首页> 外文期刊>Frontiers in Ecology and Evolution >Multiple Roles of the Polycistronic Gene Tarsal-less/Mille-Pattes/Polished-Rice During Embryogenesis of the Kissing Bug Rhodnius prolixus
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Multiple Roles of the Polycistronic Gene Tarsal-less/Mille-Pattes/Polished-Rice During Embryogenesis of the Kissing Bug Rhodnius prolixus

机译:多顺反子基因Tarsal-less / Mille-Pattes / Polished-Rice在接吻小虫Rhodnius prolixus胚胎发生期间的多重作用

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Genes encoding small open-reading frames (smORFs) have been characterized as essential players of developmental processes. The smORF tarsaless/mille-pattes/polished-rice has been thoroughly investigated in holometabolous insects, such as the fruit fly Drosophila melanogaster and the red flour beetle Tribolium castaneum, while its function in hemimetabolous insects was only recently investigated. Thus, we analyzed the function of the tal/pri/mlpt ortholog in a hemimetabolous insect, the kissing bug Rhodnius prolixus (Rp). Sequence analysis shows that Rp-mlpt polycistronic mRNA encodes two small peptides (11 to 14 amino acids) containing a LDPTG motif. Interestingly, a new hemipteran-specific conserved peptide of approximately 80 amino acids was also identified by in silico analysis. In silico docking analysis supports the binding of the small Mlpt peptides to the transcription factor Shavenbaby. Rp-mlpt in situ hybridization and knockdown via RNA interference showed a conserved role of Rp-mlpt during embryogenesis, with a major role in the regulation of thoracic versus abdominal segmentation, leg development and head formation. Altogether, our study shows that mlpt segmentation role is conserved in the common ancestor of Paraneoptera and suggests that polycistronic genes might generate order specific smORFs.
机译:编码小的开放阅读框(smORF)的基因已被表征为发育过程的重要参与者。 smORF的无m /无孔雀斑/抛光大米已经在全代谢昆虫中进行了彻底研究,例如果蝇果蝇和红色甲壳虫Tri粉,而其在半代谢昆虫中的功能只是最近才被研究。因此,我们分析了tal / pri / mlpt直系同源物在半代谢昆虫,接吻臭虫Rhodnius prolixus(Rp)中的功能。序列分析表明,Rp-mlpt多顺反子mRNA编码两个含有LDPTG基序的小肽(11至14个氨基酸)。有趣的是,还通过计算机分析法鉴定了约80个氨基酸的新的半胱氨酸特异性保守肽。计算机对接分析支持小Mlpt肽与转录因子Shavenbaby的结合。 Rp-mlpt原位杂交和通过RNA干扰的敲低显示Rp-mlpt在胚胎发生过程中的保守作用,在调节胸腔与腹部节段,腿部发育和头部形成中起主要作用。总之,我们的研究表明,mlpt片段的作用在副翅目的共同祖先中是保守的,并表明多顺反子基因可能产生有序的特定smORF。

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