Group of Biotechnology of Pharmaceutical Plants, Lab of Pharmacognosy, Department of Pharmaceutical Sciences, Aristotle University of Thessaloniki, 54124, Thessaloniki, Greece.
Funct Integr Genomics. 2011 Jun;11(2):357-68. doi: 10.1007/s10142-010-0204-1. Epub 2011 Jan 11.
A transcriptome analysis was applied on two peach (Prunus persica L.) cultivars with different sensitivity to low temperature regimes to identify genes that might be involved in tolerance to extended low temperature storage. Peach fruit from 'Morettini No2' to 'Royal Glory', cultivars sensitive and tolerant to chilling injury (CI), respectively, were harvested at commercial maturity stage and allowed to ripen at room temperature (shelf-life, 25°C) or subjected to 4 and 6 weeks of cold storage (0°C, 95% R.H.) followed by ripening at room temperature. The use of μPEACH 1.0 microarray platform identified a number of genes that were differentially expressed in 'Morettini No2' and 'Royal Glory' fruit after the extended storage period. Based on their possible involvement in physiological processes related to cold storage and on their differential expression pattern, two heat shock proteins, a β-D-xylosidase, an expansin, a dehydrin and a pathogenesis-related (PR) protein were further selected for detailed analysis via RNA blot analysis. It is suggested that β-D: -xylosidase and PR-4B precursor genes could be related to the different tolerance to CI observed in the two peach cultivars since generally higher expression levels were observed in cv. 'Royal Glory', the tolerant one. These two genes could play a role in peach tolerance to chilling injury.
采用转录组分析方法对两个桃(Prunus persica L.)品种进行分析,这两个品种对低温环境的敏感性不同,目的是鉴定可能与耐长期低温贮藏相关的基因。分别从对冷害敏感的品种‘Morettini No2’和对冷害有耐性的品种‘Royal Glory’中收获商业成熟度的果实,在室温(货架期,25°C)下让其成熟,或在 4 周和 6 周的冷藏(0°C,95%相对湿度)后在室温下成熟。使用 μPEACH 1.0 微阵列平台鉴定了在延长贮藏期后,在‘Morettini No2’和‘Royal Glory’果实中差异表达的一些基因。基于它们可能参与与冷藏相关的生理过程及其差异表达模式,选择了两种热休克蛋白、β-D-木聚糖酶、伸展蛋白、脱水素和一个病程相关(PR)蛋白,通过 RNA 印迹分析进行了进一步的详细分析。β-D-木聚糖酶和 PR-4B 前体基因可能与两个桃品种对冷害的不同耐性有关,因为在耐性品种‘Royal Glory’中通常观察到更高的表达水平。这两个基因可能在桃对冷害的耐性中发挥作用。