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Comparative physical mapping between wheat chromosome arm 2BL and rice chromosome 4

Authors
Lee, Tong GeonLee, Yong JinKim, Dae YeonSeo, Yong Weon
Issue Date
Dec-2010
Publisher
SPRINGER
Keywords
Wheat chromosome arm 2BL; Comparative physical mapping; High variance probe (HVP)
Citation
GENETICA, v.138, no.11-12, pp.1277 - 1296
Indexed
SCIE
SCOPUS
Journal Title
GENETICA
Volume
138
Number
11-12
Start Page
1277
End Page
1296
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/115183
DOI
10.1007/s10709-010-9528-y
ISSN
0016-6707
Abstract
Physical maps of chromosomes provide a framework for organizing and integrating diverse genetic information. DNA microarrays are a valuable technique for physical mapping and can also be used to facilitate the discovery of single feature polymorphisms (SFPs). Wheat chromosome arm 2BL was physically mapped using a Wheat Genome Array onto near-isogenic lines (NILs) with the aid of wheat-rice synteny and mapped wheat EST information. Using high variance probe set (HVP) analysis, 314 HVPs constituting genes present on 2BL were identified. The 314 HVPs were grouped into 3 categories: HVPs that match only rice chromosome 4 (298 HVPs), those that match only wheat ESTs mapped on 2BL (1), and those that match both rice chromosome 4 and wheat ESTs mapped on 2BL (15). All HVPs were converted into gene sets, which represented either unique rice gene models or mapped wheat ESTs that matched identified HVPs. Comparative physical maps were constructed for 16 wheat gene sets and 271 rice gene sets. Of the 271 rice gene sets, 257 were mapped to the 18-35 Mb regions on rice chromosome 4. Based on HVP analysis and sequence similarity between the gene models in the rice chromosomes and mapped wheat ESTs, the outermost rice gene model that limits the translocation breakpoint to orthologous regions was identified.
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