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携带黑麦属特异籽粒硬度基因的小麦-非洲黑麦5R(a)染色体衍生物的鉴定

Characterization of wheat-Secale africanum chromosome 5R(a) derivatives carrying Secale specific genes for grain hardness.

作者信息

Li Guangrong, Gao Dan, La Shixiao, Wang Hongjin, Li Jianbo, He Weilin, Yang Ennian, Yang Zujun

机构信息

School of Life Science and Technology, University of Electronic Science and Technology of China, Chengdu, 610054, China.

Crop Research Institute, Sichuan Academy of Agricultural Sciences, Chengdu, 610066, Sichuan, China.

出版信息

Planta. 2016 May;243(5):1203-12. doi: 10.1007/s00425-016-2472-z. Epub 2016 Feb 16.

Abstract

New wheat- Secale africanum chromosome 5R (a) substitution and translocation lines were developed and identified by fluorescence in situ hybridization and molecular markers, and chromosome 5R (a) specific genes responsible for grain hardness were isolated. The wild species, Secale africanum Stapf. (genome R(a)R(a)), serves as a valuable germplasm resource for increasing the diversity of cultivated rye (S. cereale L., genome RR) and providing novel genes for wheat improvement. In the current study, fluorescence in situ hybridization (FISH) and molecular markers were applied to characterize new wheat-S. africanum chromosome 5R(a) derivatives. Labeled rye genomic DNA (GISH) and the Oligo-probes pSc119.2 and pTa535 (FISH) were used to study a wheat-S. africanum amphiploid and a disomic 5R(a) (5D) substitution, and to identify a T5DL.5R(a)S translocation line and 5R(a)S and 5R(a)L isotelosome lines. Twenty-one molecular markers were mapped to chromosome 5R(a) arms which will facilitate future rapid identification of 5R(a) introgressions in wheat backgrounds. Comparative analysis of the molecular markers mapped on 5R(a) with homoeologous regions in wheat confirmed a deletion on the chromosome T5DL.5R(a)S, which suggests that the wheat-S. africanum Robertsonian translocation involving homologous group 5 may not be fully compensating. Complete coding sequences at the paralogous puroindoline-a (Pina) and grain softness protein gene (Gsp-1) loci from S. africanum were cloned and localized onto the short arm of chromosome 5R(a). The S. africanum chromosome 5R(a) substitution and translocation lines showed a reduction in the hardness index, which may be associated with the S. africanum- specific Pina and Gsp-1 gene sequences. The present study reports the production of novel wheat-S. africanum chromosome 5R(a) stripe rust resistant derivatives and new rye-specific molecular markers, which may find application in future use of wild Secale genome resources for grain quality studies and disease resistance breeding.

摘要

通过荧光原位杂交和分子标记开发并鉴定了新型小麦-非洲黑麦5R(a)染色体代换系和易位系,并分离出了与籽粒硬度相关的5R(a)染色体特异性基因。野生种非洲黑麦(Secale africanum Stapf.,基因组R(a)R(a))是一种宝贵的种质资源,可用于增加栽培黑麦(S. cereale L.,基因组RR)的多样性,并为小麦改良提供新基因。在本研究中,应用荧光原位杂交(FISH)和分子标记对新型小麦-非洲黑麦5R(a)染色体衍生物进行了表征。使用标记的黑麦基因组DNA(GISH)以及寡核苷酸探针pSc119.2和pTa535(FISH)来研究小麦-非洲黑麦双二倍体和二体5R(a)(5D)代换系,并鉴定T5DL.5R(a)S易位系以及5R(a)S和5R(a)L等臂染色体系。将21个分子标记定位到5R(a)染色体臂上,这将有助于未来在小麦背景中快速鉴定5R(a)渐渗系。对定位在5R(a)上的分子标记与小麦同源区域进行比较分析,证实了T5DL.5R(a)S染色体上存在一个缺失,这表明涉及第5同源群的小麦-非洲黑麦罗伯逊易位可能没有完全补偿。克隆了非洲黑麦中同源的麦谷蛋白前体-a(Pina)和籽粒软度蛋白基因(Gsp-1)位点的完整编码序列,并将其定位到5R(a)染色体短臂上。非洲黑麦5R(a)染色体代换系和易位系的硬度指数降低,这可能与非洲黑麦特异的Pina和Gsp-1基因序列有关。本研究报道了新型抗条锈病的小麦-非洲黑麦5R(a)染色体衍生物的创制以及新的黑麦特异性分子标记,这些可能会在未来利用野生黑麦基因组资源进行籽粒品质研究和抗病育种中得到应用。

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