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Transcriptomics and Biochemical Profiling: Current Dynamics in Elucidating the Potential Attributes of Olive.
Current Issues in Molecular Biology ( IF 3.1 ) Pub Date : 2016-08-04 , DOI: 10.21775/cimb.021.073
Zahid Hussain Shah 1 , Bahget T Hamooh 1 , Ihsanullah Daur 1 , Hafiz Mamoon Rehman 2 , Fahad Alghabari 1
Affiliation  

Various transcriptome studies have remained useful in unraveling the complexity of molecular pathways regulating the oil biochemical contents and fruit characteristics of agronomic value in olive. Genes networks associated with plant architect and abiotic stress tolerance have been constructed due to robust genomic data generated by the tools of genomics. This, familiarity will accelerate the breeding programmes in making the selection of high yielding olive genotypes promptly and efficiently. Moreover, comparative transcriptome studies for endogeneous enzymes at different expression sites explicate the contribution of various pathways in phenol and lipid oxidation in olive. Recently, non-targeted metabolomics and metabolic profiling techniques have not only made the understanding of metabolic changes easy but also elucidate biomarkers in fruits related to agronomic parameters and abiotic stresses. However, the alteration in the architectural build up of phenotypes auth-enticates the conservation of their potential genetic links that will invoke interest for future olive breeding.

中文翻译:

转录组学和生化分析:阐明橄榄潜在特性的当前动态。

各种转录组研究仍然有助于揭示调节橄榄中油生化含量和果实农艺价值的果实特征的分子途径的复杂性。由于基因组学工具生成的强大基因组数据,已经构建了与植物建筑师和非生物胁迫耐受性相关的基因网络。这种熟悉将加速育种计划,以迅速有效地选择高产橄榄基因型。此外,不同表达位点内源酶的比较转录组研究阐明了橄榄中酚和脂质氧化中各种途径的贡献。最近,非靶向代谢组学和代谢分析技术不仅使对代谢变化的理解变得容易,而且还阐明了水果中与农艺参数和非生物胁迫相关的生物标志物。然而,表型结构构建的改变验证了它们潜在的遗传联系的保护,这将引起人们对未来橄榄育种的兴趣。
更新日期:2020-08-21
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