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现代小麦育种中1RS.1AL和1RS.1BL易位系的长期传播

Permanent Spreading of 1RS.1AL and 1RS.1BL Translocations in Modern Wheat Breeding.

作者信息

Korobkova Varvara A, Bespalova Ludmila A, Yanovsky Aleksey S, Chernook Anastasiya G, Kroupin Pavel Yu, Arkhipov Andrey V, Yurkina Anna I, Nazarova Lubov A, Mudrova Aleksandra A, Voropaeva Anastasiya D, Puzyrnaya Olga Yu, Agaeva Elena V, Karlov Gennady I, Divashuk Mikhail G

机构信息

All-Russia Research Institute of Agricultural Biotechnology, 127550 Moscow, Russia.

P.P. Lukyanenko National Grain Centre, Department of Breeding and Seed Production of Wheat and Triticale, Central Estate of KNIISH, 350012 Krasnodar, Russia.

出版信息

Plants (Basel). 2023 Mar 7;12(6):1205. doi: 10.3390/plants12061205.

Abstract

Wheat-rye translocations 1RS.1BL and 1RS.1AL are used in bread wheat breeding worldwide because a short arm of rye chromosome 1 (1RS) when introgressed into the wheat genome confers resistance to diseases, pests and better performance under drought-stress conditions. However, in durum wheat genotypes, these translocations occur only in experimental lines, although their advantages could enhance the potential of this crop. P.P. Lukyanenko National Grain Centre (NGC) has successfully developed commercially competitive cultivars of bread and durum wheat demanded by many agricultural producers in the South of Russia for decades. Here, 94 accessions of bread and 343 accessions of durum wheat, representing lines and cultivars from collection, competitive variety trials and breeding nursery developed at NGC were screened for 1RS using PCR markers and genomic in situ hybridization. The 1RS.1BL and 1RS.1AL translocations were detected in 38 and 6 bread wheat accessions, respectively. None of the durum wheat accessions showed translocation, despite the fact that some of them had 1RS.1BL donors in their pedigree. The absence of translocations in the studied durum wheat germplasm can be caused by the negative selection of 1RS carriers at different stages of the breeding process due to low quality and difficulties in transferring rye chromatin through wheat gametes.

摘要

小麦-黑麦易位系1RS.1BL和1RS.1AL在全球面包小麦育种中被广泛应用,因为黑麦1号染色体的短臂(1RS)导入小麦基因组后,能使小麦对病虫害具有抗性,并在干旱胁迫条件下表现更佳。然而,在硬粒小麦基因型中,这些易位系仅出现在实验品系中,尽管它们的优势能够提升这种作物的潜力。几十年来,俄罗斯南部许多农业生产者所需求的具有商业竞争力的面包小麦和硬粒小麦品种,由P.P. 卢基扬年科国家谷物中心(NGC)成功培育出来。在此,利用PCR标记和基因组原位杂交技术,对代表NGC收集的品系和品种、竞争性品种试验以及育种苗圃中的94份面包小麦种质和343份硬粒小麦种质进行了1RS筛选。在38份面包小麦种质和6份面包小麦种质中分别检测到了1RS.1BL和1RS.1AL易位系。尽管部分硬粒小麦种质的系谱中有1RS.1BL供体,但所有硬粒小麦种质均未显示出易位现象。在所研究的硬粒小麦种质中未出现易位系,可能是由于在育种过程的不同阶段,1RS携带者因品质不佳以及通过小麦配子转移黑麦染色质存在困难而被负面选择。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/911f/10051305/7306e26ad983/plants-12-01205-g001.jpg

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