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Apple tree architecture and cultivation – a tree in a system

机译:苹果树建筑和耕种 - 在系统的一棵树

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摘要

A majority of works developed in apple tree architecture and physiology in past decades are based on trees grown in monocultivar high density orchards. Here we propose to connect knowledge on the tree itself with knowledge on the system in which it is grown. In the two cases, scientific advances are intrinsically connected with practical aspects. It is first shown that although whole-tree shape variability presents a descriptive interest it is not strictly related to the fruiting pattern which is a major issue for apple cultivation. Architectural analyses have been developed not only to gain knowledge on the dynamics of tree growth and branching but also to analyze thoroughly the physiological conditions for an optimized fruit-set, fruit quality and return-bloom. Shoot length and the physiological abortion of young shoots on the same branch (extinction) have been shown as two main components for regular yield and high quality fruiting. These architectural analyses have also been at the origin of an innovative pruning procedure, artificial spur extinction, developed under the paradigm of precision horticulture. It is implemented in various training systems. The sustainability of intensive apple growing systems is now questioned, especially because of their high dependency on external inputs whether phytosanitary products or fertilizers. Agroforestry, i.e., growing woody perennials and annuals in spatial mixtures or temporal sequences, is proposed as a means to reduce such dependencies. It uses plant biodiversity to enhance ecological services including multiple cropping. For apple, the social-economic acceptability and performance of such systems have certainly to be investigated. From the horticulture point of view, this new context challenges the choice of plant material and also of training and pruning concepts developed in intensive orchards. From the scientific point of view apple tree based agroforestry systems address architectural and physiological issues on how the apple tree can develop and fruit satisfactorily in such biotic and abiotic contexts.
机译:在过去几十年中,苹果树建筑和生理学中发展的大多数作品都是基于在Monocultivar高密度果园种植的树木。在这里,我们建议在树本身上与其生长的系统相关联。在这两种情况下,科学进步与实际方面有本质上。首先表明,虽然全树形变异性呈现了描述性兴趣,但它与苹果栽培的主要问题并不严格。已经制定了建筑分析,不仅是为了获得树木生长和分支的动态的知识,还开发了关于树木生长和分支的动态的知识,也是为了彻底分析优化的水果套装,水果质量和返回绽放的生理条件。幼苗在同一分支上的幼苗(消灭)的生理流产已被显示为常规产量和高质量的果实的两个主要成分。这些架构分析也在创新修剪程序的起源,在精密园艺的范式范围下开发的人工灭火程序。它是在各种培训系统中实现的。现在质疑密集型苹果生长系统的可持续性,特别是因为它们对外部输入的高依赖性是否植物检疫产品或肥料。建议制定农业店,即在空间混合物或时间序列中生长的木质多年生植物和年度,作为减少这种依赖性的手段。它使用植物生物多样性来增强生态服务,包括多次种植。对于Apple,这种系统的社会经济可接受性和表现肯定会被调查。从园艺的角度来看,这种新的背景挑战了植物材料的选择以及密集果园的培训和修剪概念。从科学观点来看,基于苹果树的农林制造系统地址苹果树如何在这种生物和非生物背景下令人满意地发展和生理问题。

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  • 作者

    P.É. Lauri;

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  • 年度 2019
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  • 原文格式 PDF
  • 正文语种 eng
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