Showing 61 - 80 results of 210 for search '"Arabidopsis"', query time: 0.06s Refine Results
  1. 61

    Arabidopsis apoplast TET8 positively correlates to leaf senescence, and tet3tet8 double mutants are delayed in leaf senescence by Jayde A. Zimmerman, Benjamin Verboonen, Andrew P. Harrison Hanson, Luis R. Arballo, Judy A. Brusslan

    Published 2024-09-01
    “…Two distinct populations of EVs have been described in Arabidopsis: PEN1‐associated and TET8‐associated. We previously noted early leaf senescence in the pen1 single and pen1pen3 double mutant. …”
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    Arabidopsis 3‐Deoxy‐d‐Arabino‐Heptulosonate 7‐Phosphate (DAHP) Synthases of the Shikimate Pathway Display Both Manganese‐ and Cobalt‐Dependent Activities by Ryo Yokoyama, Hiroshi A. Maeda

    Published 2025-01-01
    “…Despite their sequence similarity, these Arabidopsis KDOPS proteins showed no DHS activity. Meanwhile, optimization of the DHS assay conditions led to the successful detection of DHS‐Co activity from Arabidopsis DHS recombinant proteins. …”
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  5. 65

    Cellular Localization and Biochemical Characterization of a Chimeric Fluorescent Protein Fusion of Arabidopsis Cellulose Synthase-Like A2 Inserted into Golgi Membrane by Monica De Caroli, Marcello S. Lenucci, Gian-Pietro Di Sansebastiano, Michela Tunno, Anna Montefusco, Giuseppe Dalessandro, Gabriella Piro

    Published 2014-01-01
    “…Here we report a study on the cellular localization and the enzyme activity of an Arabidopsis CslA family member, AtCslA2. We show that the fluorescent protein fusion AtCslA2-GFP, transiently expressed in tobacco leaf protoplasts, is synthesized in the ER and it accumulates in the Golgi stacks. …”
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    The evolutionarily diverged single-stranded DNA-binding proteins SSB1/SSB2 differentially affect the replication, recombination and mutation of organellar genomes in Arabidopsis thaliana by Weidong Zhu, Jie Qian, Yingke Hou, Luke R. Tembrock, Liyun Nie, Yi-Feng Hsu, Yong Xiang, Yi Zou, Zhiqiang Wu

    Published 2025-01-01
    “…Single-stranded DNA-binding proteins (SSBs) play essential roles in the replication, recombination and repair processes of organellar DNA molecules. In Arabidopsis thaliana, SSBs are encoded by a small family of two genes (SSB1 and SSB2). …”
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  12. 72

    Identification of <i>ZmSNAC06</i>, a Maