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Natural cyclic degeneration by a sequence of programmed cell death modes in Semibalanus balanoides (Linnaeus, 1767) (Crustacea, Cirripedia Thoracica)

机译:自然序列的周期性退化,由一系列程序化的细胞死亡模式引起的(Semibalanus balanoides)(Linnaeus,1767)(甲壳纲,Cirripedia Thoracica)

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The male reproductive system of the barnacle Semibalanus balanoides (Linnaeus, 1767) is a perfect model system for investigating naturally occurring cyclic nonpathological degeneration and programmed cell death (PCD). Every year after copulation, thebarnacle degenerates its gonads, eggs, spermatids and penis initiated by severe environmental constraints. This is apparently a useful strategy for saving energy. By careful ultrastructural and immunohistochemical analysis of the male reproductive organs, we identified autophagic cell death in the penis and spermatids, both morphologically on ultrathin sections as well as histochemically for the first time on semithin tissue sections with the new antibody against microtubule-associ-ated protein 1 lightchain 3 (LC3). Apoptosis in the testis and vesicula seminalis was determined based on the morphological characters on the apoptosis-specific antibody against the apoptosis inducing factor (AIF), and on positive TUNEL (terminal in situ nick end labeling)nuclei. Secondary necrosis in late degrading stages occurred in all tissues investigated, based on morphological characters and weak TUNEL staining. Moreover, the ultrastructural screening showed transient forms of cell death in the ductus ejacula-toriusepithelium, the epidermis, and the longitudinal muscles of the penis. According to the immunohistochemical tests, the cyclic degeneration of the male reproductive system follows a sequence of programmed cell death modes from autophagic cell death via apoptosis to secondary necrosis.
机译:藤壶Semibalanus balanoides的雄性生殖系统(Linnaeus,1767)是研究自然发生的循环性非病理性变性和程序性细胞死亡(PCD)的理想模型系统。每年交配后,藤壶都会因严重的环境限制而使其性腺,卵,精子和阴茎退化。这显然是节省能源的有用策略。通过对雄性生殖器官进行仔细的超微结构和免疫组织化学分析,我们发现了在阴茎和精子中的自噬细胞死亡,无论是形态学上的超薄切片还是首次组织化学上的半薄组织切片上的新型抗微管相关抗体蛋白质1轻链3(LC3)。根据针对凋亡诱导因子(AIF)的凋亡特异性抗体和阳性TUNEL(末端原位缺口末端标记)核的形态特征,确定睾丸和精囊的凋亡。基于形态学特征和薄弱的TUNEL染色,在所有降解的组织中都发生了晚期降解继发性坏死。此外,超微结构筛查显示在射精导管,上皮和阴茎纵肌中细胞死亡的瞬时形式。根据免疫组织化学测试,雄性生殖系统的周期性变性遵循一系列程序性细胞死亡模式,从通过细胞凋亡的自噬细胞死亡到继发性坏死。

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