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外源染色体锚定定位(AMAC)片段定位方法在油菜-萝卜种间杂种后代萝卜染色体片段鉴定中的应用

Application of an Anchor Mapping of Alien Chromosome (AMAC) Fragment Localization Method in the Identification of Radish Chromosome Segments in the Progeny of Rape-Radish Interspecific Hybrids.

作者信息

Zu Feng, Li Xia, Chen Wei, Wang Jingqiao, Luo Yanqing, Mehmood Sultan, Fan Chuchuan, Li Jinfeng, Dong Yunsong, Zhou Yongming, Li Genze

机构信息

National Key Laboratory of Crop Genetic Improvement, Huazhong Agricultural University, Wuhan 430070, China.

Industrial Crops Research Institute, Yunnan Academy of Agricultural Sciences, Kunming 650225, China.

出版信息

Int J Mol Sci. 2024 Dec 21;25(24):13687. doi: 10.3390/ijms252413687.

Abstract

Rape () is an important oilseed crop widely cultivated worldwide. Due to its relatively short evolutionary and domestication history, its intra-species genetic diversity is limited. Radish (), belonging to a different genus but the same family as , possesses an abundance of excellent gene resources. It is commonly used for germplasm improvement and genetic basis expansion, making it one of the most important close relatives for distant hybridization. In the present study, a novel method for detecting alien chromosome fragments, called Anchor Mapping of Alien Chromosome (AMAC) was used to identify radish chromosome segments in the progeny of rape-radish interspecific hybrids. Based on the AMAC method, 126,861 pairs of IP (Intron Polymorphism) and 76,764 pairs of SSR (Simple Sequence Repeat) primers were developed using the radish Rs1.0 reference genome. A total of 44,176 markers (23,816 pairs of IP and 20,360 pairs of SSR markers) were predicted to be radish genome specific-single-locus (SSL) markers through electronic PCR analysis among four one , one one , and one reference genome. Among them, 626 randomly synthesized SSL markers (478 SSL IP markers and 148 SSL SSR markers) were used to amplify the genome of 24 radish samples (), 18 rape (), 2 Chinese cabbage (), 2 kale (), and 2 mustard () samples, respectively. Then, 333 SSL markers of the radish genome were identified, which only amplified in the radish genome and not in any species genome, including 192 IP markers and 141 SSR markers. Furthermore, these validated SSL markers were used to identify alien chromosome fragments in Ogura-CMS restorer line 16C, Ogura-CMS sterile line 81A, and their hybrid-Yunyouza15. In 16C, one marker, Rs1.0025823_intron_3, had an amplification product designated as anchor marker for the alien chromosome fragment of 16C. Afterwards, four novel radish genome-specific IP markers were found to be flanking the anchor marker, and it was determined that the alien chromosome segment in 16C originated from the region 8.4807-11.7798 Mb on radish chromosome R9, and it was approximately 3.2991 Mb in size. These results demonstrate that the AMAC method developed in this study is efficient, convenient, and cost-effective for identifying excellent alien chromosome fragments/genes in distant hybrid progeny, and it can be applied to the molecular marker-assisted breeding and hybrid identification of radish and crop species.

摘要

油菜()是一种重要的油料作物,在全球广泛种植。由于其进化和驯化历史相对较短,其种内遗传多样性有限。萝卜()与油菜同科不同属,拥有丰富的优良基因资源。它常用于种质改良和扩大遗传基础,是远缘杂交最重要的近缘种之一。在本研究中,一种名为异源染色体锚定定位(AMAC)的检测异源染色体片段的新方法被用于鉴定油菜 - 萝卜种间杂种后代中的萝卜染色体片段。基于AMAC方法,利用萝卜Rs1.0参考基因组开发了126,861对IP(内含子多态性)引物和76,764对SSR(简单序列重复)引物。通过在四个油菜、一个白菜、一个甘蓝和一个萝卜参考基因组间的电子PCR分析,共预测出44,176个标记(23,816对IP和20,360对SSR标记)为萝卜基因组特异性单一位点(SSL)标记。其中,626个随机合成的SSL标记(478个SSL IP标记和148个SSL SSR标记)分别用于扩增24个萝卜样本()、18个油菜()、2个大白菜()、2个羽衣甘蓝()和2个芥菜()样本的基因组。随后,鉴定出333个萝卜基因组的SSL标记,它们仅在萝卜基因组中扩增,而不在任何其他物种基因组中扩增,包括192个IP标记和141个SSR标记。此外,这些经过验证的SSL标记被用于鉴定小甘蓝型油菜细胞质雄性不育恢复系16C、小甘蓝型油菜细胞质雄性不育系81A及其杂交种云油杂15中的异源染色体片段。在16C中,一个标记Rs1.0025823_intron_3有一个扩增产物,被指定为16C异源染色体片段的锚定标记。之后,发现四个新的萝卜基因组特异性IP标记位于该锚定标记两侧,并确定16C中的异源染色体片段起源于萝卜R9染色体上8.4807 - 11.7798 Mb区域,大小约为3.2991 Mb。这些结果表明,本研究开发的AMAC方法在鉴定远缘杂交后代中的优良异源染色体片段/基因方面高效、便捷且经济,可应用于萝卜及其他作物的分子标记辅助育种和杂种鉴定。

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