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通过转录组测序鉴定的蜘蛛属 Stegodyphus 中的同源基因。

Orthologous genes identified by transcriptome sequencing in the spider genus Stegodyphus.

机构信息

Department of Biology, University of Oulu, Finland.

出版信息

BMC Genomics. 2012 Feb 14;13:70. doi: 10.1186/1471-2164-13-70.

Abstract

BACKGROUND

The evolution of sociality in spiders involves a transition from an outcrossing to a highly inbreeding mating system, a shift to a female biased sex ratio, and an increase in the reproductive skew among individuals. Taken together, these features are expected to result in a strong reduction in the effective population size. Such a decline in effective population size is expected to affect population genetic and molecular evolutionary processes, resulting in reduced genetic diversity and relaxed selective constraint across the genome. In the genus Stegodyphus, permanent sociality and regular inbreeding has evolved independently three times from periodic-social (outcrossing) ancestors. This genus is therefore an ideal model for comparative studies of the molecular evolutionary and population genetic consequences of the transition to a regularly inbreeding mating system. However, no genetic resources are available for this genus.

RESULTS

We present the analysis of high throughput transcriptome sequencing of three Stegodyphus species. Two of these are periodic-social (Stegodyphus lineatus and S.tentoriicola) and one is permanently social (S. mimosarum). From non-normalized cDNA libraries, we obtained on average 7,000 putative uni-genes for each species. Three-way orthology, as predicted from reciprocal BLAST, identified 1,792 genes that could be used for cross-species comparison. Open reading frames (ORFs) could be deduced from 1,345 of the three-way alignments. Preliminary molecular analyses suggest a five- to ten-fold reduction in heterozygosity in the social S. mimosarum compared with the periodic-social species. Furthermore, an increased ratio of non-synonymous to synonymous polymorphisms in the social species indicated relaxed efficiency of selection. However, there was no sign of relaxed selection on the phylogenetic branch leading to S. mimosarum.

CONCLUSIONS

The 1,792 three-way ortholog genes identified in this study provide a unique resource for comparative studies of the eco-genomics, population genetics and molecular evolution of repeated evolution of inbreeding sociality within the Stegodyphus genus. Preliminary analyses support theoretical expectations of depleted heterozygosity and relaxed selection in the social inbreeding species. Relaxed selection could not be detected in the S. mimosarum lineage, suggesting that there has been a recent transition to sociality in this species.

摘要

背景

蜘蛛社会性的进化涉及从杂交到高度近亲交配系统的转变,性别比例向雌性倾斜,以及个体间繁殖偏斜的增加。这些特征共同导致有效种群数量的大幅减少。这种有效种群数量的下降预计会影响种群遗传和分子进化过程,导致整个基因组的遗传多样性减少和选择压力放松。在 Stegodyphus 属中,永久性社会性和有规律的近亲繁殖已经从周期性社会性(杂交)祖先中独立进化了三次。因此,该属是研究向有规律近亲交配系统过渡的分子进化和种群遗传后果的理想模型。然而,这个属没有遗传资源。

结果

我们展示了对三个 Stegodyphus 物种进行高通量转录组测序的分析。其中两个是周期性社会性的(Stegodyphus lineatus 和 S.tentoriicola),一个是永久性社会性的(S. mimosarum)。从非标准化 cDNA 文库中,我们为每个物种平均获得了 7000 个假定的单基因。根据相互 BLAST 的预测,三向同源性鉴定出了 1792 个可用于跨物种比较的基因。从三向比对中可以推断出 1345 个开放阅读框(ORFs)。初步分子分析表明,与周期性社会性物种相比,社会性的 S. mimosarum 的杂合度降低了五到十倍。此外,在社会性物种中,非同义与同义多态性的比值增加表明选择效率放松。然而,在导致 S. mimosarum 的进化分支上没有出现选择放松的迹象。

结论

本研究中鉴定的 1792 个三向直系同源基因为 Stegodyphus 属内重复近亲交配社会性进化的生态基因组学、种群遗传学和分子进化的比较研究提供了独特的资源。初步分析支持有效种群数量减少和社会性近亲繁殖物种选择放松的理论预期。在 S. mimosarum 谱系中未检测到选择放松,表明该物种最近已向社会性进化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/04c8/3350440/7dd65ba00080/1471-2164-13-70-1.jpg

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