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Introgression of the high grain protein gene Gpc-B1 in an elite wheat variety of Indo-Gangetic Plains through marker assisted backcross breeding

机译:通过标记辅助回交育种使高粒蛋白基因Gpc-B1渗入印度恒河平原优质小麦品种

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Abstract Grain protein content (GPC) in wheat has been a major trait of interest for breeders since it has enormous end use potential. In the present study, marker-assisted backcrossing (MABC) was successfully used to improve {GPC} in wheat cultivar HUW468. The genotype Glu269 was used as the donor parent for introgression of the gene Gpc-B1 that confers high GPC. In a segregating population, {SSR} marker Xucw108, with its locus linked to Gpc-B1 was used for foreground selection to select plants carrying Gpc-B1. Background selection, involving 86 polymorphic {SSR} markers dispersed throughout the genome, was exercised to recover the genome of HUW468. For eliminating linkage drag, markers spanning a 10 cM region around the gene Gpc-B1 were employed to select lines with a donor segment of the minimum size carrying the gene of interest. Improved lines had significantly higher {GPC} and displayed 88.4–92.3 per cent of the recurrent parent genome (RPG). For grain yield, selected lines were at par with the recurrent parent HUW468, suggesting that there was no yield penalty. The whole exercise of transfer of Gpc-B1 and reconstitution of the genome of {HUW468} was completed within a period of two and half years (five crop cycles) demonstrating practical utility of {MABC} for developing high {GPC} lines in the background of any elite and popular wheat cultivar with relatively higher speed and precision. (http://creativecommons.org/licenses/by-nc-nd/3.0/).
机译:摘要小麦籽粒蛋白质含量(GPC)具有巨大的最终用途潜力,一直是育种者关注的主要特征。在本研究中,成功​​地使用标记辅助回交(MABC)来改善小麦品种HUW468的 {GPC }。基因型Glu269被用作供体亲本,使具有高GPC的基因Gpc-B1渗入。在隔离的种群中, {SSR }标记Xucw108及其与Gpc-B1连锁的位点被用于前景选择,以选择携带Gpc-B1的植物。进行背景选择,涉及分散在整个基因组中的86个多态性 {SSR }标记,以恢复HUW468的基因组。为了消除连锁阻力,使用跨越基因Gpc-B1周围10 cM区域的标记来选择具有最小大小供体区段且携带目标基因的品系。改良品系具有更高的 {GPC },并显示出了复发亲本基因组(RPG)的88.4–92.3%。对于谷物产量,选择的品系与轮作亲本HUW468相同,表明没有产量损失。 Gpc-B1转移和 {HUW468 }基因组重构的整个过程在两年半的时间(五个作物周期)内完成,证明了 {MABC }在开发高水平 {GPC中的实用性}以相对较高的速度和精度在任何精英和流行的小麦品种的背景中进行排列。 (http://creativecommons.org/licenses/by-nc-nd/3.0/)。

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