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首页> 外文期刊>HortTechnology >Influence of Plant Density and Cultivar on Mini Triploid Watermelon Yield and Fruit Quality.
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Influence of Plant Density and Cultivar on Mini Triploid Watermelon Yield and Fruit Quality.

机译:植物密度和品种对微型三倍体西瓜产量和品质的影响。

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摘要

Mini triploid (seedless) watermelons (Citrullus lanatus) are a growing segment of the U.S. watermelon market due to their small, one-serving size. Although mini triploid watermelons were first released and commercially grown about 6 years ago, little information is available for optimum planting densities that are needed to achieve the greatest percentage of marketable fruit in the 3- to 8-lb range. In 2006 and 2007, the fruit grade distribution response to six plant densities (2489, 3111, 4149, 6223, 8297, and 12,446 plants/acre) of four mini watermelon cultivars (Betsy, Petite Treat, Valdoria, and Vanessa) was measured at the Southern Illinois University Horticulture Research Center in Carbondale. 'SP-1' was used as the in-row pollenizer at 25% of the total planting. Although all cultivars responded similarly to the plant densities evaluated, 'Vanessa' provided the greatest fruit number and weight per acre, and percentage of fruit in the mini grade, compared with the other cultivars. Marketable mini triploid watermelon yield dramatically increased with closer in-row spacings. At lower plant densities (wider in-row spacings), a greater proportion of icebox-sized fruit (>8 lb) was produced, and the amount of marketable, mini-sized fruit (3-8 lb) declined. The grade distribution of mini triploid watermelon numbers and weights were the greatest at the highest plant density evaluated [0.5 ft in-row spacing (12,446 plants/acre)], with about 80% of the total yield in the mini grade. The greatest net revenues were also obtained at this high density. This study indicated that it is critical for producers of mini triploid watermelons to recognize the dramatic impact that plant density has on marketable fruit yield (3-8 lb). Growers of mini triploid watermelons will see a drastic improvement in revenues with closer in-row spacings compared with the approximate 2 ft in-row spacings currently used (about 4000 plants/acre). The increased cost of higher plant densities are more than offset by the greater return on investment.
机译:迷你三倍体(无籽)西瓜(Citrullus lanatus)由于其尺寸小,可食用的大小而成为美国西瓜市场的一个增长部分。尽管迷你三倍体西瓜首次发布并在大约6年前进行了商业种植,但对于获得3至8磅范围内可出售水果的最大百分比所需的最佳种植密度,鲜有相关信息。在2006年和2007年,对四种迷你西瓜品种(Betsy,Petite Treat,Valdoria和Vanessa)的六种植物密度(2489、3111、4149、6223、8297和12,446英亩)的果实等级分布响应进行了测量。位于卡本代尔的伊利诺伊州南部大学园艺研究中心。 “ SP-1”用作行内花粉剂,占总播种量的25%。尽管所有品种对所评估的植物密度的反应相似,但与其他品种相比,“凡妮莎”提供了最大的果实数量和每英亩重量,以及迷你等级的果实百分比。随着行距的缩小,可销售的迷你三倍体西瓜产量大幅提高。在较低的植物密度下(行距更宽),生产出更大比例的冰盒大小的水果(> 8磅),可销售的微型水果(3-8磅)的数量下降。迷你三倍体西瓜的数量和重量的等级分布在评估的最高植物密度下最大(行距0.5英尺(12,446株植物/英亩)),迷你等级的总产量约为80%。在这种高密度下,也获得了最大的净收入。这项研究表明,对于迷你三倍体西瓜生产者来说,认识到植物密度对可销售的水果产量(3-8磅)具有显着影响至关重要。与目前使用的约2英尺行距相比,迷你三倍体西瓜的种植者在行距更近的情况下将获得显着的收益。更高的植物密度所带来的成本增加被更高的投资回报所抵消。

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