Lukaszewski Adam J
Department of Botany and Plant Sci., University of California, Riverside, CA, 92521, USA.
Theor Appl Genet. 2017 Dec;130(12):2521-2526. doi: 10.1007/s00122-017-2973-6. Epub 2017 Aug 23.
Engineered chromosomes 1BS and 1RS offer a new alternative in the development of hybrid systems in bread wheat and triticale. In the cytoplasmic male sterility system for hybrid wheat based on the cytoplasm of Triticum timopheevi fertility restoration is difficult, with few good restorer genes available. In the system based on the cytoplasms of Aegilops kotschyi, Ae. uniaristata and Ae. mutica, essentially all chromosomes 1B carry locus Rf that restores male fertility; male sterility manifests itself in wheats with the 1RS.1BL translocation where 1BS chromosome arm is missing. To generate male sterile wheats without the 1RS.1BL translocation, the 1BS arm was cytogenetically engineered to replace the segment with Rf with two short inserts of rye chromatin. Conversely, to enhance fertility restoration by doubling the number of restorers present for eventual use in wheat and triticale, a region of 1BS with Rf was inserted into 1RS. Alloplasmic wheats with Rf removed were completely male sterile; alloplasmic wheats with engineered 1RS carrying Rf and without normal 1B were male fertile. An exception to the ubiquitous presence of Rf is T. spelta var. duhamelianum; four accessions tested in this study gave inconsistent results but some did not restore male fertility. Engineered chromosomes 1BS and 1RS and chromosomes 1B of T. spelta offer a new alternative for practical application of a cytoplasmic male sterility system in the development of hybrid wheat and hexaploid triticale.
人工构建的1BS和1RS染色体为面包小麦和小黑麦杂交系统的开发提供了新的选择。在基于提莫菲维小麦细胞质的杂交小麦细胞质雄性不育系统中,育性恢复困难,可用的优良恢复基因很少。在基于节节麦、单芒山羊草和多小穗山羊草细胞质的系统中,基本上所有1B染色体都携带恢复雄性育性的Rf位点;雄性不育在具有1RS.1BL易位且缺失1BS染色体臂的小麦中表现出来。为了产生不具有1RS.1BL易位的雄性不育小麦,对1BS染色体臂进行了细胞遗传学改造,用两个短的黑麦染色质插入片段取代了带有Rf的片段。相反,为了通过增加恢复基因的数量来提高育性恢复能力,最终用于小麦和小黑麦,将带有Rf的1BS区域插入到1RS中。去除Rf的异质小麦完全雄性不育;带有经改造的携带Rf且没有正常1B的1RS的异质小麦雄性可育。Rf普遍存在的一个例外是斯卑尔脱小麦变种杜哈梅尔小麦;本研究中测试的四个材料结果不一致,但有些不能恢复雄性育性。人工构建的1BS和1RS染色体以及斯卑尔脱小麦的1B染色体为细胞质雄性不育系统在杂交小麦和六倍体小黑麦开发中的实际应用提供了新的选择。