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Early-season Production of Grafted Seedless Cucumbers in High Tunnels

机译:早期生产嫁接无籽黄瓜在高隧道中

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摘要

Seedless cucumber (Cucumis sativus) is a popular and high-value crop found in many local food markets. Worldwide, it is the third most important high tunnel crop after tomato (Solanum lycopersicum) and pepper (Capsicum annuum). One challenge of growing seedless cucumbers in high tunnels is low soil temperatures in the early season that suppress plant growth even when air temperatures would be adequate. Grafting cucumbers to enhance crop tolerance to suboptimal temperature stresses has been widely used in Asian countries. However, little information is available in the United States about graft compatibility, cold hardiness, and seasonal extension potential of growing grafted seedless cucumbers in high tunnels. In this study, we tested the effects of grafting with two winter squash (Cucurbita moschata) rootstocks ('Titan' and 'Marvel') on vegetative growth and yield of three seedless cucumbers ('Excelsior' pickling cucumber, 'Socrates' Beit Alpha cucumber, and 'Taurus' long-type cucumber) in the spring seasons of 2016 and 2017 in high tunnels located in U.S. Department of Agriculture (USDA) hardiness zone 6. Nongrafted plants were included as controls. All grafted plants survived the suboptimal temperature stress during transplant period, whereas 59% of nongrafted plants died in the 2016 season. Irrespective of rootstock and cucumber cultivar, vine growth rates of nongrafted cucumbers in April of both years were lower than those of the grafted crops. Cucumber cultivars Excelsior and Taurus grafted onto Marvel winter squash rootstock had higher yields in May 2016 compared with the yields of the nongrafted plants in the same month. The enhanced early-season yields of grafted plants were observed on cucumber cultivars Excelsior and Socrates in 2017 regardless of rootstocks. Grafting also increased the entire season's yields of the three cucumber cultivars in 2017, but not in 2016. More comprehensive evaluations about cold tolerances of newly released cucumber rootstocks are needed. Further studies are also warranted to improve our understanding of effects of rootstock and scion interactions on cucumber growth and yield in high tunnel production.
机译:无籽黄瓜(Cucumis sativus)是一种受欢迎的高价值作物,在许多当地食品市场都能找到。在全世界范围内,它是仅次于番茄(茄属番茄)和辣椒(辣椒)的第三大重要的高产作物。在高隧道中种植无籽黄瓜的一个挑战是,在早期季节土壤温度较低,即使空气温度足够时,也会抑制植物生长。嫁接黄瓜以提高作物对次优温度胁迫的耐受性已在亚洲国家得到广泛应用。然而,在美国,关于嫁接兼容性、抗寒性以及在高隧道中种植嫁接无籽黄瓜的季节性扩展潜力的信息很少。在这项研究中,2016年和2017年春季,我们在美国农业部(USDA)耐寒区6的高隧道内测试了两种西葫芦(Cucurbita moschata)砧木(“Titan”和“Marvel”)嫁接对三种无籽黄瓜(“Excelsior”腌制黄瓜、“Socrates”Beit Alpha黄瓜和“Taurus”长型黄瓜)营养生长和产量的影响。非嫁接植物作为对照。所有嫁接植株在移植期间都能经受住次优温度胁迫,而59%的非嫁接植株在2016年季节死亡。无论是砧木还是黄瓜品种,在这两年的4月份,非嫁接黄瓜的葡萄生长率都低于嫁接作物。2016年5月,嫁接到漫威冬瓜砧木上的黄瓜品种Excelsior和Taurus的产量高于同期未嫁接植株的产量。2017年,在黄瓜品种Excelsior和Socrates上观察到,无论砧木如何,嫁接植株的早期产量都有所提高。2017年,嫁接也提高了三个黄瓜品种的整个季节产量,但2016年没有。需要对黄瓜新砧木的耐寒性进行更全面的评价。进一步的研究也有助于我们更好地理解在高产条件下砧木和接穗相互作用对黄瓜生长和产量的影响。

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