Li Qingfeng, Lu Yuqing, Pan Cuili, Yao Miaomiao, Zhang Jinpeng, Yang Xinming, Liu Weihua, Li Xiuquan, Xi Yajun, Li Lihui
College of Agronomy, Northwest A&F University, Yangling, Shaanxi, 712100, China.
National Key Facility for Crop Gene Resources and Genetic Improvement, Institute of Crop Science, Chinese Academy of Agricultural Sciences, Beijing, 100081, China.
PLoS One. 2016 Nov 8;11(11):e0165957. doi: 10.1371/journal.pone.0165957. eCollection 2016.
Creation of wheat-alien disomic addition lines and localization of desirable genes on alien chromosomes are important for utilization of these genes in genetic improvement of common wheat. In this study, wheat-Agropyron cristatum derivative line 5113 was characterized by genomic in situ hybridization (GISH) and specific-locus amplified fragment sequencing (SLAF-seq), and was demonstrated to be a novel wheat-A. cristatum disomic 6P addition line. Compared with its parent Fukuhokomugi (Fukuho), 5113 displayed multiple elite agronomic traits, including higher uppermost internode/plant height ratio, larger flag leaf, longer spike length, elevated grain number per spike and spikelet number per spike, more kernel number in the middle spikelet, more fertile tiller number per plant, and enhanced resistance to powdery mildew and leaf rust. Genes conferring these elite traits were localized on the A. cristatum 6P chromosome by using SLAF-seq markers and biparental populations (F1, BC1F1 and BC1F2 populations) produced from the crosses between Fukuho and 5113. Taken together, chromosomal localization of these desirable genes will facilitate transferring of high-yield and high-resistance genes from A. cristatum into common wheat, and serve as the foundation for the utilization of 5113 in wheat breeding.
创建小麦-外源二体附加系并将优良基因定位在外源染色体上,对于在普通小麦遗传改良中利用这些基因具有重要意义。本研究通过基因组原位杂交(GISH)和特异位点扩增片段测序(SLAF-seq)对小麦-冰草衍生系5113进行了鉴定,结果表明其为一个新型的小麦-冰草6P二体附加系。与亲本农林26号相比,5113表现出多个优良农艺性状,包括较高的最上节间长/株高比、较大的旗叶、较长的穗长、每穗粒数和小穗数增加、中部小穗粒数增多、单株有效分蘖数增加以及对白粉病和叶锈病的抗性增强。利用SLAF-seq标记和由农林26号与5113杂交产生的双亲群体(F1、BC1F1和BC1F2群体),将赋予这些优良性状的基因定位在冰草6P染色体上。综上所述,这些优良基因的染色体定位将有助于把冰草的高产和高抗基因导入普通小麦,并为5113在小麦育种中的利用奠定基础。