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Expression analyses of digestive enzymes during early development and in adults of the chame fish Dormitator latifrons

机译:早期发育中消化酶的表达分析,在CHAME Fish Dormitator Latifrons中的成人

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This study describes the expression of genes that encode digestive enzymes (trypsin, pepsinogen, maltase-glucoamylase, sucrase-isomaltase, alkaline phosphatase and leucine aminopeptidase) using qRT-PCR in 0- to 7-day post-hatching (dph) chame (Dormitator latifrons). Additionally, adults liver and intestine were analysed for enzyme expression. Results showed that transcripts for all enzymes are present in both adult and larvae tissues. In adults, the expression of maltase-glucoamylase and sucrose-isomaltase showed the highest values in the middle intestine, while the liver and anterior and posterior intestine showed low expression levels. Other enzymes showed low expression in all tissues, with the exception of leucine aminopeptidase, which showed high expression in liver. In larvae whole-body samples of D. latifrons, maltase-glucoamylase and sucrose-isomaltase showed the highest expression from 3 to 5 dph, while other enzymes maintained low levels from hatching to 7 dph. The highest expression of disaccharidases such as maltase-glucoamylase and sucrose-isomaltase corresponded to the beginning of exogenous feeding, suggesting that this species exhibits an herbivorous profile. However, the presence of proteolytic enzymes may indicate that D. latifrons is programmed to be able to digest other substrates. This information will contribute to the development of larval feeding protocols to produce chame juveniles in laboratory conditions, as prior larval feeding essays have not been successful, using either live feeds or commercial fish larval diets.
机译:本研究描述了在0至7天的阴影后(DPH)Chame(Dormitator Latifrons)。此外,分析了成人肝脏和肠的酶表达。结果表明,所有酶的转录物都存在于成人和幼虫组织中。在成年人中,麦芽酶 - 葡糖淀粉酶和蔗糖 - 异氨酸酶的表达显示了中肠中的最高值,而肝脏和前肠和后肠显示出低表达水平。其他酶在所有组织中显示出低表达,除了亮氨酸氨基肽酶,其在肝脏中显示出高表达。在D. Latifrons的幼虫全体样品中,麦芽酶 - 葡糖淀粉酶和蔗糖 - 异氨酸酶显示出3至5pph的最高表达,而其他酶从阴影中保持低水平至7分钟。诸如丙二醇酶 - 葡糖淀粉酶和蔗糖 - 异氨酸酶等最高表达,其对应于外源饲养的开始,表明该物种表现出食草性曲线。然而,蛋白水解酶的存在可能表明D. Latifrons被编程为能够消化其他基板。该信息将有助于在实验室条件下产生幼虫喂养协议,以在实验室条件下产生烟囱幼虫,因为之前的幼虫喂养散文没有成功,使用现场饲料或商业鱼类幼虫饮食。

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