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Exogenous cytokinin application to Actinidia chinensis var. deliciosa ‘Hayward’ fruit promotes fruit expansion through water uptake

机译:外源细胞分裂素在中华猕猴桃变种中的应用美味的海沃德水果通过吸水促进水果膨胀

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摘要

Exogenous application of a cytokinin-like compound forchlorfenuron (CPPU) can promote fruit growth, although often at the expense of dry matter (DM), an important indicator of fruit quality. Actinidia chinensis var. deliciosa ‘Hayward’ fruit are very responsive to CPPU treatments, but the mechanism underlying the significant fruit weight increase and associated decrease in DM is unclear. In this study, we hypothesised that CPPU-enhanced growth increases fruit carbohydrate demand, but limited carbohydrate supply resulted in decreased fruit DM. During fruit development, CPPU effects on physical parameters, metabolites, osmotic pressure and transcriptional changes were assessed under conditions of both standard and a high carbohydrate supply. We showed that CPPU increased fruit fresh weight but the dramatic DM decrease was not carbohydrate limited. Enhanced glucose and fructose concentrations contributed to an increase in soluble carbohydrate osmotic pressure, which was correlated with increased water accumulation in CPPU-treated fruit and up-regulation of water channel aquaporin gene PIP2.4 at 49 days after anthesis. Transcipt analysis suggested that the molecular mechanism contributing to increased glucose and fructose concentrations was altered by carbohydrate supply. At standard carbohydrate supply, the early glucose increase in CPPU fruit was associated with reduced starch synthesis and increased starch degradation. When carbohydrate supply was high, the early glucose increase in CPPU fruit was associated with a general decrease in starch synthesis but up-regulation of vacuolar invertase and fructokinase genes. We conclude that CPPU affected fruit expansion by increasing the osmotically-driven water uptake and its effect was not carbohydrate supply-limited.
机译:外源施用类细胞分裂素类化合物氟虫脲(CPPU)可以促进果实生长,尽管通常以干物质(DM)为代价,而干物质是水果质量的重要指标。中华猕猴桃变种deliciosa的“ Hayward”果实对CPPU的治疗反应非常好,但是尚不清楚果实重量显着增加和DM降低的潜在机制。在这项研究中,我们假设CPPU增强的生长增加了水果碳水化合物的需求,但碳水化合物供应有限导致水果DM降低。在水果发育过程中,在标准和大量碳水化合物供应的条件下评估了CPPU对物理参数,代谢产物,渗透压和转录变化的影响。我们发现CPPU增加了水果的鲜重,但DM的显着降低不受碳水化合物的限制。葡萄糖和果糖浓度增加导致可溶性碳水化合物渗透压升高,这与花后49天CPPU处理的水果中的水积累增加和水通道水通道蛋白基因PIP2.4的上调相关。后遗症分析表明,碳水化合物供应改变了导致葡萄糖和果糖浓度升高的分子机制。在标准碳水化合物供应下,CPPU果实中的早期葡萄糖增加与淀粉合成减少和淀粉降解增加有关。当碳水化合物供应高时,CPPU果实中的早期葡萄糖增加与淀粉合成的普遍减少有关,但液泡转化酶和果糖激酶基因上调。我们得出的结论是,CPPU通过增加渗透驱动的水吸收来影响果实膨胀,其作用不受碳水化合物供应的限制。

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