在果蝇物种的进化过程中,bmp靶基因的巢状胚胎背域没有按比例调整大小

IF 1.8 3区 生物学 Q3 DEVELOPMENTAL BIOLOGY Journal of experimental zoology. Part B, Molecular and developmental evolution Pub Date : 2022-04-22 DOI:10.1002/jez.b.23137
Juan Sebastian Chahda, Priscilla Ambrosi, Claudia M. Mizutani
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引用次数: 0

摘要

卵的大小是果蝇中一个快速进化的特征,有望改变胚胎轴形态形成因子的空间分布。在这里,我们研究了胚胎背侧区域由DPP/BMP-4 (decapentapaplegic /Bone Morphogenetic Protein-4, DPP/BMP-4)梯度形成的图案是否在不同卵大小的果蝇物种中被缩放。这个区域指定胚胎外组织羊膜和外胚层。我们发现整个背区随胚胎大小而缩放,但DPP调控的基因表达模式不成比例,表明DPP梯度在进化过程中是差异缩放的。为了进一步测试DPP梯度是否可以在黑腹果蝇中扩展,我们创造了具有扩展背区的胚胎,模仿其他物种中看到的规模变化,并测量了DPP靶基因的最终结构域。我们发现这些结构域的比例没有得到维持,这表明DPP梯度在胚胎中无法缩放。这些和先前的研究结果表明,胚胎背-腹侧模式在腹侧和背侧缺乏缩放,但在神经外胚层指定的外侧区域和两个相反的梯度,dorsal /NFkappa-B和DPP相交的区域是强大的。我们认为,DPP梯度的缺乏可能导致羊膜大小和具有特定皮质张力的外胚层细胞数量的变化,这可能会对不同大小的原肠胚产生不同的机械力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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The nested embryonic dorsal domains of BMP-target genes are not scaled to size during the evolution of Drosophila species

Egg size is a fast-evolving trait among Drosophilids expected to change the spatial distribution of morphogens that pattern the embryonic axes. Here we asked whether the patterning of the dorsal region of the embryo by the Decapentaplegic/Bone Morphogenetic Protein-4 (DPP/BMP-4) gradient is scaled among Drosophila species with different egg sizes. This region specifies the extra-embryonic tissue amnioserosa and the ectoderm. We find that the entire dorsal region scales with embryo size, but the gene expression patterns regulated by DPP are not proportional, suggesting that the DPP gradient is differentially scaled during evolution. To further test whether the DPP gradient can scale or not in Drosophila melanogaster, we created embryos with expanded dorsal regions that mimic changes in scale seen in other species and measured the resulting domains of DPP-target genes. We find that the proportions of these domains are not maintained, suggesting that the DPP gradient is unable to scale in the embryo. These and previous findings suggest that the embryonic dorso-ventral patterning lack scaling in the ventral and dorsal sides but is robust in the lateral region where the neuroectoderm is specified and two opposing gradients, Dorsal/NFkappa-B and DPP, intersect. We propose that the lack of scaling of the DPP gradient may contribute to changes in the size of the amnioserosa and the numbers of ectodermal cells with specific cortical tensions, which are expected to generate distinct mechanical forces for gastrulating embryos of different sizes.

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来源期刊
CiteScore
4.80
自引率
9.10%
发文量
63
审稿时长
6-12 weeks
期刊介绍: Developmental Evolution is a branch of evolutionary biology that integrates evidence and concepts from developmental biology, phylogenetics, comparative morphology, evolutionary genetics and increasingly also genomics, systems biology as well as synthetic biology to gain an understanding of the structure and evolution of organisms. The Journal of Experimental Zoology -B: Molecular and Developmental Evolution provides a forum where these fields are invited to bring together their insights to further a synthetic understanding of evolution from the molecular through the organismic level. Contributions from all these branches of science are welcome to JEZB. We particularly encourage submissions that apply the tools of genomics, as well as systems and synthetic biology to developmental evolution. At this time the impact of these emerging fields on developmental evolution has not been explored to its fullest extent and for this reason we are eager to foster the relationship of systems and synthetic biology with devo evo.
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Issue Information Close to complete conservation of the brachyceran opsin repertoire in the stalk-eyed fly Teleopsis dalmanni Issue Information Embryonic pattern of cartilaginous head development in the European toad, Bufo bufo Issue Information
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