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首页> 外文期刊>HortTechnology >Effect of Irrigation Method on Tree Growth, Foliar Nutrient Levels, and Nut Characteristics of Young Pecan Trees in the Southern Great Plains
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Effect of Irrigation Method on Tree Growth, Foliar Nutrient Levels, and Nut Characteristics of Young Pecan Trees in the Southern Great Plains

机译:灌溉方法对南部大平原幼鱼树木生长,叶面养分水平和螺母特征的影响

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Although irrigation is a common practice in pecan (Carya illinoinensis) orchards, the effects of different methods of irrigation on young tree growth, nut quality, and nutrient uptake have not been estimated. Five irrigation systems and one nonirrigated control system were established. Tree performance was characterized by change in trunk diameter, weight per nut, average kernel percentage, and total trunk diameter growth. Nutrient uptake was determined by foliar levels. The five irrigation systems were a microsprinkler with a 35-ft diameter, a microsprinkler with a 70-ft diameter, two subsurface driplines irrigating for 2 days/week alternating between water for 2 hours and no water for 2 hours, two subsurface driplines irrigating 1 day/week for 20 hours continuously (LI2), and four subsurface driplines irrigating for 10 hours continuously for 1 day/week (LI4). Irrigation systems affected foliar levels of potassium (K), boron (B), and manganese (Mn) levels. Irrigation system did not affect change in trunk diameter or kernel percentage. A spatial Durbin error model was estimated to use trunk diameter estimates from all trees in the orchard. This model found the trunk diameters of nonirrigated and LI4 system trees to be significantly less than those trees that were irrigated by the LI2 system. When observations were pooled over all years, LI4 trees had individual pecan nut weights that were significantly less than all other systems.
机译:虽然灌溉是山核桃(Carya Intinoinensis)果园的常见做法,但尚未估计不同灌溉方法对幼树生长,螺母质量和营养吸收的影响。建立了五种灌溉系统和一个不静脉控制系统。树木表现的特点是躯干直径的变化,螺母的重量,平均核百分比和总干线直径增长。营养吸收由叶酸水平确定。五种灌溉系统是一种微薄的直径,一个具有70英尺直径的微生物生产机,两种次表面滴水导线灌溉2天/周在水之间交替2小时,没有水2小时,两次灌溉2小时,两次次表面拖鞋灌溉1日/周连续20小时(Li2),和四个地下手段灌溉10小时连续浸泡1天/周(LI4)。灌溉系统受叶酸(K),硼(B)和锰(MN)水平的叶酸水平。灌溉系统不会影响树干直径或内核百分比的变化。估计空间Durbin误差模型估计使用果园中所有树木的中继直径估计。该模型发现了非逗件和Li4系统树的躯干直径明显小于Li2系统灌溉的树木。当多年来汇集了观察时,Li4树具有单独的山核桃螺母重量,明显低于所有其他系统。

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