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Early blastomere determines embryo proliferation and caste fate in a polyembryonic wasp

机译:早期的卵裂球决定着胚胎的繁殖和多胚黄蜂的种姓命运

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Polyembryonic development is a unique mode of metazoan development in which a single zygote generates multiple embryos by clonal proliferation(1). The polyembryonic parasitic insect Copidosoma floridanum shows one of the most extreme cases of polyembryony, producing up to 2,000 embryos from a single egg. In addition, this wasp exhibits an unusual polyphenism, producing two morphologically distinct larval castes, termed precocious and reproductive, that develop clonally from the same zygote(2). This form of development seems incompatible with a model of insect development in which maternal prepatterning of the egg specifies embryonic axial polarity(3). Here we show that maternal pre-patterning in the form of germ plasm creates cellular asymmetry at the four-cell stage embryo of Copidosoma that is perpetuated throughout development. Laser ablations of cells show that the cell inheriting the germ plasm regulates both the fate and proliferation of the reproductive caste. Thus, we have uncovered a new mechanism of caste specification, mediated by the regulatory capacity of a single cell. This study shows that the evolution of mammalian-like regulative development of an insect embryo relies on a novel cellular context that might ultimately enhance developmental plasticity.
机译:多胚发育是一种后生动物发育的独特模式,其中单个合子通过克隆增殖产生多个胚胎(1)。多胚寄生昆虫佛罗里达蛇蝎(Copidosoma floridanum)显示出多胚最极端的情况之一,一个卵可产生多达2,000个胚胎。此外,该黄蜂表现出不同寻常的多态性,产生了两个形态不同的幼虫,称为早熟和生殖,由同一受精卵克隆形成(2)。这种发育形式似乎与昆虫发育模型不兼容,在昆虫发育模型中,鸡蛋的母体预花序指定了胚胎的轴向极性(3)。在这里,我们表明母体以种质的形式预先构图会在螺旋藻的四细胞阶段胚胎中形成细胞不对称,这种胚胎在整个发育过程中都将持续下去。细胞的激光消融表明,继承种质的细胞既调节生殖种姓的命运,又调节其繁殖。因此,我们发现了由种单细胞的调节能力介导的种姓规范的新机制。这项研究表明,昆虫胚胎的哺乳动物样调节性发育的进化依赖于可能最终增强发育可塑性的新型细胞环境。

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