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首页> 外文期刊>Acta Physiologiae Plantarum >Detachment-accelerated ripening and senescence of strawberry (Fragaria x ananassa Duch. cv. Akihime) fruit and the regulation role of multiple phytohormones
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Detachment-accelerated ripening and senescence of strawberry (Fragaria x ananassa Duch. cv. Akihime) fruit and the regulation role of multiple phytohormones

机译:草莓(Fragaria x ananassa Duch。cv。Akihime)果实的分解加速成熟和衰老及多种植物激素的调控作用

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摘要

To study the detachment stress on the ripeness of strawberry fruit, physiological characteristics of strawberry fruit on and off plant during ripeness and senescence processes were investigated. The results indicated that the ripeness of strawberry fruit upon detachment was accelerated, in terms of firmness, soluble solid content and especially color development. The color of fruit off plant changed rapidly from white to full red in 1-2 days. The respiratory rate in fruit off plant was strengthened, higher than that on plant. Abscisic acid level and ethylene production in fruit off plant were also higher than those on plant and auxin degradation was exacerbated by detachment. Expression levels of FaMYB1, FabHLH3 and FaTTG1 were generally reduced with phenotypes of redder color and more anthocyanin accumulation in fruit off plant. Results also suggested that the detachment initially stimulated ethylene and abscisic acid production and auxin degradation, which modulated ripening-related gene expression and at last enhanced fruit pigmentation.
机译:为了研究草莓果实成熟时的脱落应力,研究了草莓果实在成熟和衰老过程中在植物体内外的生理特性。结果表明,从硬度,可溶性固形物含量,尤其是颜色发展方面来看,草莓果实分离后的成熟度得到了加速。 1-2天后,植物果实的颜色从白色迅速变为全红色。植株果实呼吸频率增强,高于植株。脱落果中的脱落酸水平和乙烯产量也高于植物上的脱落酸,并且离体加剧了生长素的降解。 FaMYB1,FabHLH3和FaTTG1的表达水平通常会随着发色的表型而降低,而花色苷在植物中的积累更多。结果还表明,这种脱离反应最初刺激了乙烯和脱落酸的产生以及植物生长素的降解,从而调节了成熟相关基因的表达,并最终增强了果实的色素沉着。

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