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Temperature desynchronizes sugar and organic acid metabolism in ripening grapevine fruits and remodels their transcriptome

机译:温度会使葡萄果实成熟时的糖和有机酸代谢失调并重塑其转录组

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摘要

BackgroundFruit composition at harvest is strongly dependent on the temperature during the grapevine developmental cycle. This raises serious concerns regarding the sustainability of viticulture and the socio-economic repercussions of global warming for many regions where the most heat-tolerant varieties are already cultivated. Despite recent progress, the direct and indirect effects of temperature on fruit development are far from being understood. Experimental limitations such as fluctuating environmental conditions, intra-cluster heterogeneity and the annual reproductive cycle introduce unquantifiable biases for gene expression and physiological studies with grapevine. In the present study, DRCF grapevine mutants (microvine) were grown under several temperature regimes in duly-controlled environmental conditions. A singly berry selection increased the accuracy of fruit phenotyping and subsequent gene expression analyses. The physiological and transcriptomic responses of five key stages sampled simultaneously at day and nighttime were studied by RNA-seq analysis.
机译:背景技术收获时的水果成分在很大程度上取决于葡萄的发育周期。这就引起了人们对葡萄栽培的可持续性以及许多已经种植了最耐高温品种的许多地区全球变暖的社会经济影响的严重关注。尽管取得了新的进展,但温度对水果发育的直接和间接影响尚不清楚。诸如环境条件的波动,集群内部异质性和年度繁殖周期等实验限制为葡萄的基因表达和生理学研究带来了无法量化的偏差。在本研究中,DRCF葡萄突变体(微葡萄)在适当控制的环境条件下在几种温度下生长。单独选择浆果可以提高水果表型分析和后续基因表达分析的准确性。通过RNA-seq分析研究了在白天和晚上同时采样的五个关键阶段的生理和转录组反应。

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