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首页> 外文期刊>Journal of proteomics >Comparative shotgun proteomic analysis of wild and domesticated Opuntia spp. species shows a metabolic adaptation through domestication
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Comparative shotgun proteomic analysis of wild and domesticated Opuntia spp. species shows a metabolic adaptation through domestication

机译:野生和驯化的仙人掌属物种的比较shot弹枪蛋白质组学分析。物种通过驯化显示代谢适应

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The Opuntia genus is widely distributed in America, but the highest richness of wild species are found in Mexico, as well as the most domesticated Opuntia ficus-indica, which is the most domesticated species and an important crop in agricultural economies of arid and semiarid areas worldwide. During domestication process, the Opuntia morphological characteristics were favored, such as less and smaller spines in cladodes and less seeds in fruits, but changes at molecular level are almost unknown. To obtain more insights about the Opuntia molecular changes through domestication, a shotgun proteomic analysis and database-dependent searches by homology was carried out. >1000 protein species were identified and by using a label-free quantitation method, the Opuntia proteomes were compared in order to identify differentially accumulated proteins among wild and domesticated species. Most of the changes were observed in glucose, secondary, and 1C metabolism, which correlate with the observed protein, fiber and phenolic compounds accumulation in Opuntia cladodes. Regulatory proteins, ribosomal proteins, and proteins related with response to stress were also observed in differential accumulation. These results provide new valuable data that will help to the understanding of the molecular changes of Opuntia species through domestication.
机译:仙人掌属在美国分布广泛,但在墨西哥发现的野生物种丰富度最高,而驯化程度最高的仙人掌-印度榕树是干旱和半干旱地区农业经济中驯化程度最高的物种和重要农作物全世界。在驯化过程中,仙人掌的形态特征受到青睐,例如刺中的刺越来越少,果实的种子越来越少,但是在分子水平上的变化几乎是未知的。为了通过驯化获得有关仙人掌分子变化的更多见解,进行了a弹枪蛋白质组分析和同源性数据库相关搜索。鉴定出> 1000种蛋白质,并使用无标记定量方法比较了仙人掌蛋白质组,以鉴定野生和驯化物种中差异积累的蛋白质。在葡萄糖,继发性和1C代谢中观察到大多数变化,这与观察到的仙人掌中蛋白质,纤维和酚类化合物的积累有关。在差异积累中也观察到调节蛋白,核糖体蛋白和与应激反应相关的蛋白。这些结果提供了新的有价值的数据,将有助于通过驯化来了解仙人掌物种的分子变化。

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