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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

Huang B, Huang D, Hong Z, Owie SO, Wu W (2020) Genetic analysis reveals four interacting loci underlying awn trait diversity in barley (Hordeum vulgare). Sci Rep 10: 69335. (doi: 10.1038/s41598-020-69335-x)

Feng Y, Wu P, Fu W, Peng L, Zhu H, Cao Y, Zhou X, Hong Z, Zhang Z, Yuan S (2020) The Lotus japonicus ubiquitin ligase SIE3 interacts with the transcription factor SIP1 and forms a homodimer. Front Plant Sci 11:795 (doi: 10.3389/fpls.2020.00795)

Chen X, Jiang L, Zheng J, Chen F, Wang T, Wang M, Tao Y, Wang H, Hong Z, Huang Y, Huang R (2019) A missense mutation in Large Grain Size 1 increases grain size and enhances cold tolerance in rice. J Exp Bot 70: 3851-3866 (doi: 10.1093/jxb/erz192)

Yin J, Guan X, Zhang H, Wang L, Li H, Zhang Q, Chen T, Xu Z, Hong Z, Cao Y, Zhang Z (2019) An MAP kinase interacts with LHK1 and regulates nodule organogenesis in Lotus japonicus. Sci China Life Sci 62: 1203-1217 (doi: 10.1007/s11427-018-9444-9)

Wang Z, Wang X, Xie B, Hong Z and Yang Q (2018) Arabidopsis NUCLEOSTEMIN-LIKE 1 (NSN1) regulates cell cycling potentially by cooperating with nucleosome assembly protein AtNAP1;1. BMC Plant Biol 18: 99 (doi: 10.1186/s12870-018-1289-2)

Jiang L, Zheng J, Zhang Z, Chen X, Chen F, Wang T, Huang Y, Wang H, Hong Z, Huang R (2018) Two independent grain-length mutants mapped to a single region on the long arm of chromosome 2 in rice. Bragantia 77: 452-465 (doi: 10.1590/1678-4499.2017119)

Mjomba FM, Zheng Y, Liu H, Tang W, Hong Z, Wang F, Wu W (2016) Homeobox is pivotal for OsWUS controlling tiller development and female fertility in rice. Genes, Genomics and Genetics (G3, Bethesda) 6: 2013-2021. (doi: 10.1534/g3.116.028837)

Wang L, Wang L, Tan Q, Fan Q, Zhu H, Hong Z, Zhang Z, Duanmu D (2016) Efficient inactivation of symbiotic nitrogen fixation related genes in Lotus japonicus using CRISPR-Cas9. Front Plant Sci 7: 1333. (doi: 10.3389/fpls.2016.01333)

Wang C, Yu H, Luo L, Duan L, Cai L, He X, Wen J, Mysore KS, Li G, Xiao A, Duanmu D, Cao Y, Hong Z, Zhang Z (2016) NODULES WITH ACTIVATED DEFENSE 1 is required for maintenance of rhizobial endosymbiosis in Medicago truncatula. New Phytol 212: 176-191. (doi: 10.1111/nph.14017)

Wang C, Yu H, Zhang Z, Yu L, Hong Z, Luo L (2015a) Phytosulfokine is involved in positive regulation of Lotus japonicus nodulation. Mol Plant-Microbe Interact 28: 847-855 (doi: 10.1094/MPMI-02-15-0032-R; Cover of the Journal)

Wang C, Xu X, Hong Z, Feng Y, Zhang Z (2015b) Involvement of ROP6 and clathrin in nodulation factor signaling. Plant Signaling & Behavior 10: e1033127 (doi: 10.1080/15592324.2015.1033127)

Wang C, Zhu M, Duan L, Yu H, Chang X, Li L, Kang H, Feng Y, Zhu H, Hong Z, Zhang Z (2015c) Lotus japonicus clathrin heavy chain 1 is associated with ROP6 GTPase and involved in nodule formation. Plant Physiol 167: 1497-1510 (doi: 10.1104/pp.114.256107)

Kang H, Xiao A, Huang X, Gao X, Yu H, He X, Zhu H, Hong Z, Zhang Z (2015) A Lotus japonicus co-chaperone protein interacts with the ubiquitin-like domain protein CIP73 and plays a negative regulatory role in nodulation. Mol Plant-Microbe Interact 28: 534-545 (doi: 10.1094/MPMI-11-14-0354-R)

