Ramchiary N, Bisht N C, Gupta V, Mukhopadhyay A, Arumugam N, Sodhi Y S, Pental D, Pradhan A K
Department of Genetics, University of Delhi South Campus, New Delhi, India.
Theor Appl Genet. 2007 Dec;116(1):77-85. doi: 10.1007/s00122-007-0648-4. Epub 2007 Sep 26.
Seed glucosinolate content in Brassica juncea is a complex quantitative trait. A recurrent selection backcross (RSB) method with a doubled haploid (DH) generation interspersing backcross generations was used for the introgression of low glucosinolate alleles from an east European gene pool B. juncea line, Heera into an Indian gene pool variety, Varuna. Phenotypic comparisons among the DH populations derived from early to advanced backcrosses revealed a shift in the mean values for various glucosinolates with the advancement of backcrossing, indicating a change in the selective values of the alleles with change in the genetic background due to the existence of epistasis and context dependencies. QTL mapping for various seed glucosinolates from early (F(1)DH) and advanced generation (BC(4)DH) populations confirmed the presence of epistasis and context dependency. The common QTL detected in both F(1)DH and BC(4)DH changed their R (2) values from the former to the later generation. Some of the QTL detected in the F(1)DH became irrelevant in the BC(4)DH population. Further, new QTL were detected in the BC(4)DH population for various glucosinolates. A validation study on a population of low glucosinolate DH lines derived from all the backcross generations of the RSB breeding programme revealed that the QTL detected in BC(4)DH were the 'true' QTL. Using glucosinolate as an example, the study provides strong evidence for the importance of the RSB method for the identification of the 'true' QTL which would be significant for marker assisted introgression of a complex quantitative trait whose expression is influenced by epistatic interactions.
芥菜种子中的硫代葡萄糖苷含量是一个复杂的数量性状。采用轮回选择回交(RSB)方法,在回交世代中穿插双单倍体(DH)世代,将来自东欧基因库芥菜品系Heera的低硫代葡萄糖苷等位基因导入印度基因库品种Varuna。对早期到晚期回交产生的DH群体进行表型比较,结果显示随着回交的推进,各种硫代葡萄糖苷的平均值发生了变化,这表明由于上位性和背景依赖性的存在,等位基因的选择值随遗传背景的变化而改变。对早期(F(1)DH)和晚期(BC(4)DH)群体的各种种子硫代葡萄糖苷进行QTL定位,证实了上位性和背景依赖性的存在。在F(1)DH和BC(4)DH中检测到的共同QTL,其R(2)值从前者到后者世代发生了变化。在F(1)DH中检测到的一些QTL在BC(4)DH群体中变得不相关。此外,在BC(4)DH群体中检测到了各种硫代葡萄糖苷的新QTL。对RSB育种计划所有回交世代衍生的低硫代葡萄糖苷DH系群体进行的验证研究表明,在BC(4)DH中检测到的QTL是“真实”的QTL。以硫代葡萄糖苷为例,该研究为RSB方法在鉴定“真实”QTL方面的重要性提供了有力证据,这对于受上位性相互作用影响的复杂数量性状的标记辅助导入具有重要意义。