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首页> 外文期刊>The Journal of Horticultural Science & Biotechnology >The impact of within-row spacing on the productivity of glasshouse roses grown in two planting systems
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The impact of within-row spacing on the productivity of glasshouse roses grown in two planting systems

机译:行距对两种种植系统中种植的温室玫瑰产量的影响

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Stem yield and quality of roses for cut flower production were evaluated. The plants were grown in two planting systems as an alternative to the traditional "vase-shaped" system. In the trellised system, two cultivars of Rosa hybrida (cvs Gabrielle and Kardinal) were planted in a commercial glasshouse in 3 m sections of bed. Within-row spacing was varied to give 6-16 plants m~(-2). After a three-month establishment phase the basal shoots were bent to an angle of 30 deg above horizontal and restrained with a trellis wire. Flowering shoots sprouting from axillary buds along a basal shoot were harvested at their lowest node, minimizing branching. Compared with "vase-shaped" rose plants at the same density, trellised roses produced 24% more basal shoots, 46% more flowering shoots (cv. Gabrielle) and approximately 46% less blind shoots per plant over five months. Phenotypic variation was greater in cv. Gabrielle than in cv. Kardinal in response to within-row spacing, as indicated by the number of basal shoots formed. Within-row spacing, over tile range explored, did no! affect the number of flowering shoots per basal shoot. Trellising rose plants increased stem yield and quality, but production over the long-term requires further investigation. The single shoot planting system contained a mixed population of single-stemmed rose plants of Rosa hybrida (cvs Gabrielle and Gerdo). It was grown in a field over a range of within-row spacings to give 20-105 plants m~(-2). Over three harvests, increasing the number of plants by 10 plants m~(-2) reduced the proportion of flowering shoots by 4.4%. Expressed on a unit area basis, a five-fold increase in plants m~(-2) produced a three-fold increase in stem production.
机译:评价了切花生产用玫瑰的茎产量和品质。这些植物在两个种植系统中生长,以替代传统的“花瓶形”系统。在格子系统中,将两个杂交品种(Rosa hybrida)(cvs Gabrielle和Kardinal)种植在3 m床段的商业温室中。行内间距变化,得到6〜16株m〜(-2)。在三个月的定居阶段后,将基芽弯曲至高于水平30度的角度,并用网格线约束。从腋芽沿基部芽发芽的开花芽在其最低节处收获,从而最大程度地减少了分枝。与相同密度的“花瓶形”玫瑰植物相比,在五个月内,每朵植物的格子玫瑰产生的基础芽增加24%,开花枝(cv。Gabrielle)增加46%,盲枝减少约46%。表型变异在简历中更大。加布里埃比简历。 Kardinal对行内间距的反应,如形成的基生芽的数量所示。行间间距,超出了瓷砖范围,没有!影响每个基础芽的开花芽的数量。蔷薇植物的花可提高茎的产量和品质,但长期生产需要进一步调查。单枝种植系统包含罗莎杂种(cvs Gabrielle和Gerdo)的单茎玫瑰混合植物种群。它在田间的行距范围内生长,可得到20-105株m〜(-2)。在三个收获期中,将植物数量增加10植株m〜(-2),使开花枝的比例降低4.4%。以单位面积表示,植物m〜(-2)增加5倍,茎产量增加3倍。

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