Flowering and Non-flowering Spur Leaf Characteristics of 'Amasya' Apple and Its Comparison with Other Cultivars

A. Atay, E. Atay
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Abstract

Understanding the attributes of spur leaves in apple trees is essential to gain more insight into the complex process of fruit development and quality. However, limited literature is available about the spur leaf characteristics of the 'Amasya' apple cultivar. In this work, the Soil Plant Analysis Development (SPAD) and leaf area were investigated in flowering and non-flowering spur leaves of 'Amasya' and six common apple cultivars. Significant differences among cultivars were observed for the SPAD and spur leaf area. The median SPAD readings in 'Amasya' were 32.63 and 26.23 for the flowering and non-flowering spurs, respectively, which were the relatively low values among studied cultivars. The maximum SPAD value was measured in flowering spurs of 'Cripps Pink' (45.03). SPAD values were found to be lower in non-flowering spurs compared with flowering ones for all the studied cultivars, which confirms that decline in chlorophyll content coincided with a gradual decline in productivity. A notably significantly lower spur leaf area was found in 'Amasya', whereas the highest spur leaf area was in 'Cripps Pink'. However, no statistical difference was observed between flowering and non-flowering spur leaf areas within the same cultivars. The present results provided a general framework of SPAD and spur leaf areas in 'Amasya' and other apple cultivars when spurs had flowers or not. Knowledge of these characteristics provides a basis for building a model related to yield elaboration of apple trees.
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“阿玛西亚”苹果开花和不开花的棱叶特征及其与其他品种的比较
了解苹果直叶的性状对深入了解果实发育和品质的复杂过程具有重要意义。然而,关于“Amasya”苹果品种的直棱叶特征的文献有限。对“阿玛西亚”和6个普通苹果品种开花和不开花的直叶进行了土壤植物分析发育(SPAD)和叶面积的研究。不同品种间SPAD和直叶面积差异显著。开花和未开花品种的SPAD中值分别为32.63和26.23,是研究品种中较低的。SPAD值最大的品种是‘Cripps Pink’的开花骨刺(45.03)。所有品种的非开花骨刺SPAD值均低于开花骨刺,说明叶绿素含量的下降与产量的逐渐下降相一致。“Amasya”的距叶面积显著低于“Cripps Pink”,而“Cripps Pink”的距叶面积最高。而在同一品种中,开花和不开花的直叶面积之间无统计学差异。本研究结果提供了“阿玛西亚”和其他苹果品种在马刺开花或不开花时SPAD和马刺叶面积的总体框架。了解这些特性为建立与苹果树产量精细相关的模型提供了基础。
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