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  • 1
    Electronic Resource
    Electronic Resource
    Springer
    Theoretical and applied genetics 97 (1998), S. 1042-1046 
    ISSN: 1432-2242
    Keywords: Key words T. aestivum ; H. villosa ; C-banding ; RFLP ; Deletion mapping ; Pm21
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology
    Notes: Abstract  Three deletion lines (del6V?2S-1, del6V? 2L-1, and del6V?2L-2) of Haynaldia villosa chromosome 6V added to wheat were identified by C-banding and characterized by RFLP analyses. The breakpoints were located at fraction lengths (FL) 0.58 in del6V?2S-1 in the short arm, and FL 0.66 in del6V?2L-1 and FL 0.64 in del6V?2L-2 in the long arm. Thirty-one Triticeae homoeologous group-6 DNA probes were used to map RFLP loci in the deletion lines and the wheat-H. villosa disomic substitution (DS) line 6V?2(6A). Nine probes failed to detect polymorphism between Chinese Spring and DS6V?2(6A). Ten of sixteen polymorphic short-arm loci were not detected in del6V?2S-1. Thus, the loci are located in the deleted distal chromosome region. Six RFLP markers were mapped in the proximal 58% of 6VS. Of 20 DNA markers specific for 6VL, six mapped in the distal 36% of the long arm, and nine mapped in the proximal 64% of 6VL. The breakpoint of the short arm of 6V?2 occurs between Xpsr106 and Xcdo270, and that of the long arm between Xpsr915 and Xmwg934. The powdery mildew resistance gene Pm21 is located on the short arm of chromosome 6V?2. Pm21 is present in del6V?2S-1, and can be further mapped in the proximal 58% of 6V?2S.
    Type of Medium: Electronic Resource
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  • 2
    Publication Date: 2022-05-25
    Description: Author Posting. © American Geophysical Union, 2006. This article is posted here by permission of American Geophysical Union for personal use, not for redistribution. The definitive version was published in Geochemistry Geophysics Geosystems 7 (2006): Q05022, doi:10.1029/2005GC001138.
    Description: In this study we use microsampling techniques to explore diagenetic processes in carbonates. These processes are important as they can affect the accuracy of U series chronometry. Fission track maps of deep-sea scleractinian corals show a threefold difference between the minimum and maximum [U] in modern corals, which is reduced to a factor of 2 in fossil corals. We use micromilling and MC-ICP-MS to make detailed analyses of the [U] and δ234Uinitial distributions in corals from 218 ka to modern. Within each fossil coral we observe a large range of δ234Uinitial values, with high δ234Uinitial values typically associated with low [U]. A simple model shows that this observation is best explained by preferential movement of alpha-decay produced 234U atoms (alpha-recoil diffusion). Open-system addition of 234U may occur when alpha-recoil diffusion is coupled with a high [U] surface layer, such as organic material. This process can result in large, whole-coral δ234Uinitial elevations with little effect on the final age. The diagenetic pathways that we model are relevant to both shallow-water and deep-sea scleractinian corals since both exhibit primary [U] heterogeneity and may be subject to U addition.
    Description: We gratefully acknowledge The Comer Foundation for Abrupt Climate Change.
    Keywords: Uranium ; Diagenesis ; Coral ; Dating
    Repository Name: Woods Hole Open Access Server
    Type: Article
    Format: 3227826 bytes
    Format: application/pdf
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