...
首页> 外文期刊>BMC Genomics >Differential expression profiling of components associated with exoskeletal hardening in crustaceans
【24h】

Differential expression profiling of components associated with exoskeletal hardening in crustaceans

机译:甲壳类动物骨骼外硬化相关成分的差异表达谱

获取原文
   

获取外文期刊封面封底 >>

       

摘要

Background Exoskeletal hardening in crustaceans can be attributed to mineralization and sclerotization of the organic matrix. Glycoproteins have been implicated in the calcification process of many matrices. Sclerotization, on the other hand, is catalysed by phenoloxidases, which also play a role in melanization and the immunological response in arthropods. Custom cDNA microarrays from Portunus pelagicus were used to identify genes possibly associated with the activation pathways involved in these processes. Results Two genes potentially involved in the recognition of glycosylation, the C-type lectin receptor and the mannose-binding protein, were found to display molt cycle-related differential expression profiles. C-type lectin receptor up-regulation was found to coincide with periods associated with new uncalcified cuticle formation, while the up-regulation of mannose-binding protein occurred only in the post-molt stage, during which calcification takes place, implicating both in the regulation of calcification. Genes presumed to be involved in the phenoloxidase activation pathway that facilitates sclerotization also displayed molt cycle-related differential expression profiles. Members of the serine protease superfamily, trypsin-like and chymotrypsin-like, were up-regulated in the intermolt stage when compared to post-molt, while trypsin-like was also up-regulated in pre-molt compared to ecdysis. Additionally, up-regulation in pre- and intermolt stages was observed by transcripts encoding other phenoloxidase activators including the putative antibacterial protein carcinin-like, and clotting protein precursor-like. Furthermore, hemocyanin, itself with phenoloxidase activity, displayed an identical expression pattern to that of the phenoloxidase activators, i.e. up-regulation in pre- and intermolt. Conclusion Cuticle hardening in crustaceans is a complex process that is precisely timed to occur in the post-molt stage of the molt cycle. We have identified differential expression patterns of several genes that are believed to be involved in biomineralization and sclerotization and propose possible regulatory mechanisms for these processes based on their expression profiles, such as the potential involvement of C-type lectin receptors and mannose binding protein in the regulation of calcification.
机译:背景甲壳类动物的骨骼外硬化可能归因于有机基质的矿化和硬化。糖蛋白与许多基质的钙化过程有关。另一方面,硬化是由酚氧化酶催化的,酚氧化酶在节肢动物的黑色素化和免疫反应中也起作用。来自远古Portunus的定制cDNA微阵列用于鉴定可能与这些过程中涉及的激活途径相关的基因。结果发现两个可能参与糖基化识别的基因,C型凝集素受体和甘露糖结合蛋白,表现出与蜕皮周期相关的差异表达谱。发现C型凝集素受体的上调与新的未钙化角质层形成相关的时期相吻合,而甘露糖结合蛋白的上调仅发生在蜕皮后阶段,在此期间钙化发生,这暗示着两者都参与了。钙化调节。推测参与促进硬化的酚氧化酶激活途径的基因也显示了与蜕皮周期相关的差异表达谱。与蜕皮后相比,丝氨酸蛋白酶超家族成员胰蛋白酶样和胰凝乳蛋白酶样在蜕皮期被上调,而蜕皮前胰蛋白酶样在蜕皮前也被上调。另外,通过编码其他酚氧化酶激活剂的转录本可以观察到在蜕皮前和蜕皮期的上调,这些转录本包括推定的抗菌素类癌蛋白样蛋白和凝固蛋白前体样蛋白。此外,本身具有酚氧化酶活性的血蓝蛋白表现出与酚氧化酶激活剂相同的表达模式,即在前和中间蜕皮中上调。结论甲壳类动物的表皮硬化是一个复杂的过程,精确地定时发生在蜕皮周期的蜕皮后阶段。我们已经确定了一些基因的差异表达模式,这些基因被认为参与了生物矿化和硬化过程,并根据它们的表达谱为这些过程提出了可能的调控机制,例如C型凝集素受体和甘露糖结合蛋白可能参与其中。钙化调节。

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