Exploring Genetic Variability for Yield and Its Attributing Traits in Rice (Oryza sativa L.) under Low Soil Phosphorous Condition

Harisha T, Shruti, A. M. S., G. C., R. Sundaram, S. P, R. M. Kumar, Brajendra, Avsr Swamy, D. B M, Sathish K M, Usha T N, Kalleshwara Swamy C M, Lokesha R
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Abstract

Phosphorus (P) is a vital macro-nutrient essential for the growth and development of all crop plants including rice. Inadequate availability of P in the soils hinders crop growth, resulting in reduced rice yields. Genetic variability for low P tolerance is of utmost importance to understand the genetics and improvement of rice genotypes for the trait. The present study was conducted under low soil P condition to assess the genetic variability for yield and its attributing traits in rice genotypes. The experimental material consists of 245 rice genotypes along with six checks which were planted in low P plot at ICAR-IIRR, Hyderabad using augmented block design and phenotyped for the traits viz., days to 50% flowering, plant height, total number of tillers, number of productive tillers per plant, panicle length, single plant yield, thousand grain weight and spikelet fertility. ANOVA analysis revealed that MSS due to test genotypes were significant (p<0.01) for all the traits under study. PCV and GCV were found to be high for single plant yield, total number of tillers and number of productive tillers while, plant height, thousand grain weight and spikelet fertility showed moderate PCV and GCV. Genetic advance as percentage of mean coupled with heritability was observed to be higher for all the traits except panicle length, which was moderate in nature. These results signify that there was sufficient amount of genetic variability for all the studied traits under low P in the studied genotypes. Therefore, genetic improvement through selection for these traits would be more rewarding and could be useful for developing genotypes tolerant to low P stress.
探索低磷土壤条件下水稻(Oryza sativa L.)产量及其相关性状的遗传变异性
磷(P)是包括水稻在内的所有作物生长和发育所必需的重要宏量营养元素。土壤中磷的供应不足会阻碍作物生长,导致水稻减产。耐低钾性的遗传变异对于了解水稻基因型的遗传和改良性状至关重要。本研究是在低土壤钾条件下进行的,目的是评估水稻基因型的产量及其相关性状的遗传变异性。实验材料由 245 个水稻基因型和 6 个对照组成,采用扩增区组设计,在海得拉巴的 ICAR-IIRR 的低 P 小区内种植,并对以下性状进行了表型分析:50%开花天数、株高、分蘖总数、单株丰产分蘖数、圆锥花序长度、单株产量、千粒重和小穗生育力。方差分析显示,试验基因型的 MSS 在所有性状上都有显著性差异(p<0.01)。发现单株产量、总茎蘖数和多产茎蘖数的 PCV 和 GCV 较高,而株高、千粒重和小穗生育力的 PCV 和 GCV 中等。除圆锥花序长度为中等水平外,所有性状的遗传进展(占平均值的百分比)和遗传率均较高。这些结果表明,在低 P 条件下,所研究基因型的所有性状都有足够的遗传变异。因此,通过对这些性状的选择进行遗传改良将更有价值,并可用于培育耐低 P 胁迫的基因型。
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