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Methods of estimating marine mammal diets: A review of validation experiments and sources of bias and uncertainty

机译:估计海洋哺乳动物饮食的方法:验证实验的回顾以及偏倚和不确定性的根源

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Diet estimation in marine mammals relies on indirect methods including recovery of prey hard parts from stomachs and feces, quantitative fatty acid signature analysis (QFASA), stable isotope mixing models, and identification of prey DNA in stomach contents and feces. Experimental evidence (9 species/13 studies) shows that digestion strongly influences the proportion and size of otoliths that can be recovered in feces. Number correction factors (NCF) and digestion coefficients have been experimentally determined to reduce the biases in fecal analysis. Correction factors and coefficients have not been determined for diet estimated from stomach contents. QFASA estimates which prey species and amounts must have been eaten to account for the fatty acid composition of the predator. Experimental studies on mammals and seabirds (9 species/10 studies) indicate that accurate estimates of diet can be determined using QFASA. Stable isotope mixing models provide rather coarse taxonomic resolution of diet composition. Prey DNA analysis shows promise as a method to estimate the species composition of diet, but further development and testing is needed to validate its use. Obtaining a representative sample from marine mammal populations is a significant challenge. Therefore, the use of complementary methods is recommended to obtain the most informative results.
机译:海洋哺乳动物的饮食估计依赖于间接方法,包括从胃和粪便中回收猎物坚硬部分,定量脂肪酸特征分析(QFASA),稳定的同位素混合模型以及在胃内容物和粪便中鉴定猎物DNA。实验证据(9个物种/ 13个研究)表明,消化强烈影响可从粪便中回收的耳石的比例和大小。已经通过实验确定了数校正因子(NCF)和消化系数,以减少粪便分析中的偏差。从胃内容物估计的饮食中,尚未确定校正因子和系数。 QFASA估计必须吃掉哪些猎物种类和数量才能说明捕食者的脂肪酸组成。对哺乳动物和海鸟的实验研究(9个物种/ 10个研究)表明,可以使用QFASA来确定饮食的准确估计值。稳定的同位素混合模型可为饮食组成提供相当粗略的分类学分辨率。猎物DNA分析显示出有望作为估计饮食中物种组成的一种方法,但是需要进一步开发和测试以验证其用途。从海洋哺乳动物种群中获得代表性样品是一项重大挑战。因此,建议使用补充方法以获得最有益的结果。

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