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首页> 外文期刊>Insect Biochemistry and Molecular Biology >Chemosensory proteins in the honey bee:Insights from the annotated genome,comparative analyses and expressional profiling
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Chemosensory proteins in the honey bee:Insights from the annotated genome,comparative analyses and expressional profiling

机译:蜜蜂中的化学传感蛋白:来自注释基因组的见解,比较分析和表达谱

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Small chemosensory proteins(CSPs)belong to a conserved,but poorly understood protein family that has been implicated in transporting chemical stimuli,within insect sensilla.However,their expression patterns suggest that these molecules are also critical for other functions including early development.Here we used both bioinformatics and experimental approaches to characterize the CSP gene family in a social insect,the Western honey bee Apis mellifera,and then compared its members to CSPs in other arthropods.The number of CSPs in the honey bee genome(six)is similar to that found in the sequenced dipteran species(four-seven),but is much lower than the number of CSPs in the moth or in the beetle(around 20 each).These differences seem to be the result of lineage specific expansions.Our analysis of CSPs in a number of arthropods reveals a conserved gene family found in both Mandibulates and Chelicerates.Expressional profiling in diverse tissues and throughout development reveals broader than expected patterns of expression with none of the CSPs restricted to the antennae and one found only in the queen ovaries and in embryos.We conclude that CSPs are multifunctional context-dependent proteins involved in diverse cellular processes ranging from embryonic development to chemosensory signal transduction.Some CSPs may function in cuticle synthesis,consistent with their evolutionary origins in the arthropods.
机译:小化学感应蛋白(CSP)属于一个保守的但了解甚少的蛋白家族,与昆虫感官内部的化学刺激运输有关。然而,它们的表达方式表明这些分子对于包括早期发育在内的其他功能也至关重要。利用生物信息学和实验方法表征了社会昆虫西方蜜蜂Apis mellifera中CSP基因家族的特征,然后将其成员与其他节肢动物中的CSP进行了比较。六种蜜蜂基因组中CSP的数量与在测序的二倍体物种中发现的(4-7),但是比蛾或甲虫中CSP的数量(每个约20)低得多。这些差异似乎是沿袭特定扩展的结果。在许多节肢动物中的CSP揭示了在下颌和下颚虱中都存在的保守基因家族,在不同组织和整个发育过程中的表达谱揭示了更广泛的n种预期的表达模式,没有CSP限于触角,仅在卵巢后和胚胎中才发现。我们得出结论,CSP是多功能上下文相关蛋白,参与从胚胎发育到化学感觉信号转导的各种细胞过程。一些CSP可能在角质层合成中起作用,与其在节肢动物中的进化起源相一致。

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