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首页> 外文期刊>Notulae Botanicae Horti Agrobotanici Cluj-Napoca >Relationships between Grain Yield and Yield Components in Bread Wheat under Different Water Availability (Dryland and Supplemental Irrigation Conditions)
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Relationships between Grain Yield and Yield Components in Bread Wheat under Different Water Availability (Dryland and Supplemental Irrigation Conditions)

机译:不同水分条件下(旱地和补充灌溉条件)面包小麦籽粒产量与产量构成之间的关系

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Path and correlation analysis were executed to investigate the relationships between grain yield and other important yield components in bread wheat (Triticum aestivum L.) genotypes during two years (2009-2011) under supplemental irrigation and dryland conditions. Field experiments were performed in a randomized complete block design with four replications. Grain yield showed positive correlation with plant height and test weight under supplemental irrigation condition. The similar results were also revealed between grain yield and plant height, spike length, days to maturity, agronomic score and test weight in dryland environment. The grain yield of bread wheat in dryland condition depended on the effect of plant height, days to maturity, agronomic score and 1000 kernel weight, whereas in supplemental irrigation was mainly related to plant height, spike length, 1000 kernel weight and test weight. The influence of 1000 kernel weight on grain yield in both environments seems to cause from the fact that grain yield in wheat is frequently the sink limited, and for this reason, the 1000 kernel weight has been reported as a promising trait for increasing grain yield in wheat under different conditions. The nearly equal value of correlation and path coefficients of plant height and grain yield showed plant height had positive and direct effect on grain yield, in both conditions and suggesting a criteria trait for improving of grain yield. The results showed that genotype 12 (CS/TH.SC//3*PVN/3/MIRLO/BUC/4/MILAN/5/ TILHI) is a high yielding potential genotype in moisture limited conditions.
机译:在补充灌溉和旱地条件下的两年(2009-2011年)内,进行路径和相关分析,以研究面包小麦(Triticum aestivum L.)基因型的谷物产量与其他重要产量成分之间的关​​系。现场实验是在随机完整区组设计中进行的,重复四次。在补充灌溉条件下,籽粒产量与株高和试验体重呈正相关。在旱地环境中,谷物产量与株高,穗长,成熟天数,农艺评分和试验重量之间也显示了相似的结果。旱地条件下of头小麦的籽粒产量取决于株高,成熟天数,农艺学分和1000粒重的影响,而补充灌溉则主要与株高,穗长,1000粒重和试验重量有关。两种环境中1000粒重对谷物产量的影响似乎是由于以下事实造成的:小麦的籽粒产量经常受库的限制,因此,据报道1000粒重是提高小麦单产的有希望的特征。小麦在不同条件下。株高和籽粒产量的相关系数和通径系数几乎相等,表明在两种条件下,株高对籽粒产量都有正向和直接的影响,表明了提高籽粒产量的标准性状。结果表明,基因型12(CS / TH.SC // 3 * PVN / 3 / MIRLO / BUC / 4 / MILAN / 5 / TILHI)是在水分有限的条件下高产的潜在基因型。

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