猕猴桃和橄榄树的人工授粉

T. Gianni, Michelotti Vania
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引用次数: 12

摘要

近10年来,猕猴桃藤人工授粉已成为提高果实品质的一种普遍做法。猕猴桃的大小与种子的数量成正比,即与受精子房的数量成正比。然而,人工授粉的效率取决于许多参数,如花粉质量(萌发性、湿度和保存)、授粉系统(干燥或液体)、辅助剂和开花阶段。在最近的研究中,这些参数在猕猴桃属中得到了很好的定义,但在其他风媒授粉树木如橄榄树、榛子、开心果和棕榈树中仍未得到明确的定义。在这些植物中,花很小,而且非常多,因此传粉很难研究。此外,还存在遗传和物理上的不亲和性因素,传粉到受精的交接点时间长,交变结果,经济效益低,农艺投入少,田间创新水平低。这些都减少了授粉技术在这些栽培中的应用。在猕猴桃上开发的经验导致定义了一种新的模式作物果实集,可以应用于风传粉植物,如橄榄树,其果实集低于2%。最初的经验显示出巨大的潜力,并鼓励了这项技术的发展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Artificial Pollination in Kiwifruit and Olive Trees
In the last 10 years, kiwifruit vine artificial pollination became a widespread practice useful to increase fruit quality. Kiwifruit size is directly proportional to the number of seeds, i.e., to the number of fertilized ovaries. However, artificial pollination efficiency depends on many parameters such as pollen quality (germinability, humidity, and conservation), pollination system (dry or liquid), coadjuvants, and flowering stage. Those parameters were well defined in Actinidia in recent studies, however, they remain quite undefined for other anemophilous pollinated trees such as olive tree, hazelnut, pistachio, and palm. In these plants, the flowers are very small and extremely numerous, so the pollination was difficult to study. In addition, there are incompatibility factors (genetic and physic), long lap time from pollination to fertilization, and alternate bearing, lower economic gain for these fruits, low agronomic input, and low innovation level in the field. All these aspects had reduced the application of pollination technique for these cultivations. The experiences developed in kiwifruit lead to define a new model crop fruit set that could be applied to anemophilous pollinated plants such as olive tree, where the fruit set are lower than 2%. The first experiences have shown a great potential and have encouraged the development of this technique.
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