首页> 外文期刊>Archives of Agronomy and Soil Science >Loose and tower-type canopy structure can improve cotton yield in the Yellow River basin of China by increasing light interception
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Loose and tower-type canopy structure can improve cotton yield in the Yellow River basin of China by increasing light interception

机译:疏松的塔式冠层结构可以通过增加光截留来提高黄河流域棉花产量

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摘要

Determining the optimal plant architecture and canopy structure are important objectives in research on the breeding and cultivation of high-yielding crops. To address this challenge, a field experiment was conducted in Anyang, Henan, China, to assess cotton light interception, boll spatial distribution, leaf area index (LAI), plant height and biomass, lint yield and yield component during 2018-2019. Treatments including 10 cotton cultivars with belong to tower-shaped and tube-type canopy structure. Compared with compact cotton varieties, the loose and tower-shaped cotton varieties intercepted more light (average 28.6) and had a higher LAI (average 34.2), resulting in a higher cotton yield (average 14.8). In addition, polynomial correlation showed that the maximum light interception rate occurred at the flowering and boll-forming stage, when the annual mean plant height (94.6 cm), LAI (3.58) and biomass (15,006 kg ha(-1)) all reached their peak. Moreover, yield was extremely significantly positively correlated with intercepted photosynthetically active radiation (IPAR) (R = 0.7) and positively correlated with light use efficiency (LUE) (R = 0.36). Overall, the results suggest that cotton cultivars with loose and tower-type canopy structures intercept more light and should be planted to increase cotton yield and LUE in the Yellow River basin of China and areas with similar conditions.
机译:确定最佳的植株结构和冠层结构是高产作物育种和栽培研究的重要目标。为应对这一挑战,在河南安阳市开展了田间试验,对2018—2019年棉花光截截、棉铃空间分布、叶面积指数(LAI)、株高和生物量、皮棉产量和产量构成进行评价。处理包括10个棉花品种,属于塔形和管状冠层结构。与紧密棉品种相比,松散和塔形棉花品种截获的光质更多(平均28.6%),LAI更高(平均34.2%),棉花产量更高(平均14.8%)。此外,多项式相关性表明,最大光截留率出现在开花和结铃期,年平均株高(94.6 cm)、LAI(3.58)和生物量(15,006 kg ha(-1))均达到峰值。此外,产量与截获的光合有效辐射(IPAR)呈极显著正相关(R = 0.7),与光利用效率(LUE)呈极显著正相关(R = 0.36)。结果表明,黄河流域及类似条件地区,疏松和塔状冠层结构的棉花品种可截留更多光照,应种植以提高棉花产量和LUE。

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