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首页> 外文期刊>Plant Molecular Biology >An integrated proteomic and metabolomic study to evaluate the effect of nucleus-cytoplasm interaction in a diploid citrus cybrid between sweet orange and lemon
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An integrated proteomic and metabolomic study to evaluate the effect of nucleus-cytoplasm interaction in a diploid citrus cybrid between sweet orange and lemon

机译:一种综合蛋白质组学和代谢组研究,评价甜橙和柠檬之间二倍体柑橘植物中核 - 细胞质相互作用的影响

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Key messageOur results provide a comprehensive overview how the alloplasmic condition might lead to a significant improvement in citrus plant breeding, developing varieties more adaptable to a wide range of conditions.AbstractCitrus cybrids resulting from somatic hybridization hold great potential in plant improvement. They represent effective products resulting from the transfer of organelle-encoded traits into cultivated varieties. In these cases, the plant coordinated array of physiological, biochemical, and molecular functions remains the result of integration among different signals, which derive from the compartmentalized genomes of nucleus, plastids and mitochondria. To dissect the effects of genome rearrangement into cybrids, a multidisciplinary study was conducted on a diploid cybrid (C2N), resulting from a breeding program aimed to improve interesting agronomical traits for lemon, the parental cultivars Valencia' sweet orange (V) and femminello' lemon (F), and the corresponding somatic allotetraploid hybrid (V+F). In particular, a differential proteomic analysis, based on 2D-DIGE and MS procedures, was carried out on leaf proteomes of C2N, V, F and V+F, using the C2N proteome as pivotal condition. This investigation revealed differentially represented protein patterns that can be associated with genome rearrangement and cell compartment interplay. Interestingly, most of the up-regulated proteins in the cybrid are involved in crucial biological processes such as photosynthesis, energy production and stress tolerance response. The cybrid differential proteome pattern was concomitant with a general increase of leaf gas exchange and content of volatile organic compounds, highlighting a stimulation of specific pathways that can be related to observed plant performances. Our results contribute to a better understanding how the alloplasmic condition might lead to a substantial improvement in plant breeding, opening new opportunities to develop varieties more adap
机译:关键令人兴趣的结果提供了全面的概述,原粒状况如何导致柑橘植物育种的显着改善,发展品种更适应于各种条件的含量。毒素杂交引起的纤维化纤维增强具有巨大潜力。它们代表了由细胞器编码的特征转移到栽培品种中产生的有效产品。在这些情况下,植物协调的生理学,生物化学和分子功能阵列仍然是不同信号之间集成的结果,其来自核,塑性和线粒体的分区化基因组。为了将基因组重排变为糖的影响,在二倍体纤维(C2N)上进行多学科研究,该研究是由育种计划产生的,旨在改善柠檬的有趣农村特征,父母品种瓦伦西亚甜橙(v)和Femminello'柠檬(f)和相应的体细胞同种异体四倍体杂交(V + F)。特别地,使用C2N蛋白质组的C2N,V,F和V + F的叶片蛋白质组来进行差分蛋白质组学分析,使用C2N蛋白质组作为枢轴状况。该研究揭示了差异代表的蛋白质模式,其可以与基因组重排和细胞室相互作用相关。有趣的是,大多数在胞胎中的上调蛋白质参与了关键的生物过程,如光合作用,能量产生和应力耐受响应。胞胎微分蛋白质组图案伴随着叶片气体交换和挥发性有机化合物含量的一般增加,突出了可能与观察到的植物性能有关的特定途径的刺激。我们的结果有助于更好地理解原种原因可能导致植物育种的大量改善,开辟开发品种的新机会更多的适应

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