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首页> 外文期刊>Fish Physiology and Biochemistry >Comparative digestive enzyme ontogeny in two marine larval fishes: Pacific threadfin (Polydactylus sexfilis) and bluefin trevally (Caranx melampygus)
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Comparative digestive enzyme ontogeny in two marine larval fishes: Pacific threadfin (Polydactylus sexfilis) and bluefin trevally (Caranx melampygus)

机译:两种海洋幼体鱼的消化酶个体发育比较:太平洋thread(Polydactylus sexfilis)和blue蓝鳍(Caranx melampygus)

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摘要

The specific activity of digestive enzymes; aspartic and serine protease, collagenase, lipase, acid and alkaline amylase, acid and alkaline phosphatase, and chitinase was assayed throughout early development in two species of marine fishes: the Pacific threadfin (Polydactylus sexfilis) and bluefin trevally (Caranx melampygus). Specific enzyme activities were determined on whole larval extracts sampled at selected stages of development, from day 0 to day 30 post-hatching. Similar developmental patterns of enzyme specific activity were observed in the two species, although differences in timing, amplitude and effects of first feeding were noted. Amylase activity increased prior to first feeding, peaking at the middle of the larval period, and becoming nearly undetectable by the time of larval-to-juvenile metamorphosis. Serine protease, collagenase, lipase and alkaline (and acid for threadfin) phosphatase activities increased gradually, followed by sharp increases to a plateau during the second half of larval development. Aspartic protease and chitinase activities, in addition to acid phosphatase (for trevally), were low to undetectable in the first half of development, increasing through metamorphosis. In the trevally only, this group of enzymes exhibited high activity levels at the time of hatching, followed by a precipitous drop. Species-dependent differences in enzyme specific activity at first feeding may have been a result of differences in yolk utilization. These results, taken in the context of earlier reports, lead us to conclude that carbohydrate utilization may play a significant role in the earlier phases of development among some marine larvae, followed by a shift to protein and lipid utilization.
机译:消化酶的比活性;天冬氨酸和丝氨酸蛋白酶,胶原酶,脂肪酶,酸和碱性淀粉酶,酸和碱性磷酸酶以及几丁质酶在两种海洋鱼类的整个早期发育过程中均进行了测定:太平洋thread(Polydactylus sexfilis)和blue蓝鳍(Caranx melampygus)。在孵化后第0天到第30天,在选定的发育阶段对整个幼虫提取物测定比酶活性。在两个物种中观察到了相似的酶比活性发育模式,尽管注意到了时间,幅度和首次进食效果的差异。淀粉酶的活性在第一次进食前就增加了,在幼虫期的中间达到峰值,到幼虫到幼稚的变态时几乎变得不可检测。丝氨酸蛋白酶,胶原酶,脂肪酶和碱性磷酸酶的活性逐渐增加,随后在幼虫发育的后半段急剧增加至高原。天冬氨酸蛋白酶和几丁质酶的活性,除了酸性磷酸酶(对于运输而言)外,在发育的前半阶段低至无法检测到,并通过变态而增加。仅在运输方面,这组酶在孵化时表现出高活性水平,随后急剧下降。第一次进食时酶比活的物种依赖性差异可能是蛋黄利用差异的结果。这些结果是在较早的报道中得出的,使我们得出结论,碳水化合物的利用可能在某些海洋幼虫的发育的早期阶段中起着重要作用,随后转向蛋白质和脂质的利用。

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