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生化指标与绿海龟幼龟(蠵龟)近期生长的相关性。

Biochemical indices as correlates of recent growth in juvenile green turtles (Chelonia mydas).

作者信息

Roark Alison M, Bjorndal Karen A, Bolten Alan B, Leeuwenburgh Christiaan

机构信息

Archie Carr Center for Sea Turtle Research, Department of Zoology, University of Florida, Box, 118525, Gainesville, FL 32611, USA.

出版信息

J Exp Mar Biol Ecol. 2009 Aug 15;376(2):59-67. doi: 10.1016/j.jembe.2009.06.004.

Abstract

Nucleic acid and protein concentrations and their ratios are increasingly used as correlates of nutritional condition and growth in marine species. However, their application in studies of reptile growth has not yet been validated. The green turtle (Chelonia mydas) is an endangered marine reptile for which assessing population health requires knowledge of demographic parameters such as individual growth rates. The purpose of this study was to evaluate a number of biochemical indices ([DNA], [RNA], RNA:DNA ratio, [protein], protein:DNA ratio, and RNA:protein ratio) in liver, heart, and blood as potential predictors of recent growth rate in juvenile green turtles under controlled feeding conditions. Intake of juvenile green turtles was manipulated over twelve weeks to obtain a range of growth rates. With the exception of RNA, DNA, and [protein]:DNA, all biochemical indices demonstrated significant linear relationships with growth rate during the last 1.5 weeks of the study. The best single predictors of recent growth were hepatic [RNA] and [RNA]:[protein], which explained 66% and 49%, respectively, of the variance in growth. Contrary to expectations, these two indices were negatively correlated with growth rate. To investigate the possibility that hepatic [RNA] was higher in slow-growing turtles because of elevated expression of antioxidant genes, we quantified glutathione peroxidase activity and total antioxidant potential. Both measures of antioxidant function were affected by intake and growth histories, but these effects did not explain our results for hepatic RNA and protein concentrations. We developed a model that predicted 68% of the variance in specific growth rate (SGR) with the equation SGR = -0.913(lnRNA) + 17.689(Condition Index) + 4.316. In addition, our findings that [DNA] and [RNA]:[DNA] for blood were significantly correlated with SGR demonstrate the potential utility of minimally invasive tissue sampling that could facilitate instantaneous population monitoring.

摘要

核酸和蛋白质浓度及其比率越来越多地被用作海洋物种营养状况和生长的相关指标。然而,它们在爬行动物生长研究中的应用尚未得到验证。绿海龟(蠵龟)是一种濒危海洋爬行动物,评估其种群健康状况需要了解个体生长率等人口统计学参数。本研究的目的是评估肝脏、心脏和血液中的一些生化指标([DNA]、[RNA]、RNA:DNA比率、[蛋白质]、蛋白质:DNA比率和RNA:蛋白质比率),作为在受控喂养条件下幼年绿海龟近期生长率的潜在预测指标。在十二周内控制幼年绿海龟的摄入量,以获得一系列生长率。除了[RNA](血液)、[DNA](心脏)和[蛋白质]:[DNA](肝脏)外,所有生化指标在研究的最后1.5周内均与生长率呈现显著的线性关系。近期生长的最佳单一预测指标是肝脏[RNA]和[RNA]:[蛋白质],它们分别解释了生长变异的66%和49%。与预期相反,这两个指标与生长率呈负相关。为了研究生长缓慢的海龟肝脏[RNA]较高是否是由于抗氧化基因表达升高,我们对谷胱甘肽过氧化物酶活性和总抗氧化能力进行了量化。抗氧化功能的这两项指标均受摄入量和生长历史的影响,但这些影响并不能解释我们关于肝脏RNA和蛋白质浓度的结果。我们开发了一个模型,通过SGR = -0.913(lnRNA) + 17.689(状况指数)+ 4.316这个方程预测了特定生长率(SGR)变异的68%。此外,我们发现血液中的[DNA]和[RNA]:[DNA]与SGR显著相关,这表明微创组织采样在促进即时种群监测方面具有潜在用途。

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