首页> 外文期刊>Acta Horticulturae >Variation in plant and soil water relations among irrigated blueberry cultivars planted at two distinct in-row spacings.
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Variation in plant and soil water relations among irrigated blueberry cultivars planted at two distinct in-row spacings.

机译:以两个不同的行距种植的蓝莓灌溉品种之间的植物和土壤水分关系的变化。

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A study was conducted to determine the effect of in-row spacing on plant and soil water relations in 'Duke', 'Bluecrop', and 'Elliott' highbush blueberry (Vaccinium corymbosum L.) and to identify possible mechanisms that may enhance the ability of these cultivars to tolerate short-term soil water deficits. Changes in soil water content, stem water potential, and leaf stomatal conductance were measured 4 years after planting on well-irrigated plants of each cultivar spaced 0.5 or 1.2 m within rows on raised beds (~0.3 m high) and 3.0 m between rows. Irrigation (711 mm) was applied equally to all treatments by overhead sprinklers during the dry summer months from mid-May to early-September. Close spacing significantly reduced individual shoot dry weight, but also significantly increased crop light interception and water uptake from 0-0.6 m soil depth compared to plants spaced further apart. Spacing had little effect, however, on plant water relations. Independent of cultivar and spacing, stomatal conductance decreased rapidly as stem water potential approached -0.6 to -0.8 MPa. Among cultivars, 'Bluecrop' had the lowest rootmass and root:shoot dry weight ratio at either spacing, while 'Elliott' had the highest. 'Duke', however, produced the deepest root system, extracting a significant amount of water below 0.6 m when plants were closely spaced. 'Duke' also maintained, on average, higher stem water potentials and greater stomatal conductance than the other cultivars as soil water was depleted..
机译:进行了一项研究以确定行距对'Duke','Bluecrop'和'Elliott'高丛蓝莓(Vaccinium corymbosum L.)的植物与土壤水关系的影响,并确定可能增强该能力的机制这些品种可以忍受短期土壤缺水。在种植于高育床(行高约0.3 m)上行距0.5或1.2 m,行距3.0 m的每个品种的灌溉良好的植物上种植4年后,测量土壤水分,茎水势和叶片气孔导度的变化。在5月中旬至9月上旬的干燥夏季,所有头顶洒水装置均采用灌溉方式(711 mm)进行灌溉。与间隔较远的植物相比,紧密间距显着减少了个体枝干的重量,但也显着增加了从0-0.6 m土壤深度的作物对光的拦截和水分吸收。但是,间距对植物水的关系影响很小。与茎秆水势接近-0.6至-0.8 MPa时,气孔导度迅速下降,与品种和间距无关。在两个品种中,“ Bluecrop”的根质量和根:茎干重比最低,而“ Elliott”则最高。但是,“杜克”产生了最深的根系,当植物间隔很近时,会在0.6 m以下提取大量水。随着土壤水的枯竭,与其他品种相比,“杜克”平均还能保持更高的茎水势和更大的气孔导度。

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