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The role of branch architecture in assimilate production and partitioning: the example of apple (Malus domestica)

机译:分支机构在同化生产和分区中的作用:以苹果(Malus domestica)为例

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摘要

Understanding the role of branch architecture in carbon production and allocation is essential to gain more insight into the complex process of assimilate partitioning in fruit trees. This mini review reports on the current knowledge of the role of branch architecture in carbohydrate production and partitioning in apple. The first-order carrier branch of apple illustrates the complexity of branch structure emerging from bud activity events and encountered in many fruit trees. Branch architecture influences carbon production by determining leaf exposure to light and by affecting leaf internal characteristics related to leaf photosynthetic capacity. The dynamics of assimilate partitioning between branch organs depends on the stage of development of sources and sinks. The sink strength of various branch organs and their relative positioning on the branch also affect partitioning. Vascular connections between branch organs determine major pathways for branch assimilate transport. We propose directions for employing a modeling approach to further elucidate the role of branch architecture on assimilate partitioning.
机译:了解分支机构在碳生产和分配中的作用对于深入了解果树中同化物分配的复杂过程至关重要。这篇小型综述报告了有关分支机构在苹果碳水化合物生产和分配中作用的最新知识。苹果的一阶载体分支说明了芽活动事件中出现并在许多果树中遇到的分支结构的复杂性。分支结构通过确定叶片暴露于光下并影响与叶片光合能力有关的叶片内部特性来影响碳的产生。分支器官之间同化物分配的动力学取决于源和汇的发育阶段。各个分支器官的下沉强度及其在分支上的相对位置也会影响分区。分支器官之间的血管连接决定了分支同化物运输的主要途径。我们提出采用建模方法的方向,以进一步阐明分支体系结构在同化分区上的作用。

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