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首页> 外文期刊>Plant Cell Reports >Differential adaptation of high- and low-chill dormant peaches in winter through aquaporin gene expression and soluble sugar content
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Differential adaptation of high- and low-chill dormant peaches in winter through aquaporin gene expression and soluble sugar content

机译:水通道蛋白基因表达和可溶性糖含量对高寒冬眠桃在冬季的差异适应

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Plants have their own mechanisms for overcoming various stresses. In cold regions, plants are subject to stress and must enter an inherent dormancy, through several complex mechanisms, if they are to continue to exist. In winter, regulation of tonoplast and plasma membrane aquaporin genes differed in the bud cushions of the high-chill peach (Prunus persica L. Batsch) cv. Kansuke Hakuto and the low-chill peach cv. Coral. In December and January, when the temperature was lowest (around 2°C), the increased expression of Pp-γTIP1 and Pp-PIP1 seen in the bud cushions of Kansuke Hakuto may have been related to the concomitant high-soluble sugar content of the cushions of this cultivar. This relationship may have made the cells highly stable and relatively unaffected by low-temperature stress owing to the presence of “glasses” that prevented ice nucleation. However, a simpler form of cold protection regulation seemed to occur in Coral, in which there was no winter increase in Pp-γTIP1 and Pp-PIP1 mRNA and a slow decline in total soluble sugar content in December and January. These results suggested that Pp-γTIP1 and Pp-PIP1, respectively, play important roles in intra- and intercellular membrane transport, enhancing cold resistance in the bud cushions of high-chill cultivars. In addition, Pp-δTIP1 and Pp-PIP2 mRNA increased at the end of endodormancy in both cultivars. This change may be induced by endodormancy-release signals and the resumption of bud activity in both cultivars.
机译:植物有自己的克服各种压力的机制。在寒冷地区,植物要继续生存,就承受着压力,必须通过几种复杂的机制进入固有的休眠状态。在冬季,高寒桃(Prunus persica L. Batsch)cv的芽垫中,液泡膜和质膜水通道蛋白基因的调控不同。 Kansuke Hakuto和低冷的桃子简历。珊瑚。在12月和1月的最低温度(大约2°C)下,在Kansuke Hakuto芽垫中看到的Pp-γTIP1和Pp-PIP1表达的增加可能与玉米中伴随的高可溶性糖含量有关。该品种的垫子。由于存在防止冰核化的“玻璃”,这种关系可能使细胞高度稳定,并且不受低温应力的影响。然而,在珊瑚中似乎出现了一种更简单的防寒调节形式,其中Pp-γTIP1和Pp-PIP1 mRNA的冬季没有增加,而12月和1月的总可溶性糖含量却缓慢下降。这些结果表明,Pp-γTIP1和Pp-PIP1分别在细胞内和细胞间膜运输中发挥重要作用,增强了高寒品种芽垫的抗寒性。此外,在两个品种的内嗅结束时,Pp-δTIP1和Pp-PIP2 mRNA均增加。这种变化可能是由两个品种中的异味释放信号和芽活性的恢复引起的。

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