Hu G, Burton C, Hong Z (2014) Molecular and chemical characterization of a new waxy allele in barley (Hordeum vulgare L). Cereal Chem 91: 438-444 (doi: 10.1094/CCHEM-10-13-0217-R)

Chen F, Jiang L, Zheng J, Huang R, Wang H, Hong Z, Huang Y (2014) Identification of differentially expressed proteins and phosphorylated proteins in rice seedlings in response to strigolactone treatment. Plos ONE 9: e93947 (doi: 10.1371/journal.pone.0093947)

Hu G, Burton C, Hong Z, Jackson E (2014) A mutation of the cellulose-synthase-like (CslF6) gene in barley (Hordeum vulgare L) partially affects the beta-glucan content in grains. J Cereal Sci 59: 189-195 (doi: 10.1016/j.jcs.2013.12.009)

Kang H, Chu X, Wang C, Xiao A, Zhu H, Yuan S, Yang Z, Ke D, Xiao S, Hong Z, Zhang Z (2014) A MYB coiled-coil transcription factor interacts with NSP2 and is involved in nodulation in Lotus japonicus. New Phytol 201:837-849 (doi: 10.1111/nph.12593)

Huang R, Jiang L, Zheng J, Wang T, Wang H, Huang Y, Hong Z (2013) Genetic bases of rice grain shape: so many genes, so little known. Trends Plant Sci. 18:218-226 (doi: 10.1016/j.tplants.2012.11.001)

Wang C, Zhu H, Jin L, Chen T, Wang L, Kang H, Hong Z, Zhang Z (2013). Splice variants of the SIP1 transcripts play a role in nodule organogenesis in Lotus japonicus. Plant Mol Biol 82: 97-111(doi: 10.1007/s11103-013-0042-3)

Chen F, Jiang L, Zheng J, Huang R, Wang H, Hong Z, Huang Y (2013) Identification of a co-segregative protein associated with the tillering trait in rice (Oryza sativa L indica). Plant Omics J 6:36-45

Wang X, Gingrich DK, Deng Y, Hong Z (2012) NSN1, a nucleostemin-like GTPase required for apical and floral meristem development in Arabidopsis. Mol Bio Cell 23: 1446-1456 (doi: 10.1091/mbc.E11-09-0797)

Yuan S, Zhu H, Gou H, Fu W, Liu L, Chen T, Ke D, Kang H, Xie Q, Hong Z, Zhang Z (2012) A ubiquitin ligase of symbiosis receptor kinase involved in nodule organogenesis. Plant Physiol 160: 106-117 (doi: 10.1104/pp.112.199000)

Chen T, Zhu H, Ke D, Cai K, Wang T, Gou H, Hong Z, Zhang Z. (2012) A MAP kinase kinase interacts with SymRK and regulates nodule organogenesis in Lotus japonicus. Plant Cell 24: 823-838 (doi: tpc.112.095984)

Ke D, Fang Q, Chen C, Zhu H, Chen T, Chang X, Yua Sa, Ma L, Hong Z, Zhang Z (2012) Small GTPase ROP6 interacts with NFR5 and is involved in nodule formation in Lotus japonicus. Plant Physiol 159: 131-143 (doi: 10.1104/pp.112.197269)

Wang X, Xie B, Zhu M, Zhang Z, Hong Z (2012) Nucleostemin-like 1 is required for embryogenesis and leaf development in Arabidopsis. Plant Mol Biol 78: 31-44 (doi: 10.1007/s11103-011-9840-7; Cover of the Journal)

Xie B, Deng D, Kanaoka M, Okada K, Hong Z (2011) Expression of Arabidopsis callose synthase 5 (CalS5) in tobacco BY-2 cells: subcellular localization and effect on cell wall permeability. Plant Sci 183: 1-8 (doi: 10.1016/j.plantsci.2011.10.015)

Xie B, Hong Z (2011) Unplugging the callose plug from sieve pores. Plant Signaling & Behavior, 6:491-493 (DOI: 10.4161/psb.6.4.14653).

Xie B, Wang X, Zhu M, Zhang Z, Hong Z (2011) CalS7 encodes a callose synthase responsible for callose deposition in the phloem. Plant J 65:1–14 (doi: 10.1111/j.1365-313X.2010.04399.x)

Kang H, Zhu H, Chu X, Yang Z, Yuan S, Yu D, Wang C, Hong Z, Zhang Z (2011) A novel interaction between CCaMK and a protein containing the Scythe_N ubiquitin-like domain in Lotus japonicus. Plant Physiol 155: 1312-1324 (doi: 10.1104/pp.110.167965).

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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