• 我要登录|
  • 免费注册
    |
  • 我的丁香通
    • 企业机构:
    • 成为企业机构
    • 个人用户:
    • 个人中心
  • 移动端
    移动端
丁香通 logo丁香实验_LOGO
搜实验

    大家都在搜

      大家都在搜

        0 人通过求购买到了急需的产品
        免费发布求购
        发布求购
        点赞
        收藏
        wx-share
        分享

        植物信号转导中的MAPK级联途径

        互联网

        2424
        相关专题
        MAPK信号通路专题
        <center> </center>

        MAPK diverse_plants:Our current studies focus on five MAPK cascades, including those involved in osmotic stress responses, Flg22 peptide-mediated defense responses, the ethylene pathway, and auxin and H2O2 signaling. The overall strategy involves the identification and cloning of the complete set of Arabidopsis genes encoding MAPKs, MAPKKs, MAPKKKs, and relevant protein phosphatases. Transient expression of epitope-tagged MAPKs, MAPKKs, and MAPKKKs will be used to determine which MAPK cascades respond to particular abiotic or biotic stress or hormone signals in Arabidopsis and maize protoplasts. Constitutively active and dominant negative forms of these MAPKKKs and MAPKKs will be used to identify specific reporter genes associated with particular signaling pathways. DNA array technology will be used to analyze MAPK-related gene expression patterns, and to reveal new downstream targets and crosstalk between specific MAPK cascades. Identification of Arabidopsis knockout mutants corresponding to key MAPK-related regulatory genes will be initiated. Transgenic Arabidopsis, maize and soybean plants that overexpress particular engineered MAPKKK and MAPKK genes will be generated. The transgenic plants will be tested for the exhibition of agronomically useful traits.

        ad image
        提问
        扫一扫
        丁香实验小程序二维码
        实验小助手
        丁香实验公众号二维码
        扫码领资料
        反馈
        TOP
        打开小程序