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Global patterns of protein abundance during the development of cold hardiness in blueberry

机译:蓝莓抗寒性发展过程中蛋白质丰度的总体分布

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摘要

To gain a better understanding of the cold acclimation progression in blueberry, we investigated the proteome-level changes that occur in flower buds with increasing exposure to chilling temperatures using the 2D-DIGE technique. From this procedure, 104 protein spots were found to be differentially expressed. These proteins, identified by mass spectrometry, were compared to those previously found on 1-D protein gels and to differentially expressed transcripts from an earlier transcriptome study. The most highly induced proteins corresponded to previously described dehydrins. Approximately half of the changes in the proteome reflected similar changes in the transcriptome. In addition, from 2D-DIGE, different quantitative patterns of protein induction and suppression were found. The largest differences occurred during the transition from the first to the second stage of cold acclimation, which corresponded to timing of the largest increase in cold hardiness. This, with qualitative differences affecting the regulation of several functional groups, suggest as a whole that plants are able to monitor changes in the environment and then respond by modulating their proteome accordingly.
机译:为了更好地了解蓝莓的冷驯化进程,我们使用2D-DIGE技术研究了随着暴露于低温而增加的花蕾中蛋白质组水平的变化。通过该程序,发现104个蛋白质斑点被差异表达。将通过质谱鉴定的这些蛋白质与先前在1-D蛋白质凝胶中发现的蛋白质以及来自早期转录组研究的差异表达的转录本进行比较。诱导程度最高的蛋白质与先前描述的脱水素相对应。蛋白质组中大约一半的变化反映了转录组中的相似变化。此外,从2D-DIGE中发现了不同的蛋白质诱导和抑制定量模式。最大的差异发生在从第一阶段到第二阶段的冷适应过程中,这对应于最大的耐寒性增加时间。从本质上说,这影响几个功能组的调控,这暗示着植物能够监测环境的变化,然后通过相应地调节其蛋白质组来做出反应。

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