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Fish Physiol Biochem ; 41(1): 267-79, 2015 Feb.
Article in English | MEDLINE | ID: mdl-25547606

ABSTRACT

A study was performed in order to understand the development of digestive enzymes during initial ontogeny of Cichlasoma trimaculatum, for which the activity of acidic and alkaline proteases, lipases, amylases and phosphatases was determined by means of biochemical and electrophoretic analysis. Our results showed that the activity of alkaline proteases, trypsin and chymotrypsin is present from day 6 after hatching (dah) during exogenous feeding with Artemia nauplii. The activities of carboxypeptidase A and leucine aminopeptidase are present from the first days, increasing at 6 dah and reaching their maximum activity at 9 dah while acid protease activity started at 9 dah. Furthermore, the lipase activity is detected on 6 dah and keeps increasing and decreasing on 17 dah. Amylase activity is detected on 3 dah, presenting fluctuations until 45 dah, where it reaches its maximum activity. Acid and alkaline phosphatases are detected from 3 dah and reach a maximum activity between 13 and 19 dah. The SDS-PAGE electrophoresis revealed six types of bands in the alkaline proteases, with molecular weight between 113.4 and 20.4 kDa. First three bands appear on 6 dah, but it is until 11 dah when all isoforms appear. Based on these results, it is considered that this species completes its digestive enzymatic machinery from day 9 after hatching, therefore is recommended to perform the transition from live feed to inert feed at 15 dah.


Subject(s)
Aquaculture/methods , Cichlids/growth & development , Digestive System/enzymology , Gene Expression Regulation, Developmental/physiology , Gene Expression Regulation, Enzymologic/physiology , Age Factors , Amylases/metabolism , Animals , Carboxypeptidases A/metabolism , Chymotrypsin/metabolism , Cichlids/metabolism , Digestive System/growth & development , Electrophoresis, Polyacrylamide Gel , Leucyl Aminopeptidase/metabolism , Lipase/metabolism , Peptide Hydrolases/metabolism , Trypsin/metabolism
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