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Hong Lab
  • Home
  • Research
    • 1. β-Glucan
    • 2. Callose synthase
    • 3. Proline
    • 4. Dynamin-related proteins
    • 5. Flower development
    • 6. Grain development
    • 7. Fruit development
    • 8. Awn development
    • 9. Nodulation
  • Publications
    • 2021-present
    • 2011-2020
    • 2001-2010
    • pre 2000
  • LeTourneau Lectureship
    • Introduction
    • Speakers
    • Recent photos
    • In memory
Hong Lab
  • Home
  • Research
    • 1. β-Glucan
    • 2. Callose synthase
    • 3. Proline
    • 4. Dynamin-related proteins
    • 5. Flower development
    • 6. Grain development
    • 7. Fruit development
    • 8. Awn development
    • 9. Nodulation
  • Publications
    • 2021-present
    • 2011-2020
    • 2001-2010
    • pre 2000
  • LeTourneau Lectureship
    • Introduction
    • Speakers
    • Recent photos
    • In memory
  • More
    • Home
    • Research
      • 1. β-Glucan
      • 2. Callose synthase
      • 3. Proline
      • 4. Dynamin-related proteins
      • 5. Flower development
      • 6. Grain development
      • 7. Fruit development
      • 8. Awn development
      • 9. Nodulation
    • Publications
      • 2021-present
      • 2011-2020
      • 2001-2010
      • pre 2000
    • LeTourneau Lectureship
      • Introduction
      • Speakers
      • Recent photos
      • In memory

Publications

2021-present

2011-2020

2001-2010

pre 2000

Zhang Z, Hong Z and Verma DPS (2000) Phragmoplastin polymerizes into spiral coiled structures via two self-assembly domains. J Biol Chem 275: 8779-8784

Hong Z, Lakkineni K, Zhang Z and Verma DPS (2000) Removal of feedback inhibition of Delta1-pyrroline-5-carboxylate synthetase results in increased proline accumulation and protection of plants from osmotic stress. Plant Physiol 122: 1129-1136.

Verma DPS and Hong Z (1996) Biogenesis of peribacteroid membrane in root nodules.  Trends in Microbiol 4: 364-368.

Kavi Kishor PB, Hong Z, Miao G-H and Verma DPS (1995)  Overexpression of Delta1-pyrroline-5-carboxylate synthetase increases proline production and confers osmotolerance in transgenic plants.  Plant Physiol 108: 1387-1394.

Hong Z and Verma DPS (1994)  A new phosphatidylinositol 3-kinase is induced during soybean nodule organogenesis and is associated with membrane proliferation.  Proc Natl Acad Sci USA 91: 9617-9621.

Verma DPS, Cheon C-I and Hong Z (1994) Small GTP-binding proteins and membrane biogenesis in plants.  Plant Physiol 106: 1-6.

Cheon C-I, Hong Z and Verma DPS (1994) Nodulin-24 follows a novel pathway for integration into the peribacteroid membrane in soybean root nodules. J Biol Chem 269: 6598-6602.

Miao G-H*, Hong Z* and Verma DPS (1993) Two functional soybean genes encoding p34cdc2 protein kinases are regulated by different plant developmental pathways.  Proc Natl Acad Sci USA  90: 943-947. (*Authors contributed equally to this work).

Hong Z, Miao G-H and Verma DPS (1993) A p34cdc2 protein kinase homolog from mothbean (Vigna aconitifolia).  Plant Physiol 101: 1399-1400.

Miao G-H, Hong Z and Verma DPS (1992) Topology and phosphorylation of soybean nodulin-26, an intrinsic protein of the peribacteroid membrane.  J Cell Biol 118: 481-490.

Szoke A, Miao G-H, Hong Z and Verma DPS (1992) Subcellular location of Delta1-pyrroline-5-carboxylate reductase in root/nodule and leaf of soybean.  Plant Physiol 99:1642-1649.

Contact:   Dr. Zonglie Hong        Email: zhong@uidaho.edu       Phone: 208-885-5464       Mail: 875 Perimeter Drive MS 2333, Moscow, Idaho 43844-2333
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