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首页> 外文期刊>Frontiers in Plant Science >Genotype × Environment Interactions of Yield Traits in Backcross Introgression Lines Derived from Oryza sativa cv. Swarna/ Oryza nivara
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Genotype × Environment Interactions of Yield Traits in Backcross Introgression Lines Derived from Oryza sativa cv. Swarna/ Oryza nivara

机译: Oryza sativa cv的回交渗入系产量性状的基因型×环境互作。 Swarna / Oryza nivara

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摘要

Advanced backcross introgression lines (BILs) developed from crosses of Oryza sativa var. Swarna/ O. nivara accessions were grown and evaluated for yield and related traits. Trials were conducted for consecutive three seasons in field conditions in a randomized complete block design with three replications. Data on yield traits under irrigated conditions were analyzed using the Additive Main Effect and Multiplicative Interaction (AMMI), Genotype and Genotype × Environment Interaction (GGE) and modified rank-sum statistic ( YSi ) for yield stability. BILs viz. , G3 (14S) and G6 (166S) showed yield stability across the seasons along with high mean yield performance. G3 is early in flowering with high yield and has good grain quality and medium height, hence could be recommended for most of the irrigated locations. G6 is a late duration genotype, with strong culm strength, high grain number and panicle weight. G6 has higher yield and stability than Swarna but has Swarna grain type. Among the varieties tested DRRDhan 40 and recurrent parent Swarna showed stability for yield traits across the seasons. The component traits thousand grain weight, panicle weight, panicle length, grain number and plant height explained highest genotypic percentage over environment and interaction factors and can be prioritized to dissect stable QTLs/ genes. These lines were genotyped using microsatellite markers covering the entire rice genome and also using a set of markers linked to previously reported yield QTLs. It was observed that wild derived lines with more than 70% of recurrent parent genome were stable and showed enhanced yield levels compared to genotypes with higher donor genome introgressions.
机译:先进的回交渗入系(BILs)是由水稻杂交获得的。生长Swarna / O。nivara品种,并评估其产量和相关性状。试验在野外条件下连续三个季节进行,随机完整的试验区设计,重复三次。利用加性主效应和乘性互作(AMMI),基因型和基因型×环境互作(GGE)以及修正的秩和统计量(YSi)对灌溉条件下的产量性状数据进行了分析,以提高产量的稳定性。 BIL即,G3(14S)和G6(166S)在整个季节中均表现出稳定的产量以及较高的平均产量表现。 G3花期早,产量高,谷物品质好,中等高度,因此建议在大多数灌溉地点使用。 G6是一种晚期基因型,具有强大的茎秆强度,高粒数和穗重。 G6比Swarna具有更高的产量和稳定性,但具有Swarna晶粒类型。在经过测试的品种中,DRRDhan 40和轮回亲本Swarna在整个季节表现出稳定的产量性状。千粒重,穗重,穗长,粒数和株高的组成特征解释了相对于环境和相互作用因子而言最高的基因型百分比,可以优先分析稳定的QTL /基因。这些品系使用覆盖整个水稻基因组的微卫星标记以及与先前报道的产量QTL相关的一组标记进行基因分型。观察到,与具有更高供体基因组基因渗入能力的基因型相比,具有超过70%的复发亲本基因组的野生来源品系是稳定的,并显示出更高的产量水平。

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