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Size and Organic Content of Eggs of Marine Annelids, and the Underestimation of Egg Energy Content by Dichromate Oxidation

机译:海洋Annelids的鸡蛋的大小和有机含量,并通过二色素氧化低估蛋能含量

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摘要

Dichromate oxidation is a simple technique that is often used to estimate the energy content of eggs in studies of marine invertebrate life histories (1). We used this method to measure the energy contents of the eggs of 12 species of marine annelids. In combination with measures of egg ash-free dry weight (AFDW), these data yielded estimates of AFDW-specific energy density that were mostly lower than the average weight-specific energy density of carbohydrates. This seemed unlikely to be correct, as invertebrate eggs typically contain little carbohydrate and instead are composed primarily of energy-dense protein and lipid (1, 2). After validating our methods (by using them to estimate energy content and AFDW of the eggs of a previously studied echinoderm) and reexamining published data on the energy contents of echinoderm eggs, we conclude that dichromate oxidation often underestimates the energy contents of small eggs of marine invertebrates. This systematic error, which is likely related to the tendency of the assay to incompletely oxidize proteins, can only be corrected with substantial independent data on egg biochemical composition. We thus suggest that dichromate oxidation should not be used for routine measurement of the total energy content of marine invertebrate eggs.Originally published in Biological Bulletin and used with permission.
机译:重铬酸盐氧化是一种简单的技术,在海洋无脊椎动物生活史的研究中通常用于估算鸡蛋的能量含量(1)。我们使用这种方法来测量12种海洋类肘类动物卵中的能量含量。结合鸡蛋无灰干重(AFDW)的度量,这些数据得出的AFDW比能量密度估计值大多低于碳水化合物的平均比重能量密度。这似乎不太正确,因为无脊椎动物卵通常只含有很少的碳水化合物,而主要由能量密集的蛋白质和脂质组成(1、2)。在验证了我们的方法(通过使用它们来估计先前研究过的棘皮动物卵的能量含量和AFDW)并重新检查关于棘皮动物卵的能量含量的公开数据后,我们得出结论,重铬酸盐氧化常常低估了海洋中小卵的能量含量无脊椎动物。这种系统性错误很可能与测定法不完全氧化蛋白质的趋势有关,只能使用关于鸡蛋生化成分的大量独立数据来纠正。因此,我们建议不要使用重铬酸盐氧化来常规测量海洋无脊椎动物卵的总能量含量。最初发表于《生物通报》上并经许可使用。

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