首页> 外文期刊>AgroLife Scientific Journal >THE ECOPHYSIOLOGY OF CARBON IN FRUIT TREES: A DRIVER OF PRODUCTIVITY, A TOOL TO FACE CLIMATE CHANGE, A PRODUCER OF INNOVATION THAT CAN BECOME TOMORROW'S GROWING PARADIGM
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THE ECOPHYSIOLOGY OF CARBON IN FRUIT TREES: A DRIVER OF PRODUCTIVITY, A TOOL TO FACE CLIMATE CHANGE, A PRODUCER OF INNOVATION THAT CAN BECOME TOMORROW'S GROWING PARADIGM

机译:碳树中碳的生态生态学:生产力的驱动力,应对气候变化的工具,可以成为明天日益增长的范式的创新生产者

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The control of tree performance by exploiting the interactions of tree and environment is among the goals of ecophysiology. This discipline has accompanied genetic improvement of tree crops over the last half century, and has provided the scientific bases of orchard efficiency and productivity. High density plantings have their roots in the knowledge of the interactions between trees and incoming radiation. Pruning, thinning, water management and other cultural practices are based on similar knowledge. The continuing efforts in elucidating the relationships between environment and trees/tree parts are now focusing on organs such as the fruit, which is becoming an integrator of the plant’s well being: if fruit grow as expected (when measured precisely) they reveal/confirm a healthy status and proper management of the tree. Current knowledge on tree water relations, fruit development, and their determinants at the vascular level are paving the way for future innovation in the management of irrigation, that will allow to better tailor water restitution to the tree needs on a daily, instead of a seasonal, scale. Similarly, knowledge of the complex relationships between incoming light and tree performance promises to allow to maintain orchard productivity and quality while consuming less water. The role ecophysiology can play to offset climate change stems, along with the benefits deriving by a smarter use of renewable resources leading to a smaller water print and energy uptake, also from the capacity that orchards have to sequester Carbon. There is a growing body of knowledge that is amenable to innovation transfer and technological uptake, which will likely form the backbone of precision fruit growing, which will in turn allow to gauge and control in real time the development of the crop, giving the grower the possibility to change his/her management according to the actual orchard needs.
机译:通过利用树木和环境的相互作用来控制树木的性能是生态生理学的目标之一。在过去的半个世纪中,该学科伴随着林木作物的遗传改良,并提供了果园效率和生产力的科学基础。高密度种植植根于树木与入射辐射之间相互作用的知识。修剪,间伐,水管理和其他文化习俗都基于类似的知识。阐明环境与树木/树木部分之间关系的持续努力现在集中在诸如水果之类的器官上,该器官正成为植物健康的重要组成部分:如果果实按预期生长(精确测量时),它们就会揭示/确认果实。树的健康状况和适当管理。当前有关树木水关系,果实发育及其在血管水平上的决定因素的知识为灌溉管理方面的未来创新铺平了道路,这将使每天(而不是季节性)更好地根据树木需求量调水,规模。同样,对入射光和树木性能之间复杂关系的了解有望使果园的生产力和质量保持不变,同时消耗更少的水。生态生理学可以起到抵消气候变化影响的作用,以及通过更明智地使用可再生资源而导致的收益,从而减少水的消耗和能源的吸收,以及果园必须吸收碳的能力。不断增长的知识适于创新转让和技术采用,这很可能构成精密水果种植的主干,从而反过来可以实时衡量和控制农作物的生长,从而为种植者提供根据果园的实际需要更改其管理的可能性。

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