Trini Johannes, Maurer Hans Peter, Neuweiler Jan Eric, Würschum Tobias
State Plant Breeding Institute, University of Hohenheim, 70599 Stuttgart, Germany.
Institute of Plant Breeding, Seed Science and Population Genetics, University of Hohenheim, 70599 Stuttgart, Germany.
Plants (Basel). 2021 Aug 2;10(8):1592. doi: 10.3390/plants10081592.
The quantitatively inherited trait plant height is routinely evaluated in triticale breeding programs as it substantially influences lodging and disease susceptibility, is a main contributor to biomass yield, and is required to improve hybrid seed production by fine-tuning plant height in the female and male parental pools in hybrid breeding programs. In this study, we evaluated a panel of 846 diverse Central European triticale genotypes to dissect the genetic architecture underlying plant height by genome-wide association mapping. This revealed three medium- to large-effect QTL on chromosomes 5A, 4B, and 5R. Genetic and physical fine-mapping of the putative QTL revealed that the QTL on chromosome 5R most likely corresponds to and that the QTL on chromosome 5A is likely to be . Furthermore, we observed a temporal trend in registered cultivars with a decreasing plant height during the past decades, accompanied by an increasing use of the height-reducing alleles at the identified QTL. In summary, our results shed new light on the genetic control of plant height in triticale and open new avenues for future improvement by breeding.
数量遗传性状株高在小黑麦育种计划中经常被评估,因为它对倒伏和病害易感性有重大影响,是生物量产量的主要贡献因素,并且在杂交育种计划中,通过微调雌性和雄性亲本群体的株高来提高杂交种子产量时也需要考虑。在本研究中,我们评估了一组846个来自中欧的不同小黑麦基因型,通过全基因组关联作图来剖析株高的遗传结构。这揭示了在5A、4B和5R染色体上有三个中等到大效应的QTL。对假定QTL的遗传和物理精细定位表明,5R染色体上的QTL最有可能对应于 ,5A染色体上的QTL可能是 。此外,我们观察到在过去几十年中登记品种的株高呈下降趋势,同时在已鉴定的QTL上降低株高的等位基因的使用频率增加。总之,我们的结果为小黑麦株高的遗传控制提供了新的见解,并为未来通过育种进行改良开辟了新途径。