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对连续两个发育阶段的茄蝇(Hendel)的比较蛋白质组学分析

Comparative Proteomic Profiling between Each of Two Consecutive Developmental Stages of the Solanum Fruit Fly, (Hendel).

机构信息

USDA, Agricultural Research Service, Daniel K. Inouye U.S. Pacific Basin Agricultural Research Center, 64 Nowelo Street, Hilo, HI 96720, USA.

出版信息

Int J Mol Sci. 2018 Jul 9;19(7):1996. doi: 10.3390/ijms19071996.

Abstract

The Solanum fruit fly, (Hendel), has a complex life cycle including multiple stages (egg, larva, pupa, and adult). Understanding the details of “what„, “when„, “where„, “why„, and “how„ many hundred thousand proteins operate in this insect, interact, and express between each two consecutive developmental stages at molecular level not only can expand our knowledge, but also lead to the development of novel fruit fly control techniques. We tried to find what, when, and where in this study. Why and how will be presented in upcoming papers. We conducted a proteome profiling using 2-D gel electrophoresis and mass spectrometry. Samples of 3-day-old eggs, 1- and 10-day-old larvae, 1- and 10-day-old pupae, 1- and 9-day-old females and males of were used. A custom peptide database, derived from the whole genome assembly was used for peptide identification. Differentially expressed proteins (DEPs) with significant fold expression and protein functions between two consecutive developmental stages were identified, annotated, described, and listed in gel images and/or charts. With this foundational information, we are not only providing valuable information, but also any impacts due to the biotic or abiotic environmental factors can be identified and manipulated, and lead to further research on gene editing and biomarker discovery.

摘要

茄属果实蝇(Hendel)的生命周期较为复杂,包括多个阶段(卵、幼虫、蛹和成虫)。深入了解“在分子水平上,在昆虫的连续两个发育阶段之间,有多少成千上万的蛋白质在运作、相互作用和表达,不仅可以扩展我们的知识,还可以为新型果实蝇控制技术的发展提供依据。在本研究中,我们试图寻找什么、何时以及何处。为什么和如何将在即将发表的论文中呈现。我们使用二维凝胶电泳和质谱进行了蛋白质组谱分析。使用了 3 天大的卵、1 天和 10 天大的幼虫、1 天和 10 天大的蛹、1 天和 9 天大的雌雄果实蝇作为样本。肽数据库是根据 的全基因组组装定制的,用于肽鉴定。在连续两个发育阶段之间,根据显著的倍数表达和蛋白质功能差异,确定并列出了差异表达蛋白(DEPs),并在凝胶图像和/或图表中进行了注释、描述。有了这些基础信息,我们不仅提供了有价值的信息,还可以识别和操纵由于生物或非生物环境因素造成的任何影响,从而进一步进行基因编辑和生物标志物发现的研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a91d/6073878/fbf925376d03/ijms-19-01996-g001a.jpg

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