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首页> 外文期刊>Plant, Cell & Environment >Fruit load and elevation affect ethylene biosynthesis and action in apple fruit (Malus domestica L. Borkh) during development, maturation and ripening
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Fruit load and elevation affect ethylene biosynthesis and action in apple fruit (Malus domestica L. Borkh) during development, maturation and ripening

机译:在发育,成熟和成熟过程中,果实的负载量和高低会影响苹果果实(Malus domestica L. Borkh)中乙烯的合成和作用。

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The influence of internal and external factors such as tree fruit load and elevation on ethylene biosynthesis and action was assessed during apple fruit development and ripening. Ethylene biosynthesis, as well as transcript accumulation of the hormone biosynthetic enzymes (MdACS1 and MdACO1), receptors (MdETR1 and MdERS1) and an element of the transduction pathway (MdCTR1), were evaluated in apples borne by trees with high (HL) and low (LL) fruit load. Orchards were located in two localities differing in elevation and season day degree sum. These parameters significantly affected the date of bloom and commercial harvest, and the length of the fruit developmental cycle. Trees from the low elevation (LE) bloomed and the fruit ripened earlier than those from the high elevation (HE), displaying also a shortened fruit developmental cycle. Dynamics of ethylene evolution was apparently not affected by elevation. The onset of ethylene evolution started 130 days after bloom (DAB) at both elevations. During early ripening, fruits from LL trees produced significantly more ethylene than those from HL trees. Expression analysis of MdACS1, MdACO1 and MdERS1 indicated that the transcript accumulation well correlated with ethylene evolution. MdCTR1 was expressed at constant level throughout fruit growth and development up to 130 DAB, thereafter, the transcript accumulation decreased up to commercial harvest, concurrently with the onset of ethylene evolution.
机译:在苹果果实的发育和成熟过程中,评估了内部和外部因素(例如,树果的负载量和高度)对乙烯生物合成和作用的影响。在高(HL)低树上的苹果上评估了乙烯的生物合成以及激素生物合成酶(MdACS1和MdACO1),受体(MdETR1和MdERS1)以及转录途径元素(MdCTR1)的转录积累(LL)水果负荷。果园位于海拔和季节日数总和不同的两个地方。这些参数显着影响开花和商业收获的日期以及果实发育周期的长度。低海拔(LE)的树木开花,果实早于高海拔(HE)的树木成熟,显示出缩短的果实发育周期。乙烯释放的动力学显然不受高度的影响。乙烯释放开始于两个高度的开花(DAB)后130天。在早熟期间,LL树的果实产生的乙烯比HL树的果实明显多。 MdACS1,MdACO1和MdERS1的表达分析表明,转录本的积累与乙烯的进化密切相关。在高达130 DAB的整个果实生长和发育过程中,MdCTR1均以恒定水平表达,此后,转录产物的积累一直下降到商业收获,同时开始出现乙烯进化。

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