吲哚-3-丁酸替代GA3提高鲜食葡萄果穗品质。优质无核

Maria Beatriz Pugliese, Yanina Guzmán, Daniela Pacheco, R. Bottini, C. Travaglia, J. Avenant, E. Avenant, F. Berli
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摘要

赤霉素酸(GA3)是最广泛使用的植物生长调节剂,用于使无籽鲜食葡萄变细串和增大果实大小,但有证据表明它的负面影响,包括生育力丧失和轴畸形。本研究分析了生长素吲哚-3-丁酸(IBA)作为一种新型替代品对葡萄果实产量、果束结构、解剖结构和采后品质的影响。优越的无核。在两个生长季节的试验中,比较了不同物候阶段(15 cm茎长、开花、坐果和豌豆大小的果实)和剂量(2、20和50 ppm) IBA和GA3的施用情况。在盛花期或坐果期喷施IBA,通过增加果实的大小和重量来改善串重,并与促进轴维管组织相关。用IBA处理的束在收获时保留了更多的浆果数量而没有产生致密,因为轴节间和侧肩的伸长也得到了促进。此外,IBA通过减少轴褐变和增加浆果硬度来提高串的采后品质。这些结果表明,利用IBA是改善无核葡萄果穗结构和品质的有益技术。重点评价了不同剂量和不同物候阶段siba的作用。IBA在开花和结实时改善了束重和浆果重量和浆果大小。在花期和坐果期,每串浆果的数量随着IBA的增加而增加。IBA通过促进维管组织增加了侧肋节间和侧肋长度。IBA可提高果实采后品质,减少果实轴褐变,提高果实硬度。
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Indole-3-butyric acid, an alternative to GA3 for bunch quality enhancing of table grape Vitis vinifera L. cv. Superior Seedless
Gibberellic acid (GA3) is the most widely used plant growth regulator to thin out bunches and increase berry size in seedless table grapes, but there is evidence of its negative effects, including loss of fertility and malformations of the rachis. This study analyses the effects of applying the auxin indole-3-butyric acid (IBA), as a novel alternative, on fruit yield, bunch structure, anatomy and postharvest quality of cv. Superior Seedless. The application of IBA and GA3 at different phenological stages (15 cm shoot length, full bloom, fruit set and pea-size berry) and doses (2, 20 and 50 ppm) were compared in a two-growing season experiment. Spraying IBA at full bloom or fruit set, improved bunch weight by increasing the size and weight of the berries, correlating with the promotion of rachis vascular tissues. Bunches treated with IBA retained a greater number of berries at harvest without generating compactness, since the elongation of the rachis internodes and lateral shoulders were also promoted. In addition, IBA augmented postharvest quality of bunches by reducing rachis browning and increasing berry firmness. These results suggest that the use of IBA is a beneficial technology to improve bunch structure and quality in seedless grapes. Highlights IBA effects applied at different dosages and phenological stages was evaluated. IBA at full bloom and fruit set improved bunch and berry weight and berry size. The number of berries per bunch increased with IBA at full bloom and fruit set. IBA increased lateral rachis internode and lateral rachis length via promotion of vascular tissues. IBA increased postharvest quality, reduced rachis browning and increased of berry firmness.
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