首页> 外文期刊>Annals of Botany >Benzylaminopurine application on two different apple cultivars (Malus domestica) displays new and unexpected fruitlet abscission features
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Benzylaminopurine application on two different apple cultivars (Malus domestica) displays new and unexpected fruitlet abscission features

机译:苄基氨基嘌呤在两种不同苹果品种上的应用(家蝇)显示出新的和出乎意料的小果脱落特性

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Background and Aims It has been previously shown that abscission of apple fruitlets is preceded by an increase in ethylene evolution and in the amount of transcripts for 1-amin ocyclopropane-1-carboxyl ate oxidase (ACO), an enzyme catalysing the final step in ethylene biosynthesis. These events are concomitant with shedding induction and chemical thinning. There are several thinners but their mode of action and efficacy is poorly understood. One of them is benzylaminopurine (BA), a cytokinin believed to act by enhancing vegetative activity and stressing the competition between shoots and fruitlets, thus leading to fruitlet shedding. Nevertheless, the specific mechanism of action of BA and the variable effect depending on apple cultivar (easy or difficult to thin) are poorly understood. Methods Abscission, the amount of MMdACOI transcripts and other parameters were followed in immature apple fruits during the period of physiological drop. The cultivars studied were 'Golden Delicious' and the 'spur' type 'Red Delicious'. BA was used as a thinning agent and was sprayed 14 d after petal fall (DAPF). Fruitlets were divided into central (C) and lateral (L) fruitlet populations. Key Results Fruitlet size was significantly different between C and L fruitlets but it did not differ much between the populations within the same cultivar. C fruitlets were characterized by basal ethylene evolution while L fruitlets displayed an increase in hormone biosynthesis during abscission induction. Cluster composition evaluated by the L/C ratio differed in the two varieties, being almost unchanged throughout abscission induction in 'Golden Delicious' and progressively decreasing in 'Red Delicious'. Shoot growth activity evaluated at the end of the season indicated a possible connection with both the ongoing abscission and BA application. MDACOI transcripts were mainly detected in L fruitlets and the accumulation was related to total abscission in 'Golden Delicious', while in 'Red Delicious' expression was observed in both C and L fruitlets. Conclusions BA probably exerts its thinning effect through vegetative growth. In the 'spur' type 'Red Delicious' the chemical is ineffective, probably due to a limited action on shoot growth due to genetic characteristics. The amount of MdACOI transcripts in seeds is a good indicator of abscission.
机译:背景和目的以前的研究表明,苹果小果脱落之前,乙烯进化和1-氨基环丙烷-1-羧酸酯氧化酶(ACO)的转录物数量增加,该酶催化乙烯的最后一步生物合成。这些事件伴随着脱落感应和化学减薄。有几种稀释剂,但对它们的作用方式和功效知之甚少。其中之一是苄基氨基嘌呤(BA),一种细胞分裂素,据信通过增强植物的营养活性并增强枝条和小果之间的竞争而起作用,从而导致小果脱落。然而,对BA的具体作用机理和取决于苹果品种(易变薄或难变稀薄)的不同作用的了解还很少。方法对未成熟苹果果实生理下降期的脱落,MMdACOI转录本数量及其他参数进行追踪。研究的品种为“金冠”和“马刺”型“红冠”。 BA用作稀释剂,花瓣掉落(DAPF)后14 d喷涂。将小果分为中央(C)和侧(L)小果种群。关键结果C和L型小果实的小果实大小差异显着,但同一品种的种群之间的差异不大。 C类水果的特征在于基础乙烯的进化,而L类水果在脱落诱导过程中显示出激素生物合成的增加。通过L / C比评估的簇组成在两个品种中有所不同,在“金美味”中的整个脱落诱导中几乎没有变化,而在“红色美味”中的逐渐减少。在季节结束时评估的枝条生长活性表明与正在进行的脱落和BA施用都可能相关。 MDACOI转录物主要在L小果中检测到,其积累与“金冠果”中的总脱落有关,而在C和L小果中均观察到“ Red Delicious”的表达。结论BA可能通过营养生长发挥减薄作用。在“刺激”型“红色美味”中,该化学物质无效,可能是由于遗传特性对芽生长的作用有限。种子中MdACOI转录物的量是脱落的良好指示。

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