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Drought-Induced Regulatory Cascades and Their Effects on the Nutritional Quality of Developing Potato Tubers

机译:干旱诱导的监管级联及其对开发马铃薯块茎营养品质的影响

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摘要

Competition for scarce water resources and the continued effects of global warming exacerbate current constraints on potato crop production. While plants’ response to drought in above-ground tissues has been well documented, the regulatory cascades and subsequent nutritive changes in developing tubers have been largely unexplored. Using the commercial Canadian cultivar “Vigor”, plants were subjected to a gradual drought treatment under high tunnels causing a 4 °C increase in the canopy temperature. Tubers were sampled for RNAseq and metabolite analysis. Approximately 2600 genes and 3898 transcripts were differentially expressed by at least 4-fold in drought-stressed potato tubers, with 75% and 69% being down-regulated, respectively. A further 229 small RNAs were implicated in gene regulation during drought. Expression of several small RNA clusters negatively correlated with expression of their six target patatin genes, suggesting involvement in the regulation of storage proteins during drought. The comparison of protein homologues between L. and L. indicated that down-regulated genes were associated with phenylpropanoid and carotenoid biosynthesis. As is indicative of reduced flow through the phenylpropanoid pathway, phenylalanine accumulated in drought-stressed tubers. This suggests that there may be nutritive implications to drought stress occurring during the potato tuber bulking phase in sensitive cultivars.
机译:稀缺水资源的竞争与全球变暖的持续影响加剧了对马铃薯作物生产的当前约束。虽然植物对地面组织中的干旱的反应已经充分了解,但是调节级联和随后的发育块茎的营养变化很大程度上是未开发的。使用商业加拿大品种“活力”,植物在高隧道下进行逐渐进行干旱处理,导致冠层温度增加4°C。取样块茎以进行RNASEQ和代谢物分析。大约2600个基因和3898份转录物在干旱胁迫的马铃薯块茎中至少4倍,分别下调75%和69%。在干旱期间,进一步的229个小RNA涉及基因调节。几种小RNA簇的表达与其六种靶凝血酶基因的表达呈负相关,表明在干旱过程中涉及储存蛋白的调节。 L.和L之间的蛋白质同源物的比较表明下调基因与苯丙醇和类胡萝卜素生物合成有关。表明通过苯丙烷型途径的流动减少,在干旱胁迫块茎中累积的苯丙氨酸。这表明可能对在敏感品种的马铃薯块茎膨胀相期间发生干旱胁迫的影响。

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