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果蝇 Hox 和性别决定基因通过 EGFR 和外 Macrochetae 活性控制节段消除。

Drosophila Hox and sex-determination genes control segment elimination through EGFR and extramacrochetae activity.

机构信息

Centro de Biología Molecular Severo Ochoa (C.S.I.C.-U.A.M.), Universidad Autónoma de Madrid, Cantoblanco, Madrid, Spain.

出版信息

PLoS Genet. 2012;8(8):e1002874. doi: 10.1371/journal.pgen.1002874. Epub 2012 Aug 9.

Abstract

The formation or suppression of particular structures is a major change occurring in development and evolution. One example of such change is the absence of the seventh abdominal segment (A7) in Drosophila males. We show here that there is a down-regulation of EGFR activity and fewer histoblasts in the male A7 in early pupae. If this activity is elevated, cell number increases and a small segment develops in the adult. At later pupal stages, the remaining precursors of the A7 are extruded under the epithelium. This extrusion requires the up-regulation of the HLH protein Extramacrochetae and correlates with high levels of spaghetti-squash, the gene encoding the regulatory light chain of the non-muscle myosin II. The Hox gene Abdominal-B controls both the down-regulation of spitz, a ligand of the EGFR pathway, and the up-regulation of extramacrochetae, and also regulates the transcription of the sex-determining gene doublesex. The male Doublesex protein, in turn, controls extramacrochetae and spaghetti-squash expression. In females, the EGFR pathway is also down-regulated in the A7 but extramacrochetae and spaghetti-squash are not up-regulated and extrusion of precursor cells is almost absent. Our results show the complex orchestration of cellular and genetic events that lead to this important sexually dimorphic character change.

摘要

特定结构的形成或抑制是发育和进化中发生的主要变化。这种变化的一个例子是果蝇雄性中第七个腹节(A7)的缺失。我们在这里表明,在早期蛹中,雄性 A7 中的 EGFR 活性降低,组织母细胞较少。如果这种活性升高,细胞数量增加,成年时会发育出一个小的节段。在后期蛹期,A7 的剩余前体细胞在表皮下被挤出。这种挤出需要 HLH 蛋白 Extramacrochetae 的上调,并且与高 spaghetti-squash 水平相关,spaghetti-squash 是编码非肌肉肌球蛋白 II 调节轻链的基因。Hox 基因 Abdominal-B 既控制 EGFR 途径配体 spitz 的下调,也控制 extramacrochetae 的上调,还调节性别决定基因 doublesex 的转录。雄性 Doublesex 蛋白反过来又控制 extramacrochetae 和 spaghetti-squash 的表达。在雌性中,A7 中的 EGFR 途径也被下调,但 extramacrochetae 和 spaghetti-squash 没有上调,前体细胞的挤出几乎不存在。我们的结果显示了导致这种重要性别二态性特征变化的细胞和遗传事件的复杂协调。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/32d6/3415437/54e148c1cd14/pgen.1002874.g001.jpg

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