首页> 外文期刊>Developmental and Comparative Immunology: Ontogeny, Phylogeny, Aging: The Official Journal of the International Society of Developmental and Comparative Immunology >Recurrent phagocytosis-induced apoptosis in the cyclical generation change of the compound ascidian Botryllus schlosseri
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Recurrent phagocytosis-induced apoptosis in the cyclical generation change of the compound ascidian Botryllus schlosseri

机译:复方吞噬波氏梭菌的周期性世代变化中的吞噬作用诱导的细胞凋亡

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摘要

Colonies of the marine, filter-feeding ascidian Botryllus schlosseri undergo cyclical generation changes or takeovers. These events are characterised by the progressive resorption of adult zooids and their replacement by their buds that grow to adult size, open their siphons and start filtering. During the takeover, tissues of adult zooids undergo extensive apoptosis; circulating, spreading phagocytes enter the effete tissues, ingest dying cells acquiring a giant size and a round morphology. Then, phagocytes re-enter the circulation where they represent a considerable fraction (more than 20%) of circulating haemocytes. In this study, we evidence that most of these circulating phagocytes show morphological and biochemical signs of apoptosis. Accordingly, these phagocytes express transcripts of orthologues of the apoptosis-related genes Bax, AIF1 and PARP1. Electron microscopy shows that giant phagocytes contain apoptotic phagocytes inside their own phagocytic vacuole. The transcript of the orthologues of the antiapoptotic gene IAP7 was detected only in spreading phagocytes, mostly abundant in phases far from the take-over. Therefore, the presented data suggest that, at take-over, phagocytes undergo phagocytosis-induced apoptosis (PIA). In mammals, PIA is assumed to be a process assuring the killing and the complete elimination of microbes, by promoting the disposal of terminally differentiated phagocytes and the resolution of infection. In B. schlosseri, PIA assumes a so far undescribed role, being required for the control of asexual development and colony homeostasis. (C) 2016 Elsevier Ltd. All rights reserved.
机译:海洋中以滤食为食的海生灰霉菌的菌落经历了周期性的世代变化或接管。这些事件的特征是成年动物的逐渐吸收,并被成长为成年大小,打开虹吸管并开始过滤的芽代替。在接管过程中,成虫类动物的组织会发生广泛的细胞凋亡。循环中扩散的吞噬细胞进入咖啡因组织,吞噬垂死的细胞,形成巨大的大小和圆形形态。然后,吞噬细胞重新进入循环,在那里它们代表了循环血细胞的相当一部分(超过20%)。在这项研究中,我们证明这些循环吞噬细胞大多数显示出凋亡的形态和生化迹象。因此,这些吞噬细胞表达凋亡相关基因Bax,AIF1和PARP1的直向同源物的转录物。电子显微镜显示巨噬细胞在其自身的吞噬液泡内含有凋亡吞噬细胞。仅在传播的吞噬细胞中检测到了抗凋亡基因IAP7的直向同源物的转录本,大部分吞噬细胞都处于远离接管的阶段。因此,提出的数据表明,吞噬细胞在吞噬时会发生吞噬作用诱导的细胞凋亡(PIA)。在哺乳动物中,PIA被认为是通过促进最终分化的吞噬细胞的处置和感染的消灭来确保杀死微生物和完全消除微生物的过程。在B. schlosseri中,PIA发挥了迄今未描述的作用,是控制无性发育和菌落体内平衡所必需的。 (C)2016 Elsevier Ltd.保留所有权利。

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