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Diet quality determines lipase gene expression and lipase/esterase activity in?Daphnia pulex

机译:饮食质量决定了蚤蚤的脂肪酶基因表达和脂肪酶/酯酶活性

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We studied the short- (12?h) and long-term (144?h) response of Daphnia pulex lipases to quality shifts in diets consisting of different mixtures of the green alga Scenedesmus with the cyanobacterium Synechococcus, two species with contrasting lipid compositions. The lipase/esterase activity in both the gut and the body tissues had fast responses to the diet shift and increased with higher dietary contributions of Synechococcus. When screening the Daphnia genome for TAG lipases, we discovered a large gene-family expansion of these enzymes. We used a subset of eight genes for mRNA expression analyses and distinguished between influences of time and diet on the observed gene expression patterns. We identified five diet-responsive lipases of which three showed a sophisticated short- and long-term pattern of expression in response to small changes in food-quality. Furthermore, the gene expression of one of the lipases was strongly correlated to lipase/esterase activity in the gut suggesting its potentially major role in digestion. These findings demonstrate that the lipid-related enzymatic machinery of D. pulex is finely tuned to diet and might constitute an important mechanism of physiological adaptation in nutritionally complex environments.
机译:我们研究了蚤(Daphnia pulex脂肪酶)对日粮质量变化的短期(12?h)和长期(144?h)响应,该日粮由绿藻Scendesmus和蓝藻Synechococcus的不同混合物组成,这两种脂质组成相反。肠道和身体组织中的脂肪酶/酯酶活性对饮食变化具有快速响应,并随着更高的Synechococcus饮食贡献而增加​​。在筛选Daphnia基因组中的TAG脂肪酶时,我们发现了这些酶的大型基因家族扩展。我们使用八个基因的子集进行mRNA表达分析,并区分时间和饮食对观察到的基因表达模式的影响。我们确定了五种饮食反应型脂肪酶,其中三种对食物质量的微小变化有反应,显示出复杂的短期和长期表达模式。此外,脂肪酶之一的基因表达与肠道中的脂肪酶/酯酶活性密切相关,表明其在消化中的潜在主要作用。这些发现表明,D。pulex的脂质相关的酶促机制已针对饮食进行了微调,并可能构成在营养复杂的环境中生理适应的重要机制。

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