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Genetics

D-Index
58
Citations
9410
World Ranking
3339
National Ranking
1447

Overview

Zhongchi Liu is a researcher affiliated with the University of Maryland, College Park in the United States. Their work primarily spans the fields of Agricultural and Biological Sciences and Biochemistry, Genetics and Molecular Biology, with a strong focus on plant science and molecular biology.

Their research covers several key subfields, including Plant Science, Molecular Biology, Cell Biology, Renewable Energy, Sustainability and the Environment, and Ecology. Among the main topics addressed in their work are Plant Molecular Biology Research, Plant Gene Expression Analysis, Plant Reproductive Biology, Berry Genetics and Cultivation Research, Plant Tissue Culture and Regeneration, Horticultural and Viticultural Research, and Plant Nutrient Uptake and Metabolism.

Zhongchi Liu has contributed to several recent publications. Notable papers include:

  • Developmental Mechanisms of Fleshy Fruit Diversity in Rosaceae, 2020, Annual Review of Plant Biology
  • Allelic Variation of MYB10 Is the Major Force Controlling Natural Variation in Skin and Flesh Color in Strawberry (Fragaria spp.) Fruit, 2020, The Plant Cell
  • FvbHLH9 Functions as a Positive Regulator of Anthocyanin Biosynthesis by Forming a HY5-bHLH9 Transcription Complex in Strawberry Fruits, 2020, Plant and Cell Physiology
  • Developmental Regulation of Stolon and Rhizome, 2020, Current Opinion in Plant Biology
  • Mechanism of Fertilization-Induced Auxin Synthesis in the Endosperm for Seed and Fruit Development, 2022, Nature Communications

Their frequent collaborators include Chunying Kang, Xi Luo, Lei Guo, Muzi Li, and Shaoqiang Hu.

Zhongchi Liu's research has been published extensively in several venues, including PLANT PHYSIOLOGY, bioRxiv (Cold Spring Harbor Laboratory), Horticulture Research, The Plant Cell, and The Plant Journal.

Best Publications

  • The lin-41 RBCC gene acts in the C. elegans heterochronic pathway between the let-7 regulatory RNA and the LIN-29 transcription factor.

    Frank J. Slack;Michael Basson;Zhongchi Liu;Victor R. Ambros

  • Histone deacetylase genes in Arabidopsis development.

    Courtney Hollender;Zhongchi Liu

  • LEUNIG regulates AGAMOUS expression in Arabidopsis flowers.

    Zhongchi Liu;Elliot M. Meyerowitz

  • Genome-Scale Transcriptomic Insights into Early-Stage Fruit Development in Woodland Strawberry Fragaria vesca

    Chunying Kang;Omar Darwish;Aviva Geretz;Rachel Shahan

  • SEUSS, a member of a novel family of plant regulatory proteins, represses floral homeotic gene expression with LEUNIG

    Robert G. Franks;Chunxin Wang;Joshua Z. Levin;Zhongchi Liu

  • LEUNIG, a putative transcriptional corepressor that regulates AGAMOUS expression during flower development

    Joann Conner;Zhongchi Liu

  • Allelic Variation of MYB10 Is the Major Force Controlling Natural Variation in Skin and Flesh Color in Strawberry (Fragaria spp.) Fruit

    Cristina Castillejo;Veronika Waurich;Henning Wagner;Rubén Ramos

  • APETALA1 and SEPALLATA3 interact with SEUSS to mediate transcription repression during flower development.

    Vaniyambadi V. Sridhar;Anandkumar Surendrarao;Zhongchi Liu

  • Transcriptional repression of target genes by LEUNIG and SEUSS, two interacting regulatory proteins for Arabidopsis flower development

    Vaniyambadi V. Sridhar;Anandkumar Surendrarao;Deyarina Gonzalez;R. Steven Conlan

  • Floral transcriptomes in woodland strawberry uncover developing receptacle and anther gene networks

    Courtney A. Hollender;Chunying Kang;Omar Darwish;Aviva Geretz

  • Global identification of alternative splicing via comparative analysis of SMRT- and Illumina-based RNA-seq in strawberry

    Yongping Li;Cheng Dai;Chungen Hu;Zhongchi Liu;Zhongchi Liu

  • Repression of AGAMOUS by BELLRINGER in Floral and Inflorescence Meristems

    Xiaozhong Bao;Robert G. Franks;Robert G. Franks;Joshua Z. Levin;Zhongchi Liu

  • Groucho/Tup1 family co-repressors in plant development.

    Zhongchi Liu;Vidyadhar Karmarkar

  • Arabidopsis ribonucleotide reductases are critical for cell cycle progression, DNA damage repair, and plant development.

    Chunxin Wang;Zhongchi Liu

  • MicroRNA Superfamilies Descended from miR390 and Their Roles in Secondary Small Interfering RNA Biogenesis in Eudicots

    Rui Xia;Rui Xia;Blake C. Meyers;Zhongchi Liu;Eric P. Beers

  • Reduced Anthocyanins in Petioles codes for a GST anthocyanin transporter that is essential for the foliage and fruit coloration in strawberry.

    Huifeng Luo;Cheng Dai;Yongping Li;Jia Feng

  • Simple allele-discriminating PCR for cost-effective and rapid genotyping and mapping

    Minh Bui;Zhongchi Liu

  • Regulation of Gynoecium Marginal Tissue Formation by LEUNIG and AINTEGUMENTA

    Zhongchi Liu;Robert G. Franks;Vincent P. Klink

  • Updated annotation of the wild strawberry Fragaria vesca V4 genome.

    Yongping Li;Mengting Pi;Qi Gao;Zhongchi Liu;Zhongchi Liu

  • 24-nt reproductive phasiRNAs are broadly present in angiosperms.

    Rui Xia;Chengjie Chen;Suresh Pokhrel;Wuqiang Ma

Frequent Co-Authors

Dongdong Li
Dongdong Li Huazhong University of Science and Technology
Victor R. Ambros
Victor R. Ambros University of Massachusetts Chan Medical School
Blake C. Meyers
Blake C. Meyers University of California, Davis
Dominique C. Bergmann
Dominique C. Bergmann Stanford University
Sonia Osorio
Sonia Osorio University of Malaga
Jon Clardy
Jon Clardy Harvard University
Steven J. Knapp
Steven J. Knapp University of California, Davis
Joshua Z. Levin
Joshua Z. Levin Broad Institute
Elliot M. Meyerowitz
Elliot M. Meyerowitz California Institute of Technology
Vance M. Whitaker
Vance M. Whitaker University of Florida

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