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首页> 外文期刊>American Journal of Experimental Agriculture >Physiological and Technological Consequences of Benzyl Adenine (BAP) Application on Butternut Squash (Cucurbita moschata Duchesne ex Poir.) Productivity
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Physiological and Technological Consequences of Benzyl Adenine (BAP) Application on Butternut Squash (Cucurbita moschata Duchesne ex Poir.) Productivity

机译:苄基腺嘌呤(BAP)在胡桃南瓜(Cucurbita moschata Duchesne ex Poir。)上的生理和技术后果

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Some authors have indicated that the reason why benzyl adenine (BAP) stimulates dry matter accumulation in squash and pumpkin is unclear, but we believe that two possibilities are likely: (i) higher photo-assimilate partitioning towards the shoot; or (ii) increased in the photosynthetic efficiency of leaves. Thus, the aim of this work was to study the effect of an exogenous BAP spray on biomass accumulation and yield in pumpkin plants grown in commercial facilities. Our results showed that, the relative growth rate of Butternut squash plants grown under commercial plant density did not change and that yield was the same in both BAP-sprayed and control plants. However, a single BAP application decreased leaf size and total leaf area per plant but increased the rate of leaf appearance. Our findings suggest the possibility of an increase in plant populations through changes in crop architecture and an increase in yield on a field area basis.
机译:一些作者指出,苄基腺嘌呤(BAP)刺激南瓜和南瓜中干物质积累的原因尚不清楚,但我们认为可能存在两种可能性:(i)较高的光同化作用分配给枝条;或(ii)叶片的光合作用效率提高。因此,这项工作的目的是研究外源BAP喷雾对商业设施中种植的南瓜植物中生物量积累和产量的影响。我们的结果表明,在商业化植物密度下生长的胡桃南瓜的相对生长速率没有变化,并且BAP喷涂和对照植物的产量均相同。但是,单次BAP施用可减少每株植物的叶片大小和总叶片面积,但可增加叶片外观的速率。我们的发现表明,通过改变作物结构和增加田间产量来增加植物种群的可能性。

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