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首页> 外文期刊>The Journal of Experimental Biology >The Chinese soft-shelled turtle, Pelodiscus sinensis, decreases nitrogenous excretion, reduces urea synthesis and suppresses ammonia production during emersion
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The Chinese soft-shelled turtle, Pelodiscus sinensis, decreases nitrogenous excretion, reduces urea synthesis and suppresses ammonia production during emersion

机译:中国soft,中华绒螯蟹,减少了氮的排泄,减少了尿素的合成,并抑制了发芽过程中的氨产生

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The objective of this study was to examine the effects of 6 days of emersion on nitrogen metabolism and excretion in the Chinese soft-shelled turtle, Pelodiscus sinensis. Despite having a soft shell with a cutaneous surface that is known to be water permeable, P. sinensis lost only similar to 2% of body mass and was able to maintain its hematocrit and plasma osmolality, [Na+] and [Cl-] during 6 days of emersion. During emersion, it ameliorated water loss by reducing urine output, which led to a reduction (by 29-76%) in ammonia excretion. In comparison, there was a more prominent reduction (by 82-99%) in urea excretion during emersion due to a lack of water to flush the buccopharyngeal epithelium, which is known to be the major route of urea excretion. Consequently, emersion resulted in an apparent shift from ureotely to ammonotely in P. sinensis. Although urea concentration increased in several tissues, the excess urea accumulated could only account for 13-22% of the deficit in urea excretion. Hence, it can be concluded that a decrease (similar to 80%) in urea synthesis occurred in P. sinensis during the 6 days of emersion. Indeed, emersion led to significant decreases in the activity of some ornithine-urea cycle enzymes (argininosuccinate synthetase/argininosuccinate lyase and arginase) from the liver of P. sinensis. As a decrease in urea synthesis occurred without the accumulation of ammonia and total free amino acids, it can be deduced that ammonia production through amino acid catabolism was suppressed with a proportional reduction in proteolysis in P. sinensis during emersion. Indeed, calculated results revealed that there could be a prominent decrease (similar to 88%) in ammonia production in turtles after 6 days of emersion. In summary, despite being ureogenic and ureotelic in water, P. sinensis adopted a reduction in ammonia production, instead of increased urea synthesis, as the major strategy to ameliorate ammonia toxicity and problems associated with dehydration during terrestrial exposure.
机译:这项研究的目的是研究6天出苗对中华soft(Pelodiscus sinensis)氮代谢和排泄的影响。尽管有一个柔软的外壳,其皮肤表面可以透水,但中华假单胞菌仅损失了约2%的体重,并能够在6年内维持其血细胞比容和血浆渗透压,[Na +]和[Cl-]。出现的日子。在出苗期间,它通过减少尿量减少了水分流失,从而减少了氨排泄量(减少了29-76%)。相比之下,由于缺乏水冲洗颊咽上皮(已知是尿素排泄的主要途径),出苗期间尿素排泄的减少更为显着(减少82-99%)。因此,在P.sinensis中出现的分泌物导致从尿道的明显转移到弹药的转移。尽管在几个组织中尿素浓度增加,但是累积的过量尿素仅占尿素排泄缺陷的13-22%。因此,可以得出结论,在出土的6天中,中华假单胞菌尿素合成减少(大约80%)。确实,涌现导致来自中华假单胞菌肝脏的某些鸟氨酸-尿素循环酶(精氨酸琥珀酸合成酶/精氨酸琥珀酸裂合酶和精氨酸酶)的活性显着降低。由于尿素合成的减少没有氨和总游离氨基酸的积累而发生,因此可以推断出,在萌发期间,中华绒螯蟹的蛋白水解成比例减少,抑制了通过氨基酸分解代谢产生的氨。确实,计算结果表明,出没6天后,乌龟的氨气产量可能会显着下降(约88%)。总而言之,尽管中华绒螯蟹在水中具有尿素和尿素的作用,但它还是减少氨的产生而不是增加尿素的合成,以此作为改善氨毒性和陆生暴露过程中与脱水有关的问题的主要策略。

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