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奶鱼仔鱼早期发育过程中消化酶活力的变化。

Changes in digestive enzyme activities during the early ontogeny of milkfish, Chanos chanos larvae.

机构信息

TNJFU-Institute of Fisheries Post Graduate Studies (IFPGS), OMR Campus, Vaniyanchavadi, Chennai, 603103, India.

ICAR-Central Institute of Brackishwater Aquaculture, 75-Santhome High Road, MRC Nagar, RA Puram, Chennai, Tamil Nadu, 600028, India.

出版信息

Fish Physiol Biochem. 2023 Oct;49(5):867-882. doi: 10.1007/s10695-023-01225-1. Epub 2023 Aug 2.

Abstract

Knowledge of the developmental ontogeny of the digestive system and nutritional requirements of marine fish larvae is a primary requisite for their successful rearing under an optimal feeding regime. In this context, we assessed the activity profile of key digestive enzymes viz., trypsin, chymotrypsin, leucine aminopeptidase, lipase, amylase, and alkaline phosphatase during the early ontogeny of milkfish, Chanos chanos (0 day, 3 days, 6 days, 9 days, 12 days, 15 days, 18 days, 21 days, 25 days, and 30 days post-hatch). Larvae for this study were obtained from the successful breeding of milkfish at ICAR-Central Institute of Brackishwater Aquaculture, India. Growth curves (length and weight) of the larvae indicated a positive morphological development under a standardized feeding regime that comprised Chlorella salina, Brachionus plicatilis, Artemia salina nauplii, and commercial weaning feed for different larval stages. With respect to protein digestion, the specific activity of pancreatic enzymes trypsin and chymotrypsin and intestinal brush border leucine aminopeptidase showed two peaks at 3 dph and 15 dph, following the introduction of rotifer and Artemia nauplii. Similar bimodal peaks were observed for alkaline phosphatase and amylase activities, with the first peak at 3 dph and the second peak at 18 dph and 21 dph, respectively. Whereas in the case of lipase, high activity levels were observed at 0 dph, 3 dph, and 18 dph, with subsequent decreases and fluctuations. Overall, as most of the enzymes were found to have peak activities at 15 to 21 dph, this period can be potentially considered as the developmental window for weaning larvae from live to formulated feeds in milkfish hatcheries.

摘要

了解消化器官的发育发生和海洋鱼类幼体的营养需求是在最佳饲养制度下成功饲养它们的首要条件。在这种情况下,我们评估了关键消化酶(如胰蛋白酶、糜蛋白酶、亮氨酸氨肽酶、脂肪酶、淀粉酶和碱性磷酸酶)在奶鱼(Chanos chanos)早期发生期间的活性特征,0 天、3 天、6 天、9 天、12 天、15 天、18 天、21 天、25 天和 30 天孵化后。这项研究的幼虫是从印度中央盐碱水水产养殖研究所成功繁殖的奶鱼中获得的。幼虫的生长曲线(长度和重量)表明,在包括盐藻、褶皱臂尾轮虫、卤虫无节幼体和不同幼体阶段的商业断奶饲料的标准化喂养制度下,形态发育良好。就蛋白质消化而言,胰腺酶胰蛋白酶和糜蛋白酶以及肠刷状缘亮氨酸氨肽酶的比活显示出两个高峰,分别在 3 dph 和 15 dph,这是在引入轮虫和卤虫无节幼体之后。碱性磷酸酶和淀粉酶活性也观察到类似的双峰,第一个高峰在 3 dph,第二个高峰分别在 18 dph 和 21 dph。而在脂肪酶的情况下,高活性水平在 0 dph、3 dph 和 18 dph 时观察到,随后活性降低和波动。总体而言,由于大多数酶在 15 至 21 dph 时具有峰值活性,因此该时期可被认为是在奶鱼孵化场将幼鱼从活饲料过渡到配方饲料的发育窗口。

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