Tribolium embryo morphogenesis: may the force be with you.

Bioarchitecture Pub Date : 2014-01-01 Epub Date: 2014-01-14 DOI:10.4161/bioa.27815
Matthew A Benton, Anastasios Pavlopoulos
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引用次数: 9

Abstract

Development of multicellular organisms depends on patterning and growth mechanisms encoded in the genome, but also on the physical properties and mechanical interactions of the constituent cells that interpret these genetic cues. This fundamental biological problem requires integrated studies at multiple levels of biological organization: from genes, to cell behaviors, to tissue morphogenesis. We have recently combined functional genetics with live imaging approaches in embryos of the insect Tribolium castaneum, in order to understand their remarkable transformation from a uniform single-layered blastoderm into a condensed multi-layered embryo covered by extensive extra-embryonic tissues. We first developed a quick and reliable methodology to fluorescently label various cell components in entire Tribolium embryos. Live imaging of labeled embryos at single cell resolution provided detailed descriptions of cell behaviors and tissue movements during normal embryogenesis. We then compared cell and tissue dynamics between wild-type and genetically perturbed embryos that exhibited altered relative proportions of constituent tissues. This systematic comparison led to a qualitative model of the molecular, cellular and tissue interactions that orchestrate the observed epithelial rearrangements. We expect this work to establish the Tribolium embryo as a powerful and attractive model system for biologists and biophysicists interested in the molecular, cellular and mechanical control of tissue morphogenesis.

摩擦胚形态发生:愿力与你同在。
多细胞生物的发育依赖于基因组编码的模式和生长机制,但也依赖于解释这些遗传线索的组成细胞的物理特性和机械相互作用。这个基本的生物学问题需要在生物组织的多个层面上进行综合研究:从基因到细胞行为,再到组织形态发生。最近,我们将功能遗传学与活体成像方法结合起来,研究了昆虫Tribolium castaneum的胚胎,以了解它们从均匀的单层囊胚到被广泛的胚外组织覆盖的浓缩多层胚胎的显著转变。我们首先开发了一种快速可靠的方法来荧光标记整个Tribolium胚胎中的各种细胞成分。在单细胞分辨率下标记胚胎的实时成像提供了正常胚胎发生过程中细胞行为和组织运动的详细描述。然后,我们比较了野生型和基因干扰胚胎的细胞和组织动力学,这些胚胎显示出组成组织的相对比例发生了变化。这种系统的比较导致了分子、细胞和组织相互作用的定性模型,这些相互作用协调了观察到的上皮重排。我们希望这项工作能够为对组织形态发生的分子、细胞和机械控制感兴趣的生物学家和生物物理学家建立一个强大而有吸引力的Tribolium胚胎模型系统。
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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