...
首页> 外文期刊>Molecular ecology >Carry-over effect of larval settlement cue on postlarval gene expression in the marine gastropod Haliotis asinina
【24h】

Carry-over effect of larval settlement cue on postlarval gene expression in the marine gastropod Haliotis asinina

机译:幼虫沉降信号对海洋腹足纲拟南芥(Haliotis asinina)幼虫后基因表达的携带效应

获取原文
获取原文并翻译 | 示例
           

摘要

The drastic shift from pelagic larvae to benthic adult form that occurs during marine invertebrate metamorphosis is often induced by intimate interactions between settling larvae and their benthic environment. Larval experience prior to and during metamorphosis can significantly affect adult fitness, but it is presently unknown whether the exact nature of the inductive cue is an experience that matters, or by what mechanism such carry-over effects are mediated. Here we test for carry-over effects of the specific nature of inductive cues on gene expression in metamorphosing postlarvae of the tropical abalone, Haliotis asinina. Postlarvae induced by three different species of coralline algae all successfully undergo metamorphosis, yet the expression profiles of 11 of 17 metamorphosis-related genes differ according to which species of algae the larvae settled upon. Significantly, several genes continue to be differentially expressed for at least 40 h after removal of the algae from the postlarvae, clearly demonstrating a carry-over effect of inductive cue on gene expression. We observe a carryover effect in several genes with varying functions and spatial expression patterns, indicating that each algal species impacts global gene expression in a unique manner. These data unexpectedly reveal that transcriptional modulation of metamorphosis-related genes is contingent upon the precise composition of the benthic microenvironment experienced directly at induction of settlement, and highlight transcription as a mechanism that can mediate between larval and postlarval experiences. For new recruits into an abalone population, metamorphosis clearly does not represent a new transcriptional beginning.
机译:在海洋无脊椎动物变态期间发生的从上层幼虫到底栖成年形式的剧烈转变通常是由沉降幼虫与其底栖环境之间的密切相互作用引起的。变态之前和变态期间的幼虫经历会显着影响成年人的适应能力,但目前尚不清楚归纳提示的确切性质是否是重要的经历,或这种结转效应是通过何种机制介导的。在这里,我们测试了诱导线索的特定性质对热带鲍鱼Haliotis asinina变态的幼虫变态后基因表达的残留效应。由三种不同种类的藻类藻类诱导的幼虫均成功地发生了蜕变,但是17种与蜕变相关的基因中的11种的表达谱根据其所定居的藻类的种类而不同。值得注意的是,从幼体中去除藻类后,至少有40 h几个基因继续差异表达,这清楚地表明了诱导线索对基因表达的残留效应。我们观察到几个具有不同功能和空间表达模式的基因的残留效应,表明每种藻类物种以独特的方式影响全球基因表达。这些数据出乎意料地表明,与变态相关的基因的转录调节取决于直接在定居诱导中经历的底栖微环境的精确组成,并突显了转录作为可以在幼虫和幼虫后经历之间进行调节的机制。对于进入鲍鱼种群的新兵来说,变态显然并不代表新的转录起点。

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