Zhao H, Liu J, Shi L, Xu F, Wang Y
National Key Laboratory of Crop Genetic Improvement, Huazhong Agricultural University, Wuhan 430070, China.
Genetika. 2010 Jan;46(1):66-72.
Rapeseed (Brassica napus) is sensitive to low boron (B) stress and plentiful variation exists in response to B deficiency. One major QTL, BE1, and three minor loci controlling B efficiency in Brassica napus were previously detected. To fine map and clone the B-efficient gene (s), the development of B-efficient NILs in Brassica napus was conducted, combining the identification of B efficiency at seedling stage with genetic background selection using random AFLP markers. The molecular marker assisted background selection proved its optimum and necessary in an early backcrossing generation to select the backcross individuals with high genetic background similarity to accelerate the construction of NILs. Based on B efficiency investigated at seedling stage under the low B conditions, the B-efficient backcross line can produce biomass twice about the B-inefficient parent's and show low B concentration and effective utilization of B under low B condition. Thus, the B efficiency of the B efficient NILs might be attributed to the higher B utilization efficiency or less demand for B.
油菜(甘蓝型油菜)对低硼(B)胁迫敏感,对硼缺乏的反应存在丰富的变异。先前已检测到一个控制甘蓝型油菜硼效率的主要QTL(BE1)和三个次要位点。为了精细定位和克隆硼高效基因,结合苗期硼效率鉴定和利用随机AFLP标记进行遗传背景选择,开展了甘蓝型油菜硼高效近等基因系的培育。分子标记辅助背景选择在回交早期世代证明是优化且必要的,用于选择与高遗传背景相似的回交个体,以加速近等基因系的构建。基于低硼条件下苗期的硼效率研究,硼高效回交系的生物量约为硼低效亲本的两倍,且在低硼条件下硼浓度低,对硼的利用有效。因此,硼高效近等基因系的硼效率可能归因于较高的硼利用效率或对硼的需求较少。