Assessment of Sodicity Tolerance in Rice (Oryza sativa L.) Germplasm

S. Shrivastav, Verma Op, Kanhaiya Lal -, S. -
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Abstract

The experiment on 113 genotypes (aromatic and non-aromatic rice) including three checks viz., Sarjoo 52, FL 478, and CSR 10 of rice (Oryza sativa L.) was conducted to work out the identification of elite genotypes based on grain yield and their various yield attributing traits. The grain yield per plant ranged from 8.898g for NDRK 50047 to 24.658g in the case of IR 13 T 141 with a general mean of 16.464g. Out of 113 genotypes, thirty-six genotypes produced significantly higher grain yield per plant than the general mean. The best ten genotypes for higher grain yield per plant were IR 13 T 141, IR 11 T 230, IR 13 T 145, IR 12 T 147, IR 11 T 171, IR 11 T 132, IR 11 T 205, IR 12 T 193, AT 401, and CSR 43. Similarly, the genotypes showed that very high mean performance in the desired direction for various characters; may also be used as donors for improving the characters for which they had high mean performance in yield and yield contributing traits. The availability of large genetic variability, as well as the nature of heritability and gene actions, are all important factors in the success of selection in improving plant traits. The basic material for a plant breeding programme is genetic diversity, which is used to generate superior genotypes through selection.
水稻耐盐碱性评价种质资源
以水稻(Oryza sativa L.)为材料,对Sarjoo 52、fl478和csr10 3个基因型(芳香型和非芳香型)进行了试验,以籽粒产量及其各产量性状为基础,确定了优质基因型。NDRK 50047的单株粒产量为8.898g, ir13 t141的单株粒产量为24.658g,平均为16.464g。在113个基因型中,36个基因型的单株籽粒产量显著高于一般平均水平。单株产量最高的10个基因型为IR 13t141、IR 11t230、IR 13t145、IR 12t147、IR 11t171、IR 11t132、IR 11t205、IR 12t193、at401和CSR 43。同样,各基因型在期望方向上表现出非常高的平均性能;也可作为供体改良其在产量和产量贡献性状上有较高平均表现的性状。大遗传变异的可利用性,以及遗传力和基因作用的性质,都是植物性状改良选择成功的重要因素。植物育种计划的基本材料是遗传多样性,它用于通过选择产生优越的基因型。
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