首页> 外文期刊>Development Growth and Differentiation >Programmed cell death of follicular epithelium during the late developmental stages of oogenesis in the fruit flies Bactrocera oleae and Ceratitis capitata (Diptera, Tephritidae) is mediated by autophagy
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Programmed cell death of follicular epithelium during the late developmental stages of oogenesis in the fruit flies Bactrocera oleae and Ceratitis capitata (Diptera, Tephritidae) is mediated by autophagy

机译:自噬介导了果蝇Bactrocera oleae和Ceratitis capitata(Diptera,Tephritidae)卵子卵子发育后期卵泡上皮的程序性细胞死亡。

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In the present study, we describe the features of programmed cell death of ovarian follicle cells, occurring during the late developmental stages of oogenesis in the olive fruit fly, Bactrocera oleae and the medfly, Ceratitis capitata. During stage 14, the follicle cells contain autophagic vacuoles, and they do not exhibit caspase activity in all parts of the egg chamber. Their nuclei are characterized by condensed chromatin, accompanied with high- but not low-molecular weight DNA fragmentation events exclusively detected in distinct cells of the anterior pole. These data argue for the presence of an autophagy-mediated cell death program in the ovarian follicle cell layer in both species. The above results are likely associated with the abundant phagocytosis observed at the entry of the lateral oviducts, where numerous cell bodies are massively engulfed by epithelial cells. We strongly believe that during the termination of the above Dipteran oogenesis, an efficient mechanism of absorption of the degenerated follicle cells is selectively activated, in order to prevent the blockage of the ovarioles and thus robustly support the physiological completion of the ovulation process.
机译:在本研究中,我们描述了在卵实蝇,小实蝇杆菌和地中海果蝇,成年角膜上皮的卵子发育的晚期阶段发生的卵巢卵泡细胞程序性细胞死亡的特征。在第14阶段中,卵泡细胞含有自噬泡,并且它们在卵腔的所有部分均不表现出caspase活性。它们的细胞核的特征是浓缩的染色质,伴随着高分子量而不是低分子量的DNA片段化事件,这些事件仅在前极的不同细胞中被检测到。这些数据表明在这两个物种的卵巢卵泡细胞层中都存在自噬介导的细胞死亡程序。上述结果可能与在输卵管外侧进入时观察到的大量吞噬作用有关,在输卵管中大量细胞体被上皮细胞大量吞噬。我们坚信,在上述Dipteran卵子形成的终止过程中,选择性激活了变性卵泡细胞吸收的有效机制,以防止卵泡的阻塞,从而有力地支持了排卵过程的生理完成。

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