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A novel pattern of germ cell divisions in the production of hymenopteran insect eggs

机译:Hymenopteran昆虫鸡蛋生产中的一种新型生殖细胞分裂模式

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摘要

Egg development is a defining process of reproduction in higher eukaryotes. In the fruit fly, Drosophila melanogaster, this process begins with four mitotic divisions starting from a single germ cell, producing a cyst of 16 cystocytes; one of these cells will become the oocyte and the others supporting nurse cells. These mitotic divisions are exceptional because cytokinesis is incomplete, resulting in the formation of cytoplasmic bridges known as ring canals that interconnect the cystocytes. This organization allows all cystocytes to divide synchronously during each mitotic round, resulting in a final, power-of-2 number of germ cells. Given that numerous insects obey this power-of-2 rule, we investigated if strict cell doubling is a universal, underlying cause. Using confocal microscopy, we found striking departures from this paradigm in three different power-of-2 insects belonging to the Apocrita suborder (ants, bees and wasps). In these insects, the earliest-formed cystocytes cease to divide during the latter mitotic cycles while their descendants undergo further division, thereby producing a ‘radial’ direction of division activity. Such cystocyte division patterns that depart from strict cell doubling may be ‘fine-tuned’ in order to maintain a final, power-of-2 germ cell number.
机译:鸡蛋发育是在高等真核生物中繁殖的定义过程。在果蝇果蝇中,这种过程从单一生殖细胞开始,从单个生殖细胞开始,产生16个膀胱细胞的囊肿;其中一种细胞将成为卵母细胞和其他支持护士细胞的卵母细胞。这些有丝分裂差异是特殊的,因为细胞因子是不完整的,导致称为互连椎骨细胞的环状桥的细胞质桥的形成。该组织允许所有半胱友在每个有丝分裂循环期间同步分割,导致最终的功率-2毒性细胞。鉴于许多昆虫服从这种强大的统治,如果严格的细胞加倍是一种普遍的,潜在的原因。使用共聚焦显微镜,我们发现在属于Apocrita亚达(蚂蚁,蜜蜂和黄蜂)的三种不同的2个昆虫中,从这个范式中发现了突出的偏移。在这些昆虫中,最早形成的膀胱细胞停止在后一种有丝分裂循环期间除去,而其后代经历进一步分裂,从而产生“径向”的分裂活动方向。脱离严格细胞加倍的这种膀胱细胞分裂模式可能是“微调”,以保持最终的2个胚芽细胞数。

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