文化大學機構典藏 CCUR:Item 987654321/24204
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    jsp.display-item.identifier=請使用永久網址來引用或連結此文件: https://irlib.pccu.edu.tw/handle/987654321/24204


    题名: Natural variation, functional divergence, and local adaptation of nucleotide binding site sequences in Rhododendron (Ericaceae)
    作者: Liao, PC (Liao, Pei-Chun)
    Chung, JD (Chung, Jeng-Der)
    Chen, CL (Chen, Chia-Ling)
    Hwang, CJ (Hwang, Chiun-Jr)
    Sung, YH (Sung, Ya-Hsiu)
    Chang, YT (Chang, Yung-Ta)
    Hwang, SY (Hwang, Shih-Ying)
    贡献者: Grad Inst Biotechnol
    关键词: Functional divergence
    Local adaptation
    Nucleotide-binding-site domain
    Rhododendron
    Positive selection
    日期: 2012-08
    上传时间: 2013-02-20 11:03:00 (UTC+8)
    摘要: To further understand natural variation and local adaptation in the evolution of plant defense, we analyzed polymorphism data of nucleotide-binding site (NBS) sequences of Rhododendron at both the species and population levels. Multiple duplication events were found in NBS sequence evolution in Rhododendron genomes, which resulted in six clades: A-F. Our results of several NBS clade pair comparisons showed significant evolutionary rate changes based on differences in substitution rates between NBS-encoding protein clades (type I functional divergence). Pairwise comparisons of NBS clades further revealed that many amino acids displayed radical biochemical property changes causing a shift in amino acid preferences between NBS-encoding protein clades (type II functional divergence). Such divergent evolution of NBSs is likely a consequence of positive selection related to differentiation of recognition signals in response to different pathogens. Primers specific to clades B and C, which differed in the number of radical amino acid changes causing type II functional divergence and levels of nucleotide diversities, were further used to amplify population clades B and C NBS sequences of Rhododendron formosanum populations. Higher levels of net nucleotide divergences (measured by D (a)) between R. formosanum populations were found based on NBS sequences of population clade B compared to population clade C, suggesting local adaptation of population clade B NBS sequences. Local adaptation can be further inferred for R. formosanum population clade B NBS sequences because of significant I broken vertical bar (ST) based on variation in nonsynonymous substitutions. Furthermore, local adaptation was also suggested by no significant correlation of population pairwise F (ST) between population clades B and C in R. formosanum.
    關聯: TREE GENETICS & GENOMES 卷: 8 期: 4 頁數: 879-893
    显示于类别:[生物科技研究所 ] 期刊論文

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