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Freezing Tolerance and Expression of β-amylase Gene in Two Actinidia arguta Cultivars with Seasonal Changes

机译:季节性变化的两个猕猴桃品种的耐寒性和β-淀粉酶基因的表达

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摘要

Low temperature causes injuries to plants during winter, thereby it affects kiwi fruit quality and yield. However, the changes in metabolites and gene expression during cold acclimation (CA) and deacclimation (DA) in kiwi fruit remain largely unknown. In this study, freezing tolerance, carbohydrate metabolism, and β-amylase gene expression in two cv. “CJ-1” and “RB-3” were detected from CA to DA stages. In all acclimation stages, the “CJ-1” was hardier than “RB-3” and possessed lower semi-lethal temperature (LT50). Furthermore, “CJ-1” had a more rapid acclimation speed than “RB-3”. Changes of starch, β-amylase, and soluble sugars were associated with freezing tolerance in both cultivars. Starch contents continued to follow a declining trend, while soluble sugars contents continuously accumulated in both cultivars during CA stages (from October to January). To investigate the possible molecular mechanism underlying cold response in , in total, 16 genes for β-amylase were identified in the kiwi fruit genome. We carried out localization of chromosome, gene structure, the conserved motif, and the analysis of events in the duplication of genes from . Finally, a strong candidate gene named from was cloned in The real-time qPCR showed that gene expression in seasonal changes was consistent with changes of soluble sugars. These results reveal that may enhance the freezing tolerance of through increasing soluble sugar content.
机译:低温会在冬季对植物造成伤害,从而影响猕猴桃的质量和产量。然而,猕猴桃的冷适应(CA)和去适应(DA)过程中代谢物和基因表达的变化仍然未知。在这项研究中,两个cv中的耐寒性,碳水化合物代谢和β-淀粉酶基因表达。从CA到DA阶段检测到“ CJ-1”和“ RB-3”。在所有适应阶段,“ CJ-1”比“ RB-3”更坚硬,并且具有较低的半致死温度(LT50)。此外,“ CJ-1”的适应速度比“ RB-3”更快。淀粉,β-淀粉酶和可溶性糖的变化与两个品种的耐冻性有关。淀粉含量持续跟随下降趋势,而可溶性糖含量在CA阶段(10月至1月)持续积累。为了研究潜在的冷应答分子机制,在猕猴桃基因组中总共确定了16种淀粉酶基因。我们进行了染色体的定位,基因结构,保守的基序,并对来自的基因复制中的事件进行了分析。最后,在cDNA中克隆了一个名为的强候选基因。实时定量PCR显示,季节变化中的基因表达与可溶性糖的变化一致。这些结果表明,通过增加可溶性糖含量可以提高冷冻耐受性。

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