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Genetic variability and correlation analysis of rice (#Oryza sativa# L.) inbred lines based on agro-morphological traits

机译:基于农业形态性状的水稻自交系的遗传变异及相关性分析

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摘要

In order to evaluate genetic variability of agro-morphological traits and also determine the correlation between grain yield with its components in rice lines, 17 recombinants inbred lines, their parents and a check variety were grown in research station of Africa rice center in Benin republic during two consecutive years 2013 and 2014. The experiments were laid out in a randomized complete block design with four replications. Phenotypic coefficients of variance were higher than genotypic coefficients of variance in all the characters across the two years. High heritability in broad sense (H2) estimates were obtained for biomass (68.77%), date of 50% flowering (98.11%), plant height (81.94%), leaf area (82.90%), number of panicles (64.40%), leaf dry weight (72.91%), root weight (67.43%) and yield/plant (62.23%) suggesting that the traits were primarily under genetic control. A joint consideration of broad sense heritability (H2) and genetic advance as per cent mean expected (GAM) revealed that leaves dries weight and roots weight combined high heritability and high GAM. Furthermore, high (H2) and high GAM recorded in these characters could be explained by additive gene action. However, high estimates (H2) combined with moderate GAM recorded for biomass, day to 50% flowering, leaf area, number of panicle and yield/plant could be due to non-additive gene effect. Grain yield/plant recorded positive and significant correlation with stem weight (r=0.5262) and biomass (r=0.9291). This result indicates that selection based on these two characters will be highly effective for yield improvement in rice. (Résumé d'auteur)
机译:为了评估水稻农艺性状的遗传变异性,并确定水稻产量与其构成成分之间的相关性,在贝宁共和国非洲水稻中心的研究站于2004年间种植了17个重组自交系,其亲本和一个检查品种。连续两年(2013年和2014年)。实验采用随机完整的模块设计进行,重复四次。在过去的两年中,所有字符的表型变异系数均高于基因型变异系数。在生物量(68.77%),开花50%(98.11%),株高(81.94%),叶面积(82.90%),穗数(64.40%),叶片干重(72.91%),根重(67.43%)和单株产量(62.23%)表明这些性状主要受遗传控制。对广义遗传力(H2)和遗传进展的平均预期百分比(GAM)的共同考虑表明,叶片干重和根重兼具高遗传力和高GAM。此外,这些字符中记录的高(H2)和高GAM可以通过加性基因作用来解释。但是,记录的高估计值(H2)与适度GAM相结合的生物量,开花至50%的日开花量,叶面积,穗数和产量/植物可能归因于非累加基因效应。谷物单株产量与茎重(r = 0.5262)和生物量(r = 0.9291)呈显着正相关。该结果表明,基于这两个特性的选择对于提高水稻的产量将非常有效。 (Résuméd'auteur)

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