团队队伍

Teaching Staff

生物技术系

首页 >> 团队队伍 >> 专任教师 >> 生物技术系 >> 正文

侯力峰

发布日期:2023-03-09    来源:必威BETWAY官网     点击:
职称


19EEE


侯力峰

副教授

研究方向:菌根生物学(植物与益生菌互作)

联系方式:hebaushmhlf@163.com

办公室:西校区必威BETWAY官网B-2110

办公电话:0312-7528245

主讲课程

《生物化学》

教育背景

河北老员工物学专业博士(2020

主持课题

1)国家自然科学基金青年项目:渤海湾滨海盐碱地盐地碱蓬深色有隔内生真菌多样性与生态功能研究(在研,主持)

2)betway必威引进人才科研专项项目:深色有隔内生真菌(DSE)对玉米促生抗逆机制研究(在研,主持)

3)河北省创新项目:不同植物来源的DSE菌种资源及耐盐性研究(已结题,主持)。

代表性学术成果

近期论文:

  1. Lifeng Hou, Jie Yu, Lili Zhao, Xueli He. Dark Septate Endophytes Improve the Growth and the Tolerance of Medicago sativa and Ammopiptanthus mongolicus Under Cadmium Stress. Front. Microbiol. 2020, 10, 3061.

    2) Lifeng Hou, Xueli He , Xia Li, Shaojie Wang, Lili Zhao. Species composition and colonization of dark septate endophytes are affected by host plant species and soil depth in the Mu Us sandland, northwest China. Fungal Ecol. 2019, 39, 276-284.

    3) Lifeng Hou, Xia Li, Xueli He, Yiling Zuo, Dongdong Zhang, Lili Zhao. Effect of dark septate endophytes on plant performance of Artemisia ordosica and associated soil microbial functional group abundance under salt stress. 2021. Appl Soil Ecol. 2021, 165: 103998.

    4) Min Li, Lifeng Hou, Jiaqiang Liu, Jingya Yang, Yiling Zuo, Lili Zhao, Xueli He. Growth-promoting effects of dark septate endophytes on the non-mycorrhizal plant Isatis indigotica under different water conditions. 2021. Symbiosis. 85: 291-303.

    5) Xia Li, Xueli He, Lifeng Hou, Ying Ren, Shaojie Wang, Fang Su. Dark septate endophytes isolated from a xerophyte plant promote the growth of Ammopiptanthus mongolicus under drought condition. Sci. Rep. 2018, 8, 7896.

    6) Linlin Xie, Xueli He, Kun Wang, Lifeng Hou, Qian Sun. Spatial dynamics of dark septate endophytes in the roots and rhizospheres of Hedysarum scoparium in northwest China and the influence of edaphic variables. Fungal Ecol. 2017, 26, 135-143.

    7) Xia Li, Chao He, Xueli He, Fang Su, Lifeng Hou, Ying Ren, Yiting Hou. Dark septate endophytes improve the growth of host and non-host plants under drought stress through altered root development. Plant Soil. 2019, 439, 259-272.