景

有毒生物是研究与猎物捕获直接相关的基因的进化和表达的绝佳系统。为了评估毒液基因表达与猎物利用之间的关系,我们在有毒的食虫海蜗牛Conus ebraeus不同年龄的个体中研究了这些特征。我们测定了六个编码毒液成分的基因的表达水平,采用基于DNA的方法评估猎物种类的一致性,并比较了毒液基因表达模式和饮食专业化情况。

结果

C. ebraeus随着年龄增长饮食出现两次主要转变——最初从相对广泛的饮食范围过渡到较窄的范围,然后又回到更广泛的饮食。毒液基因表达模式也随生长而变化。所有六个毒液基因在小个体中上调,在中等大小个体中下调,然后在最大尺寸类别的个体中要么上调要么继续下调。食用不同类型猎物的个体之间毒液基因表达没有显著差异,而是与猎物多样性的变化相关联且略有延迟。

结论

这些结果表明基因表达的变化导致毒液成分的种内变异,并且基因表达模式在不同生长阶段对食物资源多样性的变化做出反应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1b4a/4730619/f23060ca6e72/12862_2016_592_Fig1_HTML.jpg

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