首页> 外文期刊>Annals of Botany >Insights into secondary growth in perennial plants: its unequal spatial and temporal dynamics in the apple (Malus domestica) is driven by architectural position and fruit load.
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Insights into secondary growth in perennial plants: its unequal spatial and temporal dynamics in the apple (Malus domestica) is driven by architectural position and fruit load.

机译:多年生植物次生生长的见解:苹果(Malus domestica)在空间和时间上的不均等动力学受建筑位置和果实负荷的驱动。

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BACKGROUND AND AIMS: Secondary growth is a main physiological sink. However, the hierarchy between the processes which compete with secondary growth is still a matter of debate, especially on fruit trees where fruit weight dramatically increases with time. It was hypothesized that tree architecture, here mediated by branch age, is likely to have a major effect on the dynamics of secondary growth within a growing season. METHODS: Three variables were monitored on 6-year-old 'Golden Delicious' apple trees from flowering time to harvest: primary shoot growth, fruit volume, and cross-section area of branch portions of consecutive ages. Analyses were done through an ANOVA-type analysis in a linear mixed model framework. KEY RESULTS: Secondary growth exhibited three consecutive phases characterized by unequal relative area increment over the season. The age of the branch had the strongest effect, with the highest and lowest relative area increment for the current-year shoots and the trunk, respectively. The growth phase had a lower effect, with a shift of secondary growth through the season from leafy shoots towards older branch portions. Eventually, fruit load had an effect on secondary growth mainly after primary growth had ceased. CONCLUSIONS: The results support the idea that relationships between production of photosynthates and allocation depend on both primary growth and branch architectural position. Fruit load mainly interacted with secondary growth later in the season, especially on old branch portions.
机译:背景与目的:次生生长是主要的生理来源。然而,与次生生长竞争的过程之间的层次关系仍是一个争论的问题,尤其是在果树上,果树的重量随着时间而急剧增加。据推测,这里的树木结构可能受树枝年龄的影响,可能会对生长季节内次生生长的动态产生重大影响。方法:从开花期到收获期,对6岁的“金冠”苹果树进行了三个变量的监测:初生芽生长,果实体积和连续年龄的分支部分的横截面积。通过线性混合模型框架中的ANOVA类型分析进行分析。关键结果:次生生长表现出三个连续的阶段,其特征是整个季节的相对面积增加不相等。分枝的年龄影响最强,当年芽和树干的相对面积增量分别最高和最低。生长阶段的影响较小,整个季节的次生生长从叶状枝条转移到较老的分支部分。最终,水果负荷主要在初级生长停止后才对次级生长产生影响。结论:结果支持这样的观点,即光合产物的生产与分配之间的关系取决于初级生长和分支结构位置。果实负荷主要与季节后期的次生生长相互作用,特别是在老枝部分。

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