Genetic Analysis and Heterosis Studies in 5×5 Diallel Crosses of Maize under the Meteorological Conditions of Rawalakot

S. Rehman, Shahid Iqbal Awan, M. Ilyas, M. Shahzad
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Abstract

This experiment was performed to evaluate heterosis and combining ability of morphological traits in maize (Zea mays L.). The experiment was arranged in randomized complete block design (RCBD) with three replicates. Twenty maize hybrids were obtained by 5×5 complete diallel crosses in first year and were evaluated for plant attributes like plant height, ear height, ear leaf area, flag leaf area, days to 50% silking, days to 50% pollen shed, anthesis-silking interval (ASI), no. of leaves per plant, no. of branches per tassel, no. of kernel rows per ear and kernels per row, 1000-kernel weight, shelling percentage, grain plus biological yield per plant and harvest index in second year. Among the crosses NCEV-4 × NCEV-3 (462.70g) showed maximum 1000-kernel weight, followed by NCEV-3 × EV-70040 (451.33g), while highest grain yield per plant was recorded for NCEV-4 × NCEV-3 (152.97g), followed by NCEV-3 × EV-70040 (145.10g). Maximum and highly significant heterosis and heterobeltiosis was found in cross NCEV-1530-11 × HNG (70.49 and 67.54), followed by HNG × EV-70040 (65.57 and 56.39) and HNG × NCEV-1530-11 (64.14 and 61.3), rest of the crosses also showed positive and highly significant heterosis and heterobeltiosis for grain yield per plant. Among the parents NCEV-3 has best GCA for grain yield (4.30) while cross NCEV-3 × NCEV-4 has best SCA for grain yield per plant (18.10) and could be used in hybridization for yield improvement.
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拉瓦拉科特气象条件下玉米5×5双列杂交遗传分析及杂种优势研究
本试验旨在评价玉米(Zea mays L.)形态性状的杂种优势和配合力。试验采用随机完全区组设计(RCBD),设3个重复。采用5×5完全双列杂交方法获得20个玉米杂交种,对其第一年的株高、穗高、穗叶面积、旗叶面积、出丝至50%天数、花粉脱落天数、开花-出丝间隔(ASI)、生育期和生育期等性状进行了评价。每棵植物的叶子,没有。每穗的分枝数,不。穗粒行数、行粒数、千粒重、脱壳率、单株粒加生物产量、第二年收获指数。其中NCEV-4 × NCEV-3的千粒重最大(462.70g), NCEV-3 × EV-70040次之(451.33g),单株产量最高的是NCEV-4 × NCEV-3 (152.97g),其次是NCEV-3 × EV-70040 (145.10g)。NCEV-1530-11 × HNG的杂种优势和杂种优势最大(70.49和67.54),其次是HNG × EV-70040(65.57和56.39)和HNG × NCEV-1530-11(64.14和61.3),其余杂种优势和杂种优势在单株产量上也表现为正极显著。NCEV-3亲本单株产量GCA最佳(4.30),NCEV-3与NCEV-4杂交单株产量GCA最佳(18.10),可用于杂交提高产量。
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