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Genetic variability, heritability, genetic advance and phylogenetic relationship between rice tungro virus resistant and susceptible genotypes revealed by morphological traits and SSR markers

机译:稻屯病毒耐药病毒与易感基因型的遗传变异,可遗传性,遗传提前和系统发育关系及SSR标记

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A study was conducted to assess the resistant sources, genetic variability and phylogenetic relationship among 44 rice genotypes based on pathogenicity, genetic parameters of morphological traits and simple sequence repeat markers. Results demonstrated that, 9 genotypes were resistant, 9 were moderately resistant and the rest of the genotypes were susceptible. The higher level of phenotypic coefficients of variation and genotypic coefficient of variation was found for number of tillers hill -1 , number of panicle hill -1 , number of filled grain panicle -1 , number of unfilled grain panicle -1 , total number of spikelets and yield hill -1 . High heritability along with high genetic advance was observed for yield hill ?1 , number of filled grains panicle ?1 , 1000 grain weight hill –1 and total number of spikelets panicle ?1 and these could be the desirable characters for selection. Polymorphic information content of SSR markers varied from 0.152 (RM161) to 0.760 (RM8213) with a mean value of 0.448. The higher PIC value (0.760) was obtained in RM8213 succeeded by RM3471 (0.719), RM279 (0.716), RM341 (0.689), RM336 (0.665), RM565 (0.664), RM287 (0.601) and RM562 (0.600), respectively which indicated that these markers are effective for the diversity evaluation of current genotypes. Cluster analysis of data matrix of 29 SSR markers, 44 genotypes divided into ten clusters. The results were also supplemented by principal component analysis. Between resistant and susceptible genotypes highest genetic distance was found between IR69705-1-1-1-4-3 and BR11 (0.14), IR69705-1-1-1-4-3 and BRRI dhan71 (0.14) followed by IR71605-3-1-1-2-6 and BRRI dhan49 (0.34), IR71605-3-1-1-2-6 and BR11 (0.38), Matatag 9 and BR11 (0.38), IR81244 (TW-16) and BR11, BRRI dhan39, BRRI dhan48 (0.41), IR71605-3-1-1-2-6 and BRRI dhan71 (0.41), IR81244 (TW-16) and BRRI dhan71 (0.45). Based on genetic distance and disease reaction data susceptible genotypes i.e. BR11, BRRI dhan39, BRRI dhan48 and BRRI dhan71 could be crossed with any of resistant genotypes IR69705-1-1-1-4-2, IR69705-1-1-1-4-3, IR71605-2-1-5-3-4, IR71605-3-1-1-2-6, IR81244 (TW-16), Matatag 9, Utri Merah-16680, Utri Merah-16682 and Utri rajapan to develop tungro resistant variety.
机译:进行了一种基于致病性,形态学性状的遗传参数和简单序列重复标记的44种水稻基因型之间的抗性来源,遗传变异性和系统发育关系。结果表明,9种基因型是抗性的,9种抗性,其余的基因型易感。发现较高水平的变异和基因型变异系数的变异系数的数量为分蘖山-1,穗丘山的数量,填充颗粒穗数-1,未填充的籽粒穗数-1,尖峰总数和产量山-1。对于产量山,观察到高遗传性以及高遗传进步的遗传性群α1,填充谷物的数量胰穗α1,1,1000粒重山-1和穗丸的总数α1,这些可能是选择所需的特性。 SSR标记的多态性信息含量从0.152(RM161)变化为0.760(RM8213),平均值为0.448。在RM8213中获得较高的PIC值(0.760),成功由RM3471(0.719),RM279(0.716),RM341(0.689),RM336(0.665),RM565(0.664),RM287(0.664),RM287(0.601)和RM562(0.600)中的较高表明这些标志物对当前基因型的分集评估有效。 29个SSR标记数据矩阵的聚类分析,44种基因型分为十个集群。结果也通过主成分分析补充。在IR69705-1-1-4-4-3和BR11(0.14)之间发现抗性和易感基因型之间的最高遗传距离,IR69705-1-1-4-3和BRRI DHAN71(0.14),然后是IR71605-3 -1-1-2-6和BRRI DHAN49(0.34),IR71605-3-1-2-6和BR11(0.38),MATATAG 9和BR11(0.38),IR81244(TW-16)和BR11,BRRI Dhan39,BRRI DHAN48(0.41),IR71605-3-1-1-2-6和BRRI DHAN71(0.41),IR81244(TW-16)和BRRI DHAN71(0.45)。基于遗传距离和疾病反应数据易感基因型,即BR11,BRRI DHAN39,BRRI DHAN48和BRRI DHAN71可以与任何抗性基因型IR69705-1-1-42,IR69705-1-1-4 -3,IR71605-2-1-5-3-4,IR71605-3-1-1-2-6,IR81244(TW-16),Matatag 9,Utri Merah-16680,Utri Merah-16682和Utri Rajapan至开发抗抗性品种。

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