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热带刺龙虾Panulirus ornatus初孵第一期叶状幼体消化酶谱对食物供应不同情况的响应。

Responses of digestive enzyme profiles to various scenarios of food availability in newly-hatched Stage I phyllosoma larvae of the tropical spiny lobster Panulirus ornatus.

作者信息

Genodepa Jerome, Zeng Chaoshu, Militz Thane A, Southgate Paul C

机构信息

Centre for Sustainable Tropical Fisheries and Aquaculture (CSTFA) and College of Sciences and Engineering, James Cook University, Townsville, QLD 4811, Queensland, Australia.

Centre for Sustainable Tropical Fisheries and Aquaculture (CSTFA) and College of Sciences and Engineering, James Cook University, Townsville, QLD 4811, Queensland, Australia.

出版信息

Comp Biochem Physiol B Biochem Mol Biol. 2022 Aug-Sep;261:110751. doi: 10.1016/j.cbpb.2022.110751. Epub 2022 Apr 27.

Abstract

Stage I phyllosoma larvae of the spiny lobster Panulirus ornatus hatch in tropical oceanic waters with limited and variable food resources. To better understand how these larvae cope with food deprivation, this study examined specific (mU mg protein) and total (mU larva) activities of major digestive enzymes (i.e., α-amylase, non-specific esterase, trypsin-like protease) during a series of ex situ experiments. Specifically, temporal changes in enzyme profiles were examined in three experiments simulating scenarios in which phyllosoma hatch and begin development in an environment where (1) prey is either continuously present or absent; (2) prey is initially present, but subsequently absent; (3) prey is initially absent, but subsequently present. Results indicated that the accessibility of suitable prey provides an overarching influence on digestive enzyme activities and substrate utilisation in Stage I phyllosoma of P. ornatus, with enzymatic responses to both intermittent prey availability and food deprivation being influenced by their nutritional history. In the absence of prey, larval digestive enzyme activities (mU larva) initially remained static from hatch but eventually declined with extended food deprivation. When prey became available, enzyme activities increased, with delayed access to prey having minimal impact on this enzymatic response. Furthermore, phyllosoma were able to adjust α-amylase and non-specific esterase activities (within 8 h) in response to the disappearance of prey, demonstrating adaptive changes to endure periods of food deprivation that were based on their nutritional history. The ability of phyllosoma to regulate enzyme activities from hatch is an important physiological strategy allowing them to survive in an environment characterised by highly variable zooplankton biomass and abundance, and explains why diets that differ greatly in nutrient composition have consistently been found effective for rearing phyllosoma in captivity.

摘要

华丽岩龙虾的第一期叶状幼体在热带海洋水域孵化,那里的食物资源有限且多变。为了更好地了解这些幼体如何应对食物短缺,本研究在一系列异地实验中检测了主要消化酶(即α-淀粉酶、非特异性酯酶、类胰蛋白酶)的比活性(mU/mg蛋白质)和总活性(mU/幼体)。具体而言,在三个实验中检测了酶谱的时间变化,这些实验模拟了叶状幼体孵化并开始发育的环境,其中:(1)猎物持续存在或不存在;(2)猎物最初存在,但随后消失;(3)猎物最初不存在,但随后出现。结果表明,合适猎物的可获得性对华丽岩龙虾第一期叶状幼体的消化酶活性和底物利用具有总体影响,对间歇性猎物可获得性和食物短缺的酶促反应均受其营养史的影响。在没有猎物的情况下,幼体消化酶活性(mU/幼体)最初从孵化时起保持稳定,但最终随着食物短缺时间的延长而下降。当有猎物时,酶活性增加,延迟获取猎物对这种酶促反应影响最小。此外,叶状幼体能够根据猎物的消失调整α-淀粉酶和非特异性酯酶活性(在8小时内),表明基于其营养史的适应性变化以忍受食物短缺期。叶状幼体从孵化时起调节酶活性的能力是一种重要的生理策略,使它们能够在浮游动物生物量和丰度高度可变的环境中生存,并解释了为何营养成分差异很大的食物一直被发现对圈养叶状幼体的饲养有效。

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