首页> 外文期刊>Australian Journal of Ecology >Bigger? Fatter? Or is faster growth better? Considerations on condition in larval and juvenile coral-reef fish.
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Bigger? Fatter? Or is faster growth better? Considerations on condition in larval and juvenile coral-reef fish.

机译:大?连连看?还是更快的增长更好?关于幼体和幼小的珊瑚礁鱼状况的考虑。

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摘要

Analyses of condition data are conspicuous by their paucity in the extensive tropical reef-fish literature. Researchers typically quantify abundance at settlement, with little regard for the demonstrably variable quality of newly settled fishes. Condition may be functionally classified by indices of growth (e.g. the RNA-DNA index or peripheral growth increments of the otolith), starvation (e.g. height of midgut mucosal cells), storage (e.g. lipid content), or morphometry (e.g. dry weight/length3),all of which are variably correlated with each other. At present all indices are species-, stage-, technique- and therefore often investigation-specific, as laboratory-reared larvae for calibrating field-collected condition indices are often specific tothe rearing procedure. RNA indices are particularly appropriate for estimating larval condition. In pelagic juveniles, or in recently settled juveniles, the width of peripheral growth increments of the otolith estimates average growth rate in length or dry weight during the previous few days, which discerns increasing from decreasing condition. Increment width changes in otoliths are particularly responsive to starvation events, and are correlated with RNA indices. Growth indices have great potential for determining which individuals were growing faster, thereby reducing their pelagic duration, and thus increasing their survival potential. The recent debate regarding whether bigger larvae have better survival could be re-addressed, by determining if larvae with faster growth indices have relatively enhanced survival.
机译:在广泛的热带珊瑚鱼文献中,条件数据的分析很明显。研究人员通常在定居时对丰度进行量化,而很少考虑新定居的鱼类的明显可变质量。可以通过生长指数(例如,耳石的RNA-DNA指数或外周生长增量),饥饿(例如中肠粘膜细胞的高度),贮藏(例如脂质含量)或形态测定(例如干重/长度3)在功能上对疾病进行分类。 ),所有这些变量之间都是相互关联的。目前,所有指标都是针对物种,阶段,技术的,因此通常是针对调查的,因为用于校准田间采集条件指标的实验室饲养的幼虫通常针对饲养程序。 RNA指数特别适合于估计幼虫状况。在中上层幼体或最近定居的幼体中,耳石的外围生长增量的宽度估计了前几天的长度或干重的平均增长率,这可以从状况的降低中看出来。耳石中的增量宽度变化特别响应饥饿事件,并且与RNA指数相关。生长指数具有确定哪些个体生长更快的巨大潜力,从而减少了他们的上浮持续时间,从而增加了他们的生存潜力。通过确定具有较快生长指数的幼虫是否具有相对增强的存活率,可以重新解决有关较大的幼虫是否具有较好存活率的近期争论。

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