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Stability analysis for grain yield and quality traits in selected traditional and improved varieties of rice over different Zones of Karnataka

机译:在karnataka不同区域中选择传统和改进水稻品种的粮食产量和质量特征的稳定性分析

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摘要

Traditional rice varieties (TRVs) form important components of genetic reservoir. TRVs used in study viz., Rajamudi, Ratnachoodi and Jeerigesanna are photosensitive. They may exhibit Genotype by Environment (GxE) interactions for grain yield and quality traits. Hence, present experiment was conducted to understand responses of yield and quality traits in selected traditional along with improved varieties of rice over five different locations of Karnataka using additive main effects and multiplicativeinteraction (AMMI) model and bi-plots were developed following GGE bi-plot methodology. AMMI analysis revealed that there existed significant GE interaction among ten rice varieties and genotypes and environments were diverse in nature. IPCAl and IPCA2together explained more than 75% of GE interaction for yield and quality traits and maximum GE interaction was explained by IPCA (Interaction Principle Component Analysis) 1. BR-2655 and Ratnachoodi were found to be most stable varieties and Mugadsiri was found to be most unstable variety for grain yield. Jeerigesanna and BPT-5204 were stable for gel consistency and amylose content respectively. Among rice varieties used, BR-2655 was found to be the best variety since it recorded highest grain yield andalso it was stable performer for grain yield and also amylose content across five different locations.
机译:传统水稻品种(TRV)形成遗传水库的重要组成部分。用于研究的TRV,Rajamudi,Ratnachoodi和Jeerigesanna是光敏的。它们可以通过环境(GXE)相互作用表现出基因型,用于籽粒产量和质量性状。因此,目前的实验是为了了解所选传统的产量和质量特征的响应以及使用添加剂主要效应和乘法互动(AMMI)模型和双图在GGE Bi-Plot中产生了多种水稻品种的水稻。方法。 AMMI分析表明,十种水稻品种和基因型之间存在显着的GE相互作用,环境中有多样化。 IPCAL和IPCA2将超过75%的GE相互作用的收益率和质量特征和最大GE相互作用由IPCA解释(相互作用原理分析分析)1. BR-2655和RATNACHOODI被发现是最稳定的品种,发现Mugadsiri是最稳定的粮食产量最不稳定的品种。 Jeerigesanna和BPT-5204分别用于凝胶稠度和直链淀粉含量稳定。在使用的水稻品种中,BR-2655被发现是最佳品种,因为它记录了最高的谷物产量,它是颗粒产量的稳定表演者,并且在五个不同位置的淀粉含量也是如此。

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