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探索淡水甲壳类动物胚胎模型中的Hox基因及其时间表达。

Exploring Hox Genes and Their Temporal Expression in an Embryonic Model of Freshwater Crustaceans.

作者信息

Jaramillo Michael L, Melo Madson S, Müller Yara M R, Ammar Dib, Nazari Evelise M

机构信息

Departamento de Biologia Celular, Embriologia e Genética, Centro de Ciências Biológicas, Universidade Federal de Santa Catarina, Florianópolis, SC, Brazil.

出版信息

Methods Mol Biol. 2025;2889:67-89. doi: 10.1007/978-1-0716-4322-8_6.

Abstract

Hox genes have been investigated in various Arthropod species, resulting in the identification of ten Hox genes, organized in a colinear arrangement within the genome. Among arthropods, crustaceans exhibit a remarkable diversity of body shapes, which are associated with a variety of egg types, embryonic development patterns, and importantly, with the modulation of Hox genes to specify the identity of body segments along the antero-posterior axis of the embryo. Although there are more than 52,000 species of crustaceans described, their genomic resources are relatively limited, making it challenging to employ several molecular tools for studying embryonic development. In this regard, we present a protocol for identifying Hox genes in a freshwater prawn using degenerate primers and transcriptome analysis. This method enables the study of specific functions of Hox genes, thereby contributing to the evolutionary understanding of the diversity of body shapes in crustaceans.

摘要

已在多种节肢动物物种中对Hox基因进行了研究,结果鉴定出了10个Hox基因,它们在基因组中呈共线性排列。在节肢动物中,甲壳类动物展现出显著的体型多样性,这与多种卵类型、胚胎发育模式相关,重要的是,与Hox基因的调控有关,以确定沿胚胎前后轴的体节特征。尽管已描述的甲壳类动物有52000多种,但其基因组资源相对有限,这使得使用多种分子工具研究胚胎发育具有挑战性。在这方面,我们提出了一种使用简并引物和转录组分析在淡水虾中鉴定Hox基因的方案。这种方法能够研究Hox基因的特定功能,从而有助于从进化角度理解甲壳类动物体型的多样性。

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