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A TALE of shrimps: Genome-wide survey of homeobox genes in 120 species from diverse crustacean taxa

机译:虾的故事:全基因组全基因组调查研究了来自不同甲壳类群的120个物种的同源异型框基因

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摘要

The homeodomain-containing proteins are an important group of transcription factors found in most eukaryotes including animals, plants and fungi. Homeobox genes are responsible for a wide range of critical developmental and physiological processes, ranging from embryonic development, innate immune homeostasis to whole-body regeneration. With continued fascination on this key class of proteins by developmental and evolutionary biologists, multiple efforts have thus far focused on the identification and characterization of homeobox orthologs from key model organisms in attempts to infer their evolutionary origin and how this underpins the evolution of complex body plans. Despite their importance, the genetic complement of homeobox genes has yet been described in one of the most valuable groups of animals representing economically important food crops. With crustacean aquaculture being a growing industry worldwide, it is clear that systematic and cross-species identification of crustacean homeobox orthologs is necessary in order to harness this genetic circuitry for the improvement of aquaculture sustainability. Using publicly available transcriptome data sets, we identified a total of 4183 putative homeobox genes from 120 crustacean species that include food crop species, such as lobsters, shrimps, crayfish and crabs. Additionally, we identified 717 homeobox orthologs from 6 other non-crustacean arthropods, which include the scorpion, deer tick, mosquitoes and centipede. This high confidence set of homeobox genes will now serve as a key resource to the broader community for future functional and comparative genomics studies.
机译:含同源结构域的蛋白质是在大多数真核生物(包括动物,植物和真菌)中发现的重要转录因子组。同源盒基因负责广泛的关键发育和生理过程,范围从胚胎发育,先天免疫稳态到全身再生。随着发展和进化生物学家对这种关键蛋白质的持续关注,迄今为止,多项努力集中在鉴定和表征关键模型生物的同源异型同源基因上,以试图推断其进化起源以及这如何支持复杂人体计划的进化。 。尽管它们具有重要意义,但同源异形盒基因的遗传互补作用尚未在代表经济上重要的粮食作物的最有价值的动物之一中得到描述。随着甲壳类水产养殖业在世界范围内的发展,很明显,有必要对甲壳类同源异型盒直系同源物进行系统和跨物种鉴定,以便利用这种遗传途径来改善水产养殖的可持续性。利用可公开获得的转录组数据集,我们从120种甲壳类中鉴定了4183个假定的同源盒基因,这些基因包括食用农作物,例如龙虾,虾,小龙虾和螃蟹。此外,我们从其他6种非甲壳类节肢动物中鉴定出717个同源异型直系同源物,其中包括蝎子,鹿tick,蚊子和cent。现在,这种高置信度的同源异型框基因集将成为更广泛的社区进行未来功能和比较基因组学研究的重要资源。

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