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Control of Fruit Tree Vigor Induced by Dwarfing Rootstocks

机译:侏儒砧木诱导果树活力的控制

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Grafting of fruit trees has been practiced for more than two millennia, and dwarfing rootstocks have been used to control scion vigor for several centuries. The fact that most commercial temperate fruit trees are compound plants composed of two separate genotypes (the scion selected for fruit and shoot characteristics, and the rootstock selected for root characteristics) makes them interesting objects for studying root-shoot interactions in plants. The size-controlling effect of certain rootstocks invarious fruit tree species is perhaps the most intriguing and commercially important example of how genetics of one part (the root) of compound plants can influence the behavior of the other part (the shoot). While there is no debate about the potentialof rootstocks to affect the growth and productivity of the scion in compound fruit trees, there is no consensus on the physiological and/or anatomical mechanisms involved in the dwarfing phenomenon. Indeed, different hypotheses focusing on various aspects of plant function have been proposed to explain the dwarfing mechanism.This review discusses the concepts and the experimental support for six of the primary theories proposed to explain the dwarfing mechanism induced by root-stocks in fruit trees. These theories are based on the idea that dwarfing is caused by semi-incompatibility between the rootstock and scion or anatomical, morphological, or physiological characteristics of the rootstock or graft union that affect tree water relations, tree nutrition, scion-rootstock hormonal and metabolicsignaling, carbohydrate storage and mobilization, and/or the relative abilities of the scion and rootstock components of the tree to compete for resources.Each of the proposed theories has received some experimentally based support in selected crops. Scion-rootstock semi-incompatibility is a general mechanism that may be involved in many scion-rootstock combinations and could cause responses that appear toinvolve the factors common to the other theories. None of the theories have been documented to be involved in all rootstock-scion combinations or to be solely responsible for the dwarfing response of scions associated with specific rootstocks. However,there is good evidence that changes in water relations are related to the dwarfing response in several species. In retrospect, it is perhaps unrealistic to think that any single one of these or other mechanisms could be solely responsible for orchestrating all of the complex interactions involved in rootstock-induced vigor reduction of the scion.
机译:果树嫁接已经实施了超过两千年,而矮砧座已被用来控制若干几个世纪的舞会活力。大多数商业温带果树是由两种单独的基因型组成的复合植物(选择用于果实和射击特性的清晰度,并且为根特征选择的砧木)使其成为研究植物中的根枝相互作用的有趣物体。某些砧木的尺寸控制效果是最有趣的果树种类是最有趣的和商业上的一种重要例子,即复合植物的一部分(根)的遗传如何影响另一部分(芽)的行为。虽然没有关于砧木的争论,以影响复合果树中的枝条的生长和生产力,但对矮化现象中涉及的生理和/或解剖机制没有达成共识。实际上,已经提出了针对植物功能的各个方面的不同假设来解释矮化机制。本综述讨论了六种主要理论的概念和实验支持,提出的六种主要理论,以解释果树中的根股诱导的矮化机制。这些理论是基于侏儒,砧木与砧木或移植联盟的解剖学,形态学或生理特征之间的半不相容,影响树水关系,树营养,幼苗 - 砧木激素和代谢性,碳水化合物的储存和动员,以及树和树的砧木组分的相对能力,以竞争资源。拟议的理论已在选定作物中得到一些实验基础的支持。 SCION-rootock半不相容是一种可以参与许多曲砧组合的一般机制,并且可能导致响应出现致致致致责任对其他理论共同的因素。已记录任何理论都没有涉及所有rootstock-scion组合或仅对与特定砧木相关的间隙的矮化响应仅负责。然而,有良好的证据表明水关系的变化与几种物种的矮化反应有关。回想起来,认为这些或其他机制中的任何一个单独的一个或其他机制都可以单独负责串行诱导的活力减少的所有复杂相互作用,这是不现实的。

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