No biomarker has yet been discovered to identify the reproductive status of the endangered leatherback sea turtle (Dermochelys coriacea). Although vitellogenin (VTG) could be used for this, its sequence is not known in D. coriacea and no quantitative assay has been carried out in this species to date. Using de novo sequencing-based proteomics, we unambiguously characterized sequences of two different VTG isoforms that we named Dc-VTG1 and Dc-VTG2. To our knowledge, this is the first clear evidence of different VTG isoforms and the structural characterization of derived yolk proteins in reptiles. This work illustrates how massive de novo sequencing can characterize novel sequences when working on "exotic" nonmodel species in which even nucleotide sequences are not available. We developed assays for absolute quantitation of these two isoforms using selected reaction monitoring (SRM) mass spectrometry, thus providing the first SRM assays developed specifically for a nonsequenced species. Plasma levels of Dc-VTG1 and Dc-VTG2 decreased as the nesting season proceeded, and were closely related to the increased levels of reproductive effort. The SRM assays developed here therefore provide an original and efficient approach for the reliable monitoring of reproduction cycles not only in D. coriacea, but potentially in other turtle species.

译文

:尚未发现生物标志物来鉴定濒危棱皮海龟(Dermochelys coriacea)的繁殖状况。尽管卵黄蛋白原(VTG)可以用于此,但其序列在D. coriacea中尚不知道,迄今为止,尚未对该种进行定量分析。使用基于从头测序的蛋白质组学,我们明确表征了两个不同的VTG亚型的序列,我们将其命名为Dc-VTG1和Dc-VTG2。据我们所知,这是不同VTG亚型和爬行动物中衍生卵黄蛋白结构特征的第一个明确证据。这项工作说明了大规模的从头测序如何在处理甚至核苷酸序列均不可用的“外来”非模型物种时表征新序列。我们使用选定的反应监测(SRM)质谱技术开发出了这两种同工型的绝对定量分析方法,从而提供了专门针对非序列物种开发的首批SRM分析方法。随着筑巢季节的进行,血浆Dc-VTG1和Dc-VTG2的含量下降,并且与生殖力的增加密切相关。因此,这里开发的SRM分析不仅提供了一种可靠的原始方法,而且不仅可以可靠地监测D. coriacea中的繁殖周期,而且还可以潜在地监控其他龟类中的繁殖周期。

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