首页> 外文期刊>Insects >Divergence in Gut Bacterial Community Among Life Stages of the Rainbow Stag Beetle Phalacrognathus muelleri (Coleptera: Lucanidae)
【24h】

Divergence in Gut Bacterial Community Among Life Stages of the Rainbow Stag Beetle Phalacrognathus muelleri (Coleptera: Lucanidae)

机译:彩虹甲虫甲虫甲虫菌(Coleptera:lucanidae)的艺术阶段的肠道细菌群落中的分歧

获取原文
           

摘要

Although stag beetles are popular saprophytic insects, there are few studies about their gut bacterial community. This study focused on the gut bacterial community structure of the rainbow stag beetle (i.e., Phalacrognathus muelleri ) in its larvae (three instars) and adult stages, using high throughput sequencing (Illumina Miseq). Our aim was to compare the gut bacterial community structure among different life stages. The results revealed that bacterial alpha diversity increased from the 1st instar to the 3rd instar larvae. Adults showed the lowest gut bacterial alpha diversity. Bacterial community composition was significantly different between larvae and adults ( p = 0.001), and 1st instar larvae (early instar) had significant differences with the 2nd ( p = 0.007) and 3rd ( p = 0.001) instar larvae (final instar). However, there was little difference in the bacterial community composition between the 2nd and 3rd instar larvae ( p = 0.059). Our study demonstrated dramatic shifts in gut bacterial community structure between larvae and adults. Larvae fed on decaying wood and adults fed on beetle jelly, suggesting that diet is a crucial factor shaping the gut bacterial community structure. There were significant differences in bacterial community structure between early instar and final instars larvae, suggesting that certain life stages are associated with a defined gut bacterial community.
机译:虽然雄鹿甲虫是流行的嗜虫害昆虫,但仍有关于他们的肠道细菌群落的研究。本研究专注于使用高通量测序(Illumina Miseq)在其幼虫(三龄)和成人阶段的彩虹落叶甲虫(即,Phalacrognathus Muelleri)的肠道细菌群落结构。我们的目标是将肠道细菌群落结构进行比较不同的生活阶段。结果表明,细菌α多样性从第1龄到第3龄幼虫增加。成年人表现出最低的肠道细菌α多样性。幼虫和成人(P = 0.001)之间的细菌群落组合物显着差异,并且第1次幼虫(早期龄)与第2(P = 0.007)和第3(P = 0.001)绒毛幼虫(最终Instar)具有显着差异。然而,在第2和第3次幼虫之间的细菌群落组成几乎没有差异(p = 0.059)。我们的研究表明,幼虫和成人之间的肠道细菌群落结构中表现出显着变化。幼虫喂食甲虫果冻喂食的腐烂木材和成年人,表明饮食是塑造肠道细菌群落结构的关键因素。早期龄胞和最终龄幼虫之间的细菌群落结构存在显着差异,表明某些寿命与定义的肠道细菌群落有关。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号