Showing 161 - 165 results of 165 for search '"Arabidopsis"', query time: 0.03s Refine Results
  1. 161

    Genome-Wide Characterization and Expression Analysis of the HD-ZIP Gene Family in Response to Salt Stress in Pepper by Zhongrong Zhang, Ranran Zhu, Xuehua Ji, Hui Ji Li, Hui Lv, Hai Ying Zhang

    Published 2021-01-01
    “…Notably, the expression of CaHDZ07, CaHDZ17, CaHDZ26, and CaHDZ30, homologs of Arabidopsis AtHB12 and AtHB7 genes, was significantly upregulated by salt stresses. …”
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  2. 162

    Untargeted metabolomics and functional analyses reveal that the secondary metabolite quinic acid associates with Angelica sinensis flowering by Pei Liu, Weimeng Feng, He Yang, Guang Yu, Erxin Shang, Sen Zhang, Hui Yan, Jin-ao Duan

    Published 2025-01-01
    “…Moreover, quinic acid was found to accelerate flowering in the model plant Arabidopsis thaliana. Importantly, the flowering time was delayed in the quinate dehydrogenase At mutant, and this delay was reversed by quinic acid. …”
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  3. 163

    Identification of the Granule-Bound Starch Synthase (GBSS) Genes Involved in Amylose Biosynthesis in Tartary Buckwheat (<i>Fagopyrum tataricum</i> (L.) Gaertn.) by Juan Huang, Fei Liu, Jieqiong Zhang, Bin Tang, Jiao Deng, Taoxiong Shi, Liwei Zhu, Hongyou Li, Qingfu Chen

    Published 2025-01-01
    “…Amino acid analyses revealed high homology in ten GBSS proteins from Tartary buckwheat, rice, maize, and <i>Arabidopsis thaliana</i>, with a specific starch synthase catalytic domain and ten conserved motifs. …”
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  4. 164

    Genome-wide identification and characterization of WRKYs family involved in responses to Cylindrocarpon destructans in Panax notoginseng by Manqiao Li, Xiaoli Che, Qiwen Liang, Kuixiu Li, Guisheng Xiang, Xuyan Liu, Yan Zhao, Fugang Wei, Shengchao Yang, Guanze Liu

    Published 2025-02-01
    “…Of these, 58 PnWRKY genes were mapped to the P. notoginseng chromosomes and showed collinearity with Arabidopsis thaliana, Daucus carota, and three Solanaceae species. …”
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  5. 165

    Genome-Wide Analysis, Characterization, and Expression Profile of the Basic Leucine Zipper Transcription Factor Family in Pineapple by Yanhui Liu, Mengnan Chai, Man Zhang, Qing He, Zhenxia Su, S. V. G. N. Priyadarshani, Liping Liu, Guanxi Dong, Yuan Qin

    Published 2020-01-01
    “…According to bioinformatics analysis of a phylogenetic tree, the bZIP gene family was divided into 11 subgroups in pineapple, Arabidopsis, and rice; gene structure and conserved motif analyses showed that bZIP genes within the same subgroup shared similar intron-exon organizations and motif composition. …”
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