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Toll signal transduction pathway in bivalves: complete cds of intermediate elements and related gene transcription levels in hemocytes of immune stimulated Mytilus galloprovincialis

机译:双壳类动物的Toll信号转导途径:免疫刺激的Mytilus galloprovincialis血细胞中中间元素的完整cds和相关基因转录水平

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摘要

Based on protein domain structure and organization deduced from mRNA contigs, 15 transcripts of the Toll signaling pathway have been identified in the bivalve, Mytilus galloprovincialis. Identical searches performed on publicly available Mytilus edulis ESTs revealed 11 transcripts, whereas searches performed in genomic and new transcriptome sequences of the Pacific oyster, Crassostrea gigas, identified 21 Toll-related transcripts. The remarkable molecular diversity of TRAF and IKK coding sequences of C. gigas, suggests that the sequence data inferred from Mytilus cDNAs may not be exhaustive. Most of the Toll pathway genes were constitutively and ubiquitously expressed in M. galloprovincialis, although at different levels, and clearly induced after in vivo injection with bacteria. Such over-transcription was more rapid and intense with Gram-negative than with Gram-positive bacteria. Injection of a fungus modulated the transcription of few Toll pathway genes, with the induction levels of TLR/MyD88 complex being always less intense. Purified LPS and β-glucans had marginal effect whereas peptidoglycans were ineffective. At the moment, we found no evidence of an IMD transcript in bivalves. In conclusion, mussels possess a complete Toll pathway which can be triggered either by Gram-positive or Gram-negative bacteria.
机译:根据从mRNA重叠群推导的蛋白质结构域结构和组织结构,在双壳动物Mytilus galloprovincialis中鉴定了Toll信号通​​路的15个转录本。在公开可获得的可食用的Mytilus edulis EST上进行的相同检索显示11个转录本,而在太平洋牡蛎Crassostrea gigas的基因组和新转录组序列中进行的检索则鉴定出21个与收费相关的转录本。巨型梭菌TRAF和IKK编码序列的显着分子多样性表明,从Mytilus cDNA推断的序列数据可能并不详尽。尽管在不同的水平上,大多数Toll途径基因都在鸡血分枝杆菌中组成性和普遍表达,并且在体内注射细菌后被明显诱导。与革兰氏阳性菌相比,革兰氏阴性菌的这种过度转录更为迅速和强烈。注射真菌可调节少数Toll途径基因的转录,而TLR / MyD88复合物的诱导水平始终较低。纯化的LPS和β-葡聚糖的作用很小,而肽聚糖则无效。目前,我们没有发现双壳类动物中有IMD转录本的证据。总之,贻贝具有完整的Toll途径,可以由革兰氏阳性或革兰氏阴性细菌触发。

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