Skip to main content

and
  1. No Access

    Article

    RNA interference-mediated resistance to maize dwarf mosaic virus

    Maize dwarf mosaic virus (MDMV) is a widespread pathogen that causes serious yield loss to maize crops. A hairpin RNA expression vector was constructed herein to overcome the low efficiency of cultural protect...

    Zhi-Yong Zhang, Ying-Ge Wang, **ao-Juan Shen in Plant Cell, Tissue and Organ Culture (PCTO… (2013)

  2. No Access

    Article

    Cloning and functional validation of molybdenum cofactor sulfurase gene from Ammopiptanthus nanus

    The molybdenum cofactor sulfurase gene ( AnMCSU ) was cloned from xerophytic desert plant Ammopiptanthus nanus ...

    Hao Qiang Yu, Yuan Yuan Zhang, Tai Ming Yong, Yan ** Liu in Plant Cell Reports (2015)

  3. No Access

    Article

    Overexpression of a phospholipase Dα gene from Ammopiptanthus nanus enhances salt tolerance of phospholipase Dα1-deficient Arabidopsis mutant

    A phospholipase Dα gene ( AnPLDα ) was cloned from xerophytic desert plant Ammopiptanthus nanus and its overexpression en...

    Hao Qiang Yu, Tai Ming Yong, Hong Jie Li, Yan ** Liu, Shu Feng Zhou in Planta (2015)

  4. No Access

    Article

    Phospholipase D family and its expression in response to abiotic stress in maize

    Phospholipase D hydrolyzes phospholipids into phophatidic acid and choline, and plays important roles in growth, development, and stress response. Genome-wide identification for the PLD gene family has been ma...

    Lei Chen, Bo Cao, Nan Han, Yi Tao, Shu Feng Zhou, Wan Chen Li in Plant Growth Regulation (2017)

  5. No Access

    Article

    Cloning and characterization of vacuolar H+-pyrophosphatase gene (AnVP1) from Ammopiptanthus nanus and its heterologous expression enhances osmotic tolerance in yeast and Arabidopsis thaliana

    Vacuolar H+-pyrophosphatase (H+-PPase) is one of the proton pumps involved in the response of plants to osmotic stress. In the present study, the vacuolar H+-PPase gene (AnVP1) was cloned from an epibiotic super-...

    Hao Qiang Yu, Nan Han, Yuan Yuan Zhang, Yi Tao, Lei Chen in Plant Growth Regulation (2017)

  6. No Access

    Article

    A betaine aldehyde dehydrogenase gene from Ammopiptanthus nanus enhances tolerance of Arabidopsis to high salt and drought stresses

    Glycine betaine functions as an osmotic protectant in response of plant to abiotic stresses. In higher plants, the betaine aldehyde dehydrogenase (BADH) catalyzes the key step of glycine betaine biosynthesis. ...

    Hao-Qiang Yu, **a-Yu Zhou, Ying-Ge Wang, Shu-Feng Zhou in Plant Growth Regulation (2017)