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Rht8 gene as an alternate dwarfing gene in elite Indian spring wheat cultivars

机译:Rht8基因是印度优质春小麦品种的另一个矮化基因

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摘要

Optimizing wheat height to maximize yield has been an important aspect which is evident from a successful example of green revolution. Dwarfing genes (Rht) are known for yield gains due to lodging resistance and partitioning of assimilates into ear. The available and commercially exploited sources of dwarfism in Indian spring wheat are Rht1 and Rht2 genes inspite of availability of over 20 dwarfing genes. Rht8 a Gibberellic acid sensitive dwarfing gene is another reduced height gene commercially exploited in some Mediterranean countries. Two F2 populations segregating for Rht1 and Rht8 genes with each comprising 398 and 379 plants were developed by crossing European winter wheat cultivars Beauchamp and Capitole with Indian spring wheat cultivar PBW 621. Different genotypic combinations for Rht1 and Rht8 genes were selected from these populations through linked molecular markers and selected F3:4 lines were evaluated for various agronomic traits in a replicated trial. Reduction in plant height with Rht8 and Rht1 averaged 2.86% and 13.3% respectively as compared to the group of lines lacking dwarfing gene. Reduction was spread along all the internodes of wheat culm and reduction was lower as progress towards the lower internode. Grain number per spike and highest yield was observed in lines carrying only Rht1 gene. Reduction in plant biomass was observed with either of the dwarfing gene. Longest coleoptile length and seedling shoot length averaged 4.4 ± 0.09 cm and 19.5 ± 0.48, respectively was observed in lines lacking any of the dwarfing gene. Negligible reduction of 6.75% and 2.84% in coleoptile length and seedling shoot length, respectively was observed in lines carrying only Rht8 gene whereas F3:4 lines with Rht1 gene showed 21.64% and 23.35% reduction in coleoptile length and seedling shoot length, respectively. Additive effect of genes was observed as double dwarfs showed 43.31% and 43.34% reduction in coleoptile length and seedling shoot length.
机译:从绿色革命的成功例子中可以明显看出,优化小麦高度以使单产最大化是一个重要方面。矮化基因(Rht)因抗倒伏性和同化物分配到耳朵而获得增产。尽管有20多个矮化基因,但印度春小麦中可利用的和有商业利用的矮化来源是Rht1和Rht2基因。 Rht8是一种赤霉素敏感的矮化基因,是在一些地中海国家中商业开发的另一种高度降低的基因。通过使欧洲冬小麦品种Beauchamp和Capitole与印度春小麦品种PBW 621交配,开发了两个分别分离为Rht1和Rht8基因的F2群体,分别包含398和379种植物。通过连接,从这些群体中选择了不同的Rht1和Rht8基因型在重复试验中评估了分子标记和所选的F3:4品系的各种农艺性状。与缺乏矮化基因的品系相比,Rht8和Rht1使株高平均降低了2.86%和13.3%。减少量分布在小麦茎秆的所有节间,减少程度随着向较低节间的进展而降低。在仅携带Rht1基因的品系中观察到每个穗粒数和最高产量。用任一矮化基因观察到植物生物量的减少。在没有任何矮化基因的品系中,最长胚芽鞘的长度和幼苗的芽长分别平均为4.4±0.09 cm和19.5±0.48。在仅携带Rht8基因的品系中,胚芽鞘长度和幼苗芽的长度分别减少了6.75%和2.84%,可以忽略不计,而带有Rht1基因的F3:4品系的胚芽鞘长度和苗芽长度分别减少了21.64%和23.35%。观察到基因的相加作用,双矮表明胚芽鞘长度和苗芽长度减少了43.31%和43.34%。

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