首页> 外文期刊>ScientificWorldJournal >Production Response and Digestive Enzymatic Activity of the Pacific White ShrimpLitopenaeus vannamei(Boone, 1931) Intensively Pregrown in Microbial Heterotrophic and Autotrophic-Based Systems
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Production Response and Digestive Enzymatic Activity of the Pacific White ShrimpLitopenaeus vannamei(Boone, 1931) Intensively Pregrown in Microbial Heterotrophic and Autotrophic-Based Systems

机译:太平洋白色虾醛植物的生产响应和消化酶活性,vannamei(Boone,1931)强烈地养生微生物异养和自养的系统

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Shrimp postlarvae were reared into different microcosm systems without water exchange; a traditional system based on simple fertilization to improve microalgae concentration (control), an autotrophic system (AS) based on the promotion of biofloc and biofilm by the addition of fertilizer and artificial substrates and a heterotrophic system (HS) based on the promotion of heterotrophic bacteria by the addition of nitrogenous and carbonaceous sources and artificial substrates. Better growth performance and survival were registered in shrimp from the AS and HS compared to the control. Feed conversion ratios were below 0.7 for all treatments, but AS and HS were significantly lower than the control. Regarding digestive performance, no significant differences were observed for trypsin, amylase and lipase activities among AS and control shrimp; however, shrimp from HS showed a higher trypsin and amylase activities, suggesting a higher digestive activity caused by the presence of microbial bioflocs. The presence of biofilm and bioflocs composed by either autotrophic or heterotrophic organisms in combination with formulated feed improved the growth performance and survival of shrimp. Apparently, such combination fits the nutritional requirements of shrimp.
机译:虾Postlarvae被饲养成不同的微观系统,没有水交换;一种基于简单施肥的传统系统,以改善微藻浓度(对照),基于促进杂养的肥料和人工基质和异养系统(HS)促进生物氟化和生物膜的自养系统(AS)通过加入含氮和碳质源和人造基材的细菌。与控制相比,从AS和HS的虾中注册了更好的增长性能和生存。所有治疗的饲料转化比率低于0.7,但由于HS显着低于对照。关于消化性能,胰蛋白酶,淀粉酶和脂肪酶活性没有显着差异和对照虾的脂肪酶活性;然而,来自HS的虾显示出更高的胰蛋白酶和淀粉酶活性,表明由微生物生物遗传物的存在引起的更高的消化活性。由自营养或异养生物组合的生物膜和生物氟雌性与配制饲料组成的生物膜的存在改善了虾的生长性能和存活。显然,这种联合符合虾的营养要求。

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