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首页> 外文期刊>Journal of Plant Physiology >Does the microclimate under hail nets influence micromorphological characteristics of apple leaves and cuticles?
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Does the microclimate under hail nets influence micromorphological characteristics of apple leaves and cuticles?

机译:冰雹网下的微气候会影响苹果叶片和角质层的微形态特征吗?

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A higher frequency of hail storms, possibly due to climate change, has led to increased installation of hail nets worldwide. The objective of the present work was to investigate potential effects of the microclimate under these hail nets on micromorphological characteristics of the leaves and adaxial leaf cuticles. Leaves of apple cultivars 'Pinova' and 'Fuji' grown on trees under white (highly translucent) or red-black (low transmittance) hail nets or on uncovered (control) trees were evaluated in June, August, September and October. The microclimate under the colored hail nets had no impact on leaf micromorphology, amount of cuticular wax, or leaf thickness. Similarly, no differences in thickness and permeability for calcium could be established between cuticles of leaves grown on trees under the two types of hail nets or uncovered trees. For all evaluated parameters, significant differences were detected between the two cultivars examined. In both cultivars, leaf wax synthesis followed a characteristic curve, increasing from the first to the second evaluation, and then decreasing continuously without affecting cuticular penetration of calcium. Overall, our results show that a reduction of the hail nets by 6-10% in both light and humidity was insufficient to influence the surface properties of apple leaves and permeability of cuticles. This may suggest that pest management strategies, i.e. formulation of agrochemicals, their application and dose, do not need to be adapted when used under hail nets. Overall, the present results indicate that the microclimatic changes brought about by colored hail nets are sufficient to enhance the vegetative growth and induce the 'shade avoidance syndrome', but do not appear to affect the leaf cuticular properties
机译:冰雹暴的发生频率较高,可能是由于气候变化所致,导致全世界冰雹网的安装增加。本工作的目的是研究在这些雹网下的微气候对叶片和叶片表皮的微观形态特征的潜在影响。在6月,8月,9月和10月评估了在白色(高半透明)或红黑(低透射率)冰雹网下或未覆盖(对照)树上生长的苹果品种'Pinova'和'Fuji'的叶子。有色冰雹网下的小气候对叶片的微观形态,表皮蜡含量或叶片厚度没有影响。类似地,在两种类型的冰雹网或未覆盖的树下的树木上生长的叶子的角质层之间,钙的厚度和渗透性没有差异。对于所有评估的参数,在检测的两个品种之间检测到显着差异。在两个品种中,叶蜡合成均遵循特征曲线,从第一次评估到第二次评估增加,然后连续降低,而不会影响钙的表皮渗透。总体而言,我们的结果表明,在光照和湿度下冰雹网减少6-10%不足以影响苹果叶片的表面特性和角质层的渗透性。这可能表明,在冰雹网下使用时,无需调整害虫管理策略,即农药的配方,其应用和剂量。总体而言,目前的结果表明,有色冰雹网引起的微气候变化足以增强营养生长并诱发“避荫综合症”,但似乎并未影响叶片的表皮特性。

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