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High tunnel cultivation of sweet cherry (Prunus avium L.): physiological and production variables

机译:甜樱桃(Prunus Avium L.)的高隧道栽培:生理和生产变量

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摘要

Use of high tunnels in sweet cherry production is a popular way to reduce rain-induced fruit cracking. However, little information is available for its effects on tree physiology and fruit quality in established sweet cherry orchards. The aim of this study was to evaluate changes in the physiological and production variables of sweet cherry under high tunnels in a Mediterranean type climate in the Central Valley of Chile (35 degrees 1' S, 71 degrees 32' W). In 2017, a trial was conducted in a commercial orchard with the early and highly - productive cultivar combination of 'Royal Dawn' on 'MaxMa 14'. Trees were trained as a Y-trellis, spaced at 4.5 x 2.0 m and drip irrigated with four emitters (each emitter of 4 L h(-1)) per tree. Two treatments of five blocks per treatment were imposed. Treatments were 'covered' = trees under multi-bay Haygrove (R) high tunnels and 'open' = trees under open field conditions (control). The average value of g(s) increased during fruit development but the values under cover were generally 30% higher than in the open. Full bloom occurred 4 days earlier under cover and fruit was harvested 8 days earlier than that in the open and yields were similar (15 kg tree(-1)). Trees under high tunnels received 20% less amount of water than uncovered trees. There were no differences in fruit quality from different canopy layers. Significantly less cracking losses (3%) were observed in covered trees compared with open (19%). No differences in the ratio of leaf area to fruit number (193 cm(2) fruit(-1)) were found between covered and open trees but fruit from covered trees were larger, less sweet and softer in firmness than that from trees in the open. These altered fruit quality attributes should be improved in relation to the target market and the associated requirements for transport and storage. Results indicate that the use of high tunnels for 'Royal Dawn' on 'MaxMa 14' sweet cherry production, in a Mediterranean type climate, reduces susceptibility to rain-induced cracking, advances the time of harvest and increases fruit size.
机译:在甜樱桃生产中使用高隧道是一种减少雨水诱导的水果裂缝的流行方式。然而,在建立的甜樱桃果园中,少量信息可用于其对树生理学和水果质量的影响。本研究的目的是评估在智利中央山谷的地中海型气候下的高隧道下甜樱桃的生理和生产变量的变化(35度,71度32'W)。 2017年,一项试验在商用果园中进行了“皇家黎明”在“Maxma 14”中的早期和高效的品种。树木被训练为y-grellis,每棵树用四个发射器(每个发射器为4 l H(-1))滴灌的滴水。施加了每次治疗的两种嵌段的两种治疗。治疗是“覆盖”=在多湾隼草(R)高隧道下的树木和“打开”=在开放场条件下的树木(控制)。在果实发育过程中G(S)的平均值增加,但盖子下的值通常比开放式高30%。全绽放发生在盖子前4天,覆盖物和果实的收获量早于开放,产量相似(15公斤(-1))。高隧道下的树木比未染树收到20%的水量。不同的遮篷层的果实质量没有差异。与开放(19%)相比,在覆盖树上观察到显着降低的破裂损失(3%)。在覆盖和开阔的树木之间发现了叶面积与果实数量的比例(193cm(2)水果(-1)),但覆盖树木的果实比从树上的果实更大,更甜,更甜,更柔软打开。这些改变的果实质量属性应与目标市场的相关性和运输和储存的相关要求得到改进。结果表明,在地中海型气候中,使用高隧道'Maxma 14'甜樱桃生产中的“皇家曙光”,减少了对雨雨诱导的裂缝的易感性,提高了收获的时间,提高了果实尺寸。

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