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Localization of S Genes on Extended DNA Fibers(EDFs)in Brassica oleracea by High-Resolution FISH 被引量:5
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作者 YANG Kun QI Hong-Yan +1 位作者 ZHU Li-Quan WANG Xiao-Jia 《Acta Genetica Sinica》 SCIE CAS CSCD 北大核心 2006年第3期277-284,共8页
The compactness of plant chromosome and the structures of plant cell wall and cytoplasm pose a great resistance to fluorescence in situ hybridization(FISH),and consequently many new methods for improving spatial resol... The compactness of plant chromosome and the structures of plant cell wall and cytoplasm pose a great resistance to fluorescence in situ hybridization(FISH),and consequently many new methods for improving spatial resolution are being exploited to overcome these problems.However,for plants with small chromosomes like rice and Brassica,there are still many difficulties.In this article a new and effective technique for preparation of extended DNA fibers(EDFs),using a series of treatments to prophase I chromosomes of Brassica oleracea PMCs,is presented.This technique allows longitudinal extension of the chromosomes 30-107 times longer than those of their metaphase counterparts.The length of the extended DNA fibers is between 89μm and 273μm,and the space resolution is 42.8-53.0 kb.Stretching ratios were assessed in a number of FISH experiments with super-stretched chromosomes from meiotic prophase I nuclei ofB.olerecea.Through FISH to EDFs of pachytene chromosomes hybridized in situ with SRK(S-locus receptor kinase)and SPⅡ(S-locus proteinⅡ)probes,for the first time we localized the accurate positions of S-locus and quantitatively analyzed the features of S genes in B.oleracea genome to show all S genes were single-copied.In addition,the length between two linked genes was measured to be about one micron.As a result,the highest space resolution which was about 4 kb was obtained. 展开更多
关键词 spatial resolution preparation of EDFs S-LOCUS receding interface edf-fish localization of S genes quantitatively analyze mapping
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FISH技术在芸薹属作物基因组研究中的应用进展 被引量:3
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作者 轩淑欣 冯大领 +3 位作者 李岩宾 赵玉靖 张成合 申书兴 《园艺学报》 CAS CSCD 北大核心 2013年第9期1710-1718,共9页
FISH技术是进行基因和重复DNA序列在染色体上可视化作图的精确有效方法,已广泛应用于特异核苷酸序列的物理作图、基因组或染色体的识别、DNA序列的定量分析以及着丝粒、染色质空间结构分析等方面。综述了FISH技术在芸薹属作物基因组研... FISH技术是进行基因和重复DNA序列在染色体上可视化作图的精确有效方法,已广泛应用于特异核苷酸序列的物理作图、基因组或染色体的识别、DNA序列的定量分析以及着丝粒、染色质空间结构分析等方面。综述了FISH技术在芸薹属作物基因组研究中的重要进展,并讨论了其应用前景。 展开更多
关键词 芸薹属作物 荧光原位杂交 细胞遗传学 染色体涂染 伸展DNA纤维
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