首页> 外文期刊>Journal of the American Society for Horticultural Science >Reduction of fruit load affects early fruit growth in apple by enhancing carbohydrate availability, altering the expression of cell production-related genes, and increasing cell production.
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Reduction of fruit load affects early fruit growth in apple by enhancing carbohydrate availability, altering the expression of cell production-related genes, and increasing cell production.

机译:减少水果负荷会通过增加碳水化合物的利用,改变与细胞生产相关的基因的表达并增加细胞产量来影响苹果的早期水果生长。

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Carbohydrate availability is a key factor determining fruit growth in apple (Malus x domestica) and other fruits. However, the molecular mechanisms regulating fleshy fruit growth in response to changes in carbohydrate availability are not well understood. In this study, carbohydrate availability was manipulated by reducing fruit load, and its effects on apple fruit growth, cell production and expansion, and the expression of genes associated with these processes was investigated. Reduction of fruit load during early fruit development led to a rapid increase in early fruit growth. The increase in fruit growth was associated with a transient increase in sorbitol and fructose concentrations and altered expression of sorbitol dehydrogenase and sucrose synthase genes. Increase in early fruit growth was mediated primarily by an increase in cell production. The aintegumenta gene, MdANT1, an AP2-domain transcription factor associated with the regulation of cell production and fruit growth, displayed an increase in expression by up to 5-fold during early fruit development in response to the reduction in fruit load. Additionally, multiple cell cycle genes positively associated with cell production such as the cyclins, MdCYCA2;1, MdCYCA2;3, MdCYCB1;1, and MdCYCB2;2, and the B-type cyclin-dependent kinases, MdCDKB1;1, MdCDKB1;2, and MdCDKB2;2, displayed higher expression by up to 5-fold under reduced fruit load conditions during early fruit growth. These data indicate that carbohydrate availability affects the expression of key transcription factors and cell proliferation genes, thereby regulating cell production during early fruit growth. Several genes associated with cell expansion such as the expansins, and cobra and cobra-like genes, also displayed altered expression in response to the reduction in fruit load. The expression of three expansin genes was higher under reduced fruit load conditions at maturity, a stage at which a minor increase in cell size was apparent. Together, data from this study indicate that fruit load reduction induces changes in carbohydrate availability and metabolism, which in turn affect cell production-related mechanisms, thereby enhancing early fruit growth.
机译:碳水化合物的利用率是决定苹果(Malus x domestica)和其他水果果实生长的关键因素。然而,人们对碳水化合物的可利用性变化作出反应而调节肉质水果生长的分子机制尚未完全了解。在这项研究中,通过减少果实负荷来控制碳水化合物的利用,并研究了其对苹果果实生长,细胞产生和扩展以及与这些过程相关的基因表达的影响。在早期果实发育过程中减少果实负荷导致了早期果实生长的迅速增加。果实生长的增加与山梨糖醇和果糖浓度的瞬时增加以及山梨糖醇脱氢酶和蔗糖合酶基因表达的改变有关。早期果实生长的增加主要由细胞产量的增加介导。 Aintegumenta基因MdANT1是与细胞产量和果实生长的调节相关的AP2域转录因子,响应于果实负荷的减少,在早期果实发育过程中其表达增加了多达5倍。此外,与细胞产生正相关的多个细胞周期基因,例如细胞周期蛋白MdCYCA2; 1,MdCYCA2; 3,MdCYCB1; 1和MdCYCB2; 2,以及B型细胞周期蛋白依赖性激酶MdCDKB1; 1,MdCDKB1; 2和MdCDKB2; 2在早期水果生长过程中,在减少的水果负荷条件下显示了高达5倍的高表达。这些数据表明碳水化合物的可利用性会影响关键转录因子和细胞增殖基因的表达,从而在早期水果生长过程中调节细胞产量。与细胞膨胀相关的几种基因,例如扩展蛋白,眼镜蛇和眼镜蛇样基因,也响应于减少水果负荷而表现出改变的表达。在水果负荷降低的条件下,成熟时三个expansin基因的表达较高,这一阶段细胞大小明显增加。总之,这项研究的数据表明,减少水果负荷会导致碳水化合物利用量和新陈代谢的变化,进而影响与细胞生产相关的机制,从而增强早期水果的生长。

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