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An Extended Genetic Linkage Map for Watermelon Based on a Testcross and a BC<sub>2</sub>F<sub>2</sub>Population
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作者 Amnon Levi Patrick Wechter +2 位作者 Laura Massey Louisa Carter Donald Hopkins 《American Journal of Plant Sciences》 2011年第2期93-110,共18页
There is limited genetic mapping data useful for breeding programs of watermelon. Introgression lines should be a use-ful tool for genetic studies and genetic enhancement of watermelon cultivars. In this study, we use... There is limited genetic mapping data useful for breeding programs of watermelon. Introgression lines should be a use-ful tool for genetic studies and genetic enhancement of watermelon cultivars. In this study, we used an advanced re-combinant population (BC2F2) to identify and map chromosomal segments of the wild watermelon Citrullus lanatus var. citroides that were incorporated in the genome of the watermelon cultivar Crimson Sweet (Citrullus lanatus var. lana-tus). An advanced recombinant population (BC2F2) was constructed using a United States Plant Introduction (PI) 494817 (C. lanatus var. citroides) (known to have moderate resistance to bacterial fruit blotch) as a donor parent, and the elite watermelon cultivar Crimson Sweet (C. lanatus var. lanatus) as the recurrent parent. The genetic linkage map consists of 272 markers, including 89 sequence-related amplified polymorphism (SRAP), 72 targeted region amplifica-tion polymorphism (TRAP), and 111 high frequency oligonucleotide-targeting active gene (HFO-TAG) markers. The 272 markers were assembled into 51 linkage groups, covering a total genetic distance of 2162 cM, with an average genetic distance of 7.9 cM between markers. Also, we expended the genetic linkage map for watermelon derived from a testcross population {Griffin 14113 [C. lanatus var. citroide (L.H. Bailey) Mansf.] x watermelon cultivar New Hamp-shire Midget (C. lanatus var. lanatus)} x PI 386015 [C. colocynthis (L.) Schrad.]. The genetic linkage map based on the test cross population consists of 558 markers that cover a genetic distance of 2760.8 cM. This linkage map consists of 41 linkage group, including 10 large linkage groups (ranging from102-240 cM), nine intermediate size linkage groups (ranging from 62-93 cM), and 22 small linkage groups (ranging from 2-56 cM). Comparative mapping between these two linkage maps identified high consensus in 25 HFO-TAG markers and one TRAP marker that represent 8 linkage groups in the BC2F2 population and 9 linkage groups in the testcross population. These results indicate that HFO-TAG markers should be useful in comparative mapping. The extended genetic maps and the genetic population in this study should be useful in breeding programs using marker assisted selection and should serve as a platform for further de-velopment of introgression lines for watermelon. 展开更多
关键词 Testcross RECOMBINANT POPULATION SRAP TRAP hfo-tag DNA Markers Genetic Diversity Comparative Mapping
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花生栽野种间杂交异源多倍化早期世代基因表达变化分析
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作者 高忠奎 熊发前 +8 位作者 韩柱强 蒋菁 黄志鹏 唐秀梅 吴海宁 钟瑞春 刘菁 唐荣华 贺梁琼 《分子植物育种》 CAS CSCD 北大核心 2020年第6期1867-1875,共9页
为了进一步认识花生种间杂交异源多倍体进化过程中的基因表达变化规律,采用cDNA-HFO-TAG技术,研究花生种间杂交组合(四倍体栽培种‘仲恺花4号’×二倍体野生种Arachis. diogio)杂种F_1和早期多倍体世代S0~S3的基因表达变化情况。14... 为了进一步认识花生种间杂交异源多倍体进化过程中的基因表达变化规律,采用cDNA-HFO-TAG技术,研究花生种间杂交组合(四倍体栽培种‘仲恺花4号’×二倍体野生种Arachis. diogio)杂种F_1和早期多倍体世代S0~S3的基因表达变化情况。14条HFO-TAG引物共扩增出121条cDNA片段,其中差异片段84个,主要包括三种类型:亲本转录物完全沉默(3个),双亲转录物在后代部分材料中沉默(59个)和新转录物激活(22个),上述变化在F1代即开始发生。筛选其中大小为500~2 000 bp的35个TDFs进行克隆测序,有27个和NCBI数据库中已录入的基因具有较高的相似性,包括抗逆相关基因(10条)、未知功能蛋白基因(8条)、能量与代谢相关基因(7条)和转录因子相关的基因(2条)。这些研究结果进一步表明在花生种间杂交异源多倍化早期发生着快速、剧烈的基因表达变化,从中获得的差异基因片段,有助于了解花生属种间杂交异源多倍化早期分子机制变化,这对有效利用野生花生种质优异基因具有重要意义。cDNA-HFO-TAG技术简单、有效且实用,完全适用于花生属基因表达变化研究,可以作为花生属及其它物种基因表达变化分析技术的有效补充。 展开更多
关键词 花生 种间杂交 异源多倍化 cDNA-hfo-tag 基因表达
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