首页> 外文期刊>BMC Genomics >Sampling Daphnia's expressed genes: preservation, expansion and invention of crustacean genes with reference to insect genomes
【24h】

Sampling Daphnia's expressed genes: preservation, expansion and invention of crustacean genes with reference to insect genomes

机译:采样水蚤的表达基因:参照昆虫基因组对甲壳类基因的保存,扩展和发明

获取原文
           

摘要

Background Functional and comparative studies of insect genomes have shed light on the complement of genes, which in part, account for shared morphologies, developmental programs and life-histories. Contrasting the gene inventories of insects to those of the nematodes provides insight into the genomic changes responsible for their diversification. However, nematodes have weak relationships to insects, as each belongs to separate animal phyla. A better outgroup to distinguish lineage specific novelties would include other members of Arthropoda. For example, crustaceans are close allies to the insects (together forming Pancrustacea) and their fascinating aquatic lifestyle provides an important comparison for understanding the genetic basis of adaptations to life on land versus life in water. Results This study reports on the first characterization of cDNA libraries and sequences for the model crustacean Daphnia pulex. We analyzed 1,546 ESTs of which 1,414 represent approximately 787 nuclear genes, by measuring their sequence similarities with insect and nematode proteomes. The provisional annotation of genes is supported by expression data from microarray studies described in companion papers. Loci expected to be shared between crustaceans and insects because of their mutual biological features are identified, including genes for reproduction, regulation and cellular processes. We identify genes that are likely derived within Pancrustacea or lost within the nematodes. Moreover, lineage specific gene family expansions are identified, which suggest certain biological demands associated with their ecological setting. In particular, up to seven distinct ferritin loci are found in Daphnia compared to three in most insects. Finally, a substantial fraction of the sampled gene transcripts shares no sequence similarity with those from other arthropods. Genes functioning during development and reproduction are comparatively well conserved between crustaceans and insects. By contrast, genes that were responsive to environmental conditions (metal stress) and not sex-biased included the greatest proportion of genes with no matches to insect proteomes. Conclusion This study along with associated microarray experiments are the initial steps in a coordinated effort by the Daphnia Genomics Consortium to build the necessary genomic platform needed to discover genes that account for the phenotypic diversity within the genus and to gain new insights into crustacean biology. This effort will soon include the first crustacean genome sequence.
机译:背景技术昆虫基因组的功能和比较研究阐明了基因的互补性,这些互补性部分说明了共同的形态,发育程序和生活史。将昆虫的基因清单与线虫的基因清单进行对比,可以深入了解导致其多样化的基因组变化。但是,线虫与昆虫的关系较弱,因为每种线虫都属于单独的动物门。区分世系特定新奇事物的更好的外部群体包括节肢动物的其他成员。例如,甲壳类是昆虫的亲密盟友(一起形成潘氏甲壳类),其迷人的水生生活方式为理解适应陆地生物与水生物的遗传基础提供了重要的比较。结果本研究报道了甲壳类水蚤(Daphnia pulex)模型的cDNA文库和序列的首次表征。通过测量它们与昆虫和线虫蛋白质组的序列相似性,我们分析了1,546个EST,其中1,414个代表约787个核基因。基因的临时注释得到伴随论文中描述的微阵列研究表达数据的支持。鉴定了甲壳类和昆虫共有的基因座,因为它们具有共同的生物学特征,包括繁殖,调控和细胞过程的基因。我们确定可能在Pancrustacea内或在线虫中丢失的基因。而且,鉴定了谱系特异性基因家族的扩增,这暗示了与其生态环境相关的某些生物学需求。特别是,在水蚤中最多发现七个不同的铁蛋白基因座,而大多数昆虫中只有三个。最后,大部分采样基因转录本与其他节肢动物没有相似性。在甲壳类和昆虫之间,在发育和繁殖过程中起作用的基因相对保守。相比之下,对环境条件(金属胁迫)有反应且没有性别偏见的基因包括与昆虫蛋白质组不匹配的最大比例的基因。结论这项研究以及相关的微阵列实验是Daphnia Genomics Consortium共同努力的第一步,以建立必要的基因组平台,以发现基因来解释属内表型多样性,并获得对甲壳类生物学的新见解。这项工作很快将包括第一个甲壳动物基因组序列。

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