Stability Analysis for Biological Nitrogen Fixation and Seed Yield in Mungbean [Vigna radiata (L.) Wilczek] Genotypes

M. Arya, S.B. Mishra, Kanshouwa Modunshim Maring, Ravi Kant
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Abstract

Background: Mungbean is a versatile legume crop grown in various cropping systems. Despite its adaptability, the yield is hindered by the low yielding capacity of undifferentiated varieties and their limited ability to fix nitrogen. The current study aims to identify stable genotypes through continuous cultivation in eight different environments over two years. Methods: To assess the stability for BNF and seed yield, twenty-five mungbean genotypes were measured at eight diverse agro-ecological conditions, represented as two different seasons during spring and summer in two consecutive years (2016 and 2017) at two locations - TCA, Dholi, Muzaffarpur and Pusa Farm, RPCAU, Pusa, Samastipur, Bihar. To evaluate the most stable and superior genotypes, three parameters, viz., , bi and S2di were calculated. Result: There is a substantial amount of variability across genotypes and environments, as shown by the pooled analysis of variance. The genotype, Pusa 11-31 had shown regression near to unity, comprised with non-significant standard deviation along with higher mean seed yield and biological nitrogen fixation indicates that this is the most stable genotypes for the above traits.
绿豆 [Vigna radiata (L.) Wilczek] 基因型生物固氮和种子产量的稳定性分析
背景:绿豆是一种用途广泛的豆科作物,可在各种种植系统中种植。尽管其适应性很强,但未分化品种的低产能力及其有限的固氮能力阻碍了其产量。本研究旨在通过两年时间在八个不同环境中的连续栽培,确定稳定的基因型。方法:为了评估 BNF 和种子产量的稳定性,在八个不同的农业生态条件下对 25 个绿豆基因型进行了测定,这八个不同的农业生态条件分别代表了比哈尔邦萨马蒂普尔省 Dholi 的 TCA 和 RPCAU 的 Pusa 农场这两个地方连续两年(2016 年和 2017 年)春季和夏季的两个不同季节。为了评估最稳定和最优良的基因型,计算了三个参数,即、、bi 和 S2di。结果汇总方差分析结果表明,不同基因型和环境之间存在很大的差异。基因型 Pusa 11-31 的回归系数接近统一,标准偏差不显著,平均种子产量和生物固氮能力较高,表明这是上述性状最稳定的基因型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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