生物
候选基因
连锁不平衡
单核苷酸多态性
苗木
基因
遗传学
数量性状位点
关联映射
近交系
核苷酸多样性
单倍型
扎梅斯
等位基因
植物
基因型
农学
作者
Bharath Kumar,Adel H. Abdel-Ghani,Jordon Pace,Jenaro Reyes-Matamoros,Frank Hochholdinger,Thomas Lübberstedt
出处
期刊:Plant Science
[Elsevier]
日期:2014-07-01
卷期号:224: 9-19
被引量:31
标识
DOI:10.1016/j.plantsci.2014.03.019
摘要
Several genes involved in maize root development have been isolated. Identification of SNPs associated with root traits would enable the selection of maize lines with better root architecture that might help to improve N uptake, and consequently plant growth particularly under N deficient conditions. In the present study, an association study (AS) panel consisting of 74 maize inbred lines was screened for seedling root traits in 6, 10, and 14-day-old seedlings. Allele re-sequencing of candidate root genes Rtcl, Rth3, Rum1, and Rul1 was also carried out in the same AS panel lines. All four candidate genes displayed different levels of nucleotide diversity, haplotype diversity and linkage disequilibrium. Gene based association analyses were carried out between individual polymorphisms in candidate genes, and root traits measured in 6, 10, and 14-day-old maize seedlings. Association analyses revealed several polymorphisms within the Rtcl, Rth3, Rum1, and Rul1 genes associated with seedling root traits. Several nucleotide polymorphisms in Rtcl, Rth3, Rum1, and Rul1 were significantly (P<0.05) associated with seedling root traits in maize suggesting that all four tested genes are involved in the maize root development. Thus considerable allelic variation present in these root genes can be exploited for improving maize root characteristics.
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