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Comparative transcription profiles of Solanum wild species under drought conditions: Preliminary results

机译:干旱条件下茄属野生物种的转录比较谱:初步结果

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Potato (Solanum tuberosum) is the third most important crop and the most relevance dicot in human feeding. Water stress is the greatest limitation of crop production. In response to drought, the plant triggers strategies that involve morphological, physiological and biochemical changes, polygenic traits controlled by additive genes and often synergistic. We focused on the analysis of transcriptional profiling on genotypes of Solanum wild species: S. venturii and S. cardiophyllum that present contrasting behavior under water stress using cDNA microarray hybridizations. Solanum wild species are a rich source of novel genes for introduction into cultivated species to enhance drought tolerance. Bioinformatic analysis of expression data of Solanum wild species showed significant differences in transcriptional profiles. Differentially expressed genes vary not only in number but also in their temporal expression profiles. These differences between wild potato species suggest new ways to exploit the genetic variability of wild germplasm for crop breeding.
机译:马铃薯(Solanum tuberosum)是人类饲喂中第三重要的农作物,也是最相关的双子叶植物。水分胁迫是作物生产的最大限制。为了应对干旱,植物触发了涉及形态,生理和生化变化,由加性基因控制且通常具有协同作用的多基因性状的策略。我们专注于对茄属野生种:S.venturii和S.cardiophyllum的基因型的转录谱分析,其使用cDNA微阵列杂交技术在水分胁迫下表现出不同的行为。茄属野生种是引入到栽培种中以增强耐旱性的新颖基因的丰富来源。茄属野生物种表达数据的生物信息学分析表明,转录谱存在显着差异。差异表达的基因不仅在数量上而且在时间表达谱上也不同。野生马铃薯物种之间的这些差异为利用野生种质的遗传变异性进行农作物育种提供了新的途径。

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