首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Detection and resolution of genetic loci affecting circadian period in Brassica oleracea
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Detection and resolution of genetic loci affecting circadian period in Brassica oleracea

机译:甘蓝型油菜昼夜节律遗传位点的检测与解析

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Circadian rhythms regulate many aspects of plant growth, fitness and vigour. The components and detailed mechanism of circadian regulation to date have been dissected in the reference species Arabidopsis thaliana. To determine the genetic basis and range of natural allelic variation for intrinsic circadian period in the closest crop relatives, we used an accurate and high throughput data capture system to record rhythmic cotyledon movement in two immortal segregating populations of Brassica oleracea, derived from parent lines representing different crop types. Periods varied between 24.4 and 26.1 h between the parent lines, with transgressive segregation between extreme recombinant lines in both populations of similar to 3.5 h. The additive effect of individual QTL identified in each population varied from 0.17 to 0.36 h. QTL detected in one doubled haploid population were verified and the mapping intervals further resolved by determining circadian period in genomic substitution lines derived from the parental lines. Comparative genomic analysis based on collinearity between Brassica and Arabidopsis also allowed identification of candidate orthologous genes known to regulate period in Arabidopsis, that may account for the additive circadian effects of specific QTL. The distinct QTL positions detected in the two populations, and the extent of transgressive segregation suggest that there is likely to be considerable scope for modulating the range of available circadian periods in natural populations and crop species of Brassica. This may provide adaptive advantage for optimising growth and development in different latitudes, seasons or climate conditions.
机译:昼夜节律调节植物生长,健康和活力的许多方面。迄今为止,已经在参考物种拟南芥中解剖了昼夜节律的组成和详细机制。为了确定最接近的农作物亲缘内在昼夜节律时期的自然基础等位基因变异的遗传基础和范围,我们使用了一个准确且高通量的数据捕获系统来记录油菜的两个不朽隔离种群的有节律的子叶运动,该种群从亲代不同的农作物类型亲本品系之间的时间间隔在24.4和26.1 h之间变化,两个群体中极端重组品系之间的越界分离与3.5 h相似。在每个人群中鉴定出的单个QTL的加性效应从0.17到0.36 h不等。验证了在一个双倍单倍体群体中检测到的QTL,并通过确定源自亲本系的基因组替代系中的昼夜节律周期进一步确定了作图间隔。基于芸苔属和拟南芥属之间的共线性的比较基因组分析还允许鉴定已知的调节拟南芥属时期的直系同源候选基因,这可能解释了特定QTL的附加昼夜节律效应。在这两个种群中检测到的不同的QTL位置以及海生分离的程度表明,调节芸苔属自然种群和作物物种中可用昼夜节律周期的范围可能有相当大的空间。这可以为优化在不同纬度,季节或气候条件下的生长和发育提供适应性优势。

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