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QTL analysis of agronomic traits in recombinant inbred lines of sunflower under partial irrigation

机译:局部灌溉下向日葵重组自交系农艺性状的QTL分析

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The objective of the present research was to map QTLs associated with agronomic traits such as days from sowing to flowering, plant height, yield and leaf-related traits in a population of recombinant inbred lines (RILs) of sunflower (Helianthus annuus). Two field experiments were conducted with well-irrigated and partially irrigated conditions in randomized complete block design with three replications. A map with 304 AFLP and 191 SSR markers with a mean density of 1 marker per 3.7 cM was used to identify QTLs related to the studied traits. The difference among RILs was significant for all studied traits in both conditions. Three to seven QTLs were found for each studied trait in both conditions. The percentage of phenotypic variance (R 2) explained by QTLs ranged from 4 to 49%. Three to six QTLs were found for each yield-related trait in both conditions. The most important QTL for grain yield per plant on linkage group 13 (GYP-P-13-1) under partial-irrigated condition controls 49% of phenotypic variance (R 2). The most important QTL for 1,000-grain weight (TGW-P-11-1) was identified on linkage group 11. Favorable alleles for this QTL come from RHA266. The major QTL for days from sowing to flowering (DSF-P-14-1) were observed on linkage group 14 and explained 38% of the phenotypic variance. The positive alleles for this QTL come from RHA266. The major QTL for HD (HD-P-13-1) was also identified on linkage group 13 and explained 37% of the phenotypic variance. Both parents (PAC2 and RHA266) contributed to QTLs controlling leaf-related traits in both conditions. Common QTL for leaf area at flowering (LAF-P-12-1, LAF-W-12-1) was detected in linkage group 12. The results emphasise the importance of the role of linkage groups 2, 10 and 13 for studied traits. Genomic regions on the linkage groups 9 and 12 are specific for QTLs of leaf-related traits in sunflower.
机译:本研究的目的是绘制向日葵重组近交系(RILs)群体中与农艺性状相关的QTL,如从播种到开花的天数,植物高度,产量和叶片相关性状。在良好的灌溉条件和部分灌溉条件下,以三个重复的随机完整块设计,进行了两次野外试验。使用具有304个AFLP和191个SSR标记(平均密度为3.7 cM 1个标记)的图谱来鉴定与所研究性状相关的QTL。在两种情况下,RIL之间的差异对于所有研究性状均具有显着性。在两种情况下,每个研究性状均发现了3至7个QTL。 QTL解释的表型变异百分比(R 2 )范围为4%至49%。在两种情况下,每个产量相关性状均发现了3至6个QTL。连锁灌溉组(GYP-P-13-1)在部分灌溉条件下单株产量的最重要QTL控制49%的表型变异(R 2 )。在连锁群11上鉴定出最重要的1000粒重QTL(TGW-P-11-1)。此QTL的有利等位基因来自RHA266。在连锁群14上观察到了从播种到开花的几天的主要QTL(DSF-P-14-1),这解释了38%的表型变异。该QTL的阳性等位基因来自RHA266。在连锁群13上也鉴定出HD的主要QTL(HD-P-13-1),并解释了37%的表型变异。两种亲本(PAC2和RHA266)都在控制两种条件下与叶片相关性状的QTL上起作用。在连锁组12中检测到开花时叶面积的常见QTL(LAF-P-12-1,LAF-W-12-1)。结果强调了连锁组2、10和13对于研究性状的重要性。连锁基团9和12上的基因组区域对向日葵叶片相关性状的QTL具有特异性。

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