Unearthing hybridization opportunities for augmenting biomass yield and harvest index in rajmash (Phaseolus vulgaris L.)

MT Gandhi, Manish Sharma, MP Patel, NV Soni, GS Dave
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Abstract

In present study, 21 F1 hybrids derived from crossing between seven female genotypes and three male testers following a line × tester mating design were evaluated for analyzing the component of genetic variation and heterosis of yield contributing traits. The components of variances due to gca and sca revealed the predominance of non-additive gene action for biomass and harvest index. The average better parent heterosis (BPH) and standard heterosis (SH) for Biomass yield (BY) was 43.71 and 114.67, respectively, and the average BPH and SH for the Harvest index (HI) was -13.04 and -20.45, respectively. The higher magnitude of the BPH and SH recorded for BY indicated that the scope for increasing the HI in Rajmash is limited and that further increases in productivity have to come mainly through enhanced BY. The parent RR21-01 and GR 1 were good general combiners for biomass, TRCR 3, TRCR 2, SKAU-R-19 and RKR 1033 for harvest index. Cross combinations IPR-277- 19 × HUR recorded positively significant sca effect for BY and IPR-277-19 × GR, TRCR 3 × GR 1, TRCR 2 × GR 1, IPR-205-19 × HUR, IPR-277-19 × GR 1, SKAU-R-19 ×RKR 1033, RR-21-01 × HUR and RR-21-12 × GR 1 for HI. These results demonstrate that the selection of parents should not only be based on per se performance but also on combining ability and heterosis for achieving genetic improvement in Rajmash,
发掘杂交机会,提高莴苣(Phaseolus vulgaris L.)的生物量产量和收获指数
在本研究中,对 7 个雌性基因型和 3 个雄性测试者按照品系 × 测试者交配设计杂交产生的 21 个 F1 杂交种进行了评估,以分析产量贡献性状的遗传变异成分和异质性。gca 和 sca 的变异成分表明,生物量和收获指数的非加性基因作用占主导地位。生物量产量(BY)的平均较优亲本异交率(BPH)和标准异交率(SH)分别为 43.71 和 114.67,收获指数(HI)的平均较优亲本异交率(BPH)和标准异交率(SH)分别为 -13.04 和 -20.45。BY的BPH和SH值较高,表明Rajmash的HI提高空间有限,要进一步提高生产率,必须主要通过提高BY来实现。在生物量方面,亲本 RR21-01 和 GR 1 是良好的一般组合;在收获指数方面,TRCR 3、TRCR 2、SKAU-R-19 和 RKR 1033 是良好的一般组合。杂交组合 IPR-277- 19 × HUR 对 BY 有正显著的 sca 效应,IPR-277-19 × GR、TRCR 3 × GR 1、TRCR 2 × GR 1、IPR-205-19 × HUR、IPR-277-19 × GR 1、SKAU-R-19 ×RKR 1033、RR-21-01 × HUR 和 RR-21-12 × GR 1 对 HI 有正显著的 sca 效应。这些结果表明,要实现 Rajmash 的遗传改良,在选择亲本时不仅要看其本身的表现,还要看组合能力和异质性、
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