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Can backcalculation models unravel complex larval growth histories in a tropical freshwater fish?.

机译:反算模型可以揭示热带淡水鱼复杂的幼体生长历史吗?

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This experimental study compared the precision and accuracy of the biological intercept (BI), modified fry (MF) and time-varying growth (TVG) backcalculation models in estimating the early growth of the tropical freshwater purple-spotted gudgeon Mogurnda adspersa. Larvae were reared up to 41days post hatching under two temperatures and four different feeding regimes. Food and temperature treatments induced complex growth profiles among fish, and although total length (LT ) and otolith radius were related under all conditions, some uncoupling was evident in the otolith-somatic-growth (OSG) relationship of fish subjected to periods of changing food availability. Furthermore, otolith growth was found to be significantly influenced by temperature, but not by food availability. Analysis of backcalculation residuals by linear mixed effects modelling revealed that BI and TVG were equally precise in predicting somatic growth, with the highest accuracy provided by TVG. The performance of all the three models declined as the OSG relationship weakened under low-food conditions, with maximum errors estimated to be 39, 60 and 36% of observed LT for the BI, MF and TVG models, respectively. The need for careful validation of backcalculation models is emphasized when examining fishes subjected to variable environmental conditions, and when exploring the differential influence of temperature and food on fish LT and otolith growth. 2013 The Authors. Journal of Fish Biology 2013 The Fisheries Society of the British Isles.
机译:这项实验研究比较了生物截获(BI),改良鱼苗(MF)和时变生长(TVG)反算模型在估算热带淡水紫色斑点g鱼Mogurnda adspersa的早期生长中的准确性和准确性。孵化后在两种温度和四种不同的饲养方式下将幼虫饲养至41天。食物和温度处理导致鱼之间复杂的生长状况,尽管总长度(LT)和耳石半径在所有条件下都相关,但是在经历食物变化时期的鱼的耳石-体细胞生长(OSG)关系中存在一些解耦现象可用性。此外,发现耳石的生长受到温度的显着影响,但不受食物供应量的影响。通过线性混合效应模型对反算残差的分析表明,BI和TVG在预测体细胞生长方面同样精确,而TVG提供的准确性最高。由于在低食物条件下OSG关系减弱,所有三个模型的性能均下降,对于BI,MF和TVG模型,最大误差估计分别为观察到的LT的39%,60%和36%。在检查遭受变化的环境条件的鱼类时,以及在探索温度和食物对鱼类LT和耳石生长的不同影响时,强调需要仔细验证反演模型。 2013作者。 《鱼类生物学杂志》,2013年,不列颠群岛渔业协会。

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