Aminoethoxyvinylglycine Reduces Preharvest Fruit Drop and Fruit Ethylene Evolution in ‘Red Delicious’ Apple but Affects Fruit Size and Quality Inconsistently

IF 1.5 3区 农林科学 Q2 HORTICULTURE Hortscience Pub Date : 2023-11-01 DOI:10.21273/hortsci17287-23
Anish Malladi, Krittika V. Tonapi, Thomas M. Kon
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Abstract

Aminoethoxyvinylglycine (AVG) is widely used in commercial apple ( Malus × domestica Borkh.) production to reduce preharvest fruit drop (PFD) and delay ripening for harvest management. Recently, the maximum allowable concentration of AVG was doubled (up to 264 mg⋅L −1 ). Reports of the relationship between the AVG concentration and fruit growth, size, and quality have been contradictory. We evaluated the relationship between the AVG concentration and PFD, fruit size, fruit quality, and expression of ethylene signaling-related and cell wall modification-related genes. Experiments were conducted in 2019 and 2020 using mature ‘Red Delicious’ in western North Carolina. The AVG treatments [0 and 132 (AVG-1x) and 264 mg⋅L −1 (AVG-2x)] were applied 3 weeks before the expected harvest. The AVG treatments reduced fruit drop and internal ethylene concentration relative to the control in both years. There was no difference in drop between AVG-1x and AVG-2x applications. Only in 2020 did AVG treatments delay fruit softening and starch hydrolysis and reduce soluble solids concentration. There were no effects on red fruit color development. Fruit size was unaffected by AVG in 2019, but it was reduced in 2020 with the AVG-2x application. AVG reduced ethylene synthesis and altered signaling, evidenced by decreased relative expression of genes related to ethylene signaling ( ARGOS1, ARGOS2 ). AVG applications also reduced the expression of EXPA8;1 , suggesting that reduced cell wall disassembly was associated with a reduction in fruit softening. These results indicate that preharvest applications of 132 mg⋅L −1 AVG effectively reduced PFD via altering ethylene evolution and signaling. Use of a higher AVG concentration was of limited benefit.
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氨基乙氧基乙烯基甘氨酸降低了“红鲜”苹果采前落果和果实乙烯演化,但对果实大小和品质的影响不一致
氨基乙氧基乙烯基甘氨酸(AVG)广泛应用于商品苹果(Malus × domestica Borkh.)生产中,以减少采前落果(PFD)和延迟成熟,为收获管理提供参考。最近,AVG的最大允许浓度增加了一倍,达到264 mg·L−1。关于AVG浓度与果实生长、大小和品质之间关系的报道是相互矛盾的。我们评估了AVG浓度与PFD、果实大小、果实品质以及乙烯信号相关基因和细胞壁修饰相关基因表达的关系。2019年和2020年在北卡罗来纳州西部进行了实验,使用的是成熟的“红美味”。在预期收获前3周施用AVG处理[0、132 (AVG-1x)和264 mg·L−1 (AVG-2x)]。与对照相比,AVG处理降低了果实落差和内部乙烯浓度。在AVG-1x和AVG-2x应用程序之间没有差异。仅在2020年,AVG处理延迟了水果软化和淀粉水解,并降低了可溶性固体浓度。对红色果实颜色发育无影响。2019年的果实大小不受AVG的影响,但在2020年使用AVG-2x后,果实大小减小了。AVG减少乙烯合成和改变信号,乙烯信号相关基因的相对表达减少(ARGOS1, ARGOS2)。AVG也降低了EXPA8的表达1,这表明细胞壁分解的减少与果实软化的减少有关。上述结果表明,采前施用132 mg⋅L−1 AVG通过改变乙烯演化和信号传导有效降低了PFD。使用较高的AVG浓度效果有限。
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来源期刊
Hortscience
Hortscience 农林科学-园艺
CiteScore
3.00
自引率
10.50%
发文量
224
审稿时长
3 months
期刊介绍: HortScience publishes horticultural information of interest to a broad array of horticulturists. Its goals are to apprise horticultural scientists and others interested in horticulture of scientific and industry developments and of significant research, education, or extension findings or methods.
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