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首页> 外文期刊>Saudi Journal of Biological Sciences >Interactive effect of nitrogen fertilizer and plant density on photosynthetic and agronomical traits of cotton at different growth stages
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Interactive effect of nitrogen fertilizer and plant density on photosynthetic and agronomical traits of cotton at different growth stages

机译:氮肥与植物密度对不同生长阶段光合作用和农艺性状的互动效果

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Individual effects of application of nitrogen (N) and plant densities (PD) were reported in various studies; however an interactive effect of N and PD in cotton was not studied. To explore the benefits of interactive effects of N fertilizer and PD to increase the quality of cotton. This study was carried out in randomized complete block design (RCBD) with split plot arrangement. In split plot arrangement, main plot was consisted of N application rate and in sub plots different PD were done. There were two nitrogen levels; low N level (F1) 120?kg?ha ?1 and high N level (F2) 180?kg?ha ?1 and three planting densities; 8 plants m ?2 as low density (LD), 10 plants m ?2 as medium density (MD) and 12 plants m ?2 as high density (HD). In this study we observed the interactive effect of N application levels and PD on cotton photosynthetic and agronomic traits of various stages of development. Results showed that cotton growth and N contents was varied among treatments on different development stages. Plant biomass production, photosynthetic rate (Pn), intercellular CO 2 (C i ), water use efficiency (WUE) and N contents were unaffected at the seedling stage by N application rate and PD, however, the highest Pn, C i and N contents was at squaring stage followed by blooming stage. Higher seed cotton yield and lint yield were obtained F1 with HD, and F2 with MD yielded the highest N contents and cotton yield among treatments. We found that the squaring stage was more critical, followed by the blooming stage when considering N rate and PD.
机译:在各种研究中报道了氮(N)和植物密度(PD)施用的个性效果;然而,没有研究N和Pd在棉花中的互动效果。探讨氮肥和PD的互动效果增加棉花的质量。该研究在随机完整块设计(RCBD)中进行了分裂绘图布置。在分裂绘图布置中,主图是由N施用速率组成,并且在副曲线下进行不同的PD。有两个氮水平;低N级(F1)120?kg?ha?1和高n级(f2)180?kg?ha?1和三种种植密度; 8植物M?2作为低密度(LD),10株植物M 2作为中密度(MD)和12株植物M≥2作为高密度(HD)。在这项研究中,我们观察了N个应用水平和PD对各个发展阶段的棉花光合作用和农艺性状的互动效果。结果表明,不同发展阶段的治疗中棉花生长和N含量变化。植物生物质生产,光合速率(PN),细胞间CO 2(C i),水使用效率(WUE)和N含量在N施用率和PD下不受幼苗阶段的影响,但是,最高的PN,C I和N内容在平方阶段,然后是盛开的阶段。用HD获得较高的种子棉产率和棉绒产量,并且MD的F2产生最高的N含量和治疗中的棉花产量。我们发现平方阶段更为关键,然后考虑n速率和Pd时的盛开阶段。

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