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首页> 外文期刊>Horticulture research. >Gibberellic acid induced parthenocarpic ‘Honeycrisp’ apples ( Malus domestica ) exhibit reduced ovary width and lower acidity
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Gibberellic acid induced parthenocarpic ‘Honeycrisp’ apples ( Malus domestica ) exhibit reduced ovary width and lower acidity

机译:赤霉酸诱导的疗神病患者(Malus domestica)表现出降低的卵巢宽度和较低的酸度

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摘要

Fruit set and development are dependent on auxin, gibberellin, and cytokinin, which cause parthenocarpic development in many species when applied ectopically. Commercial sprays containing these hormones are used to improve apple fruit set, size, and shape, but have been implicated negatively in other aspects of fruit quality. We applied gibberellic acid (GA3), synthetic auxin (NAA), and the auxin-transport inhibitor NPA to ‘Honeycrisp’ apple flowers. Fruit retention and size were quantified throughout development, and seed number and fruit quality parameters were measured at maturity. GA3 alone caused the development of seedless parthenocarpic apples. At maturity, GA3-treated apples were narrower due to reduced ovary width, indicating that GA3 induced normal growth of the hypanthium, but not the ovary. GA3-treated fruits were also less acidic than hand-pollinated controls, but had similar firmness, starch, and sugar content. To further understand the regulation of parthenocarpy, we performed tissue-specific transcriptome analysis on GA3-treated, NAA-treated, and control fruits, at 18 days after treatment and again at maturity. Overall, transcriptome analysis showed GA3-treated and hand-pollinated fruits were highly similar in RNA expression profiles. Early expression differences in putative cell division, cytokinin degradation, and cell wall modification genes in GA3-treated ovaries correlated with the observed shape differences, while early expression differences in the acidity gene Ma1 may be responsible for the changes in pH. Taken together, our results indicate that GA3 triggers the development of parthenocarpic apple fruit with morphological deviations that correlate with a number of candidate gene expression differences.
机译:水果套和发展依赖于植物素,嗜酸甘油蛋白和细胞素素,其在不同施用时在许多物种中导致占性病发育。含有这些激素的商业喷雾剂用于改善苹果果实套装,尺寸和形状,但在果实质量的其他方面致力于含铅。我们应用甘草酸(GA3),合成毒素(NAA),以及蟾蜍素转运抑制剂NPA至“蜂蜜克里斯普”苹果花。在整个发育中量化果实保留和尺寸,并在成熟时测量种子数和果实质量参数。 GA3单独引起了无籽舱蛋白苹果的发展。在成熟时,由于卵巢宽度降低,GA3处理的苹果较窄,表明GA3诱导乳花物的正常生长,但不是卵巢。 GA3处理的水果也比手授粉对照较低,但具有相似的坚定性,淀粉和糖含量。为了进一步了解治疗,在治疗后18天和在成熟度后的18天对GA3处理,NAA处理和对照水果进行组织特异性转录组分分析。总体而言,转录组分析显示GA3处理,并且在RNA表达谱中的手工授粉果实高度相似。预定的细胞分裂,细胞分裂素劣化和细胞壁改性基因的早期表达差异与观察到的形状差异相关,而酸性基因MA1的早期表达差异可能是pH的变化负责。我们的结果表明,GA3触发了单位细胞苹果果的发展,其形态偏差与许多候选基因表达差异相关。

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