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首页> 外文期刊>Journal of Comparative Physiology B >Cell proliferation and apoptosis in the anterior intestine of an amphibious, euryhaline mudskipper (Periophthalmus modestus)
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Cell proliferation and apoptosis in the anterior intestine of an amphibious, euryhaline mudskipper (Periophthalmus modestus)

机译:两栖性鱼腥草(Periophthalmusmodestus)的前肠中的细胞增殖和凋亡

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In order to replace the diffusive loss of water to the surrounding environment, seawater (SW)-acclimated euryhaline fishes have gastrointestinal tracts with higher ion/water flux in concert with greater permeability, and contrast that to freshwater (FW)-acclimated fish. To understand the cellular basis for these differences, we examined cell proliferation and apoptosis in the anterior intestine of mudskipper transferred from one-third SW to FW or to SW for 1 and 7 days, and those kept out of water for 1 day. The intestinal apoptosis (indicated by DNA laddering) increased during seawater acclimation. TUNEL staining detected numerous apoptotic cells over the epithelium of SW-acclimated fish. Cell proliferation ([3H]thymidine incorporation) in the FW fish was greater than those in SW 7 days after transfer. Labeling with a Proliferating cell nuclear antigen (PCNA) antibody indicated that proliferating cells were greater in number and randomly distributed in the epithelium of FW fish, whereas in SW fish they were almost entirely in the troughs of the intestinal folds. There were no changes in cell turnover in fish kept out of water. During acclimation to different salinities, modification of the cell turnover and abundance may play an important role in regulating the permeability (and transport capacity) of the gastrointestinal tract of fish.
机译:为了弥补水向周围环境的扩散损失,适应海水(SW)的鱼腥草鱼的胃肠道离子/水通量更高,渗透性也更高,这与适应淡水(FW)的鱼形成对比。为了了解这些差异的细胞基础,我们检查了从三分之一SW转移到FW或转移到SW的泥sk船前肠中的细胞增殖和凋亡,分别持续了1天和7天,以及那些在水中保持了1天。在海水驯化过程中,肠道细胞凋亡(通过DNA梯形指示)增加。 TUNEL染色在SW适应鱼的上皮细胞上检测到许多凋亡细胞。转移后7天,FW鱼的细胞增殖([3 H]胸苷掺入)大于SW。用增殖细胞核抗原(PCNA)抗体标记表明,增殖细胞数量更多,并且随机分布在FW鱼的上皮中,而在SW鱼中,它们几乎完全位于肠道褶皱的谷中。没入水中的鱼的细胞更新没有变化。在适应不同盐度的过程中,细胞更新和丰度的改变可能在调节鱼胃肠道的通透性(和运输能力)中起重要作用。

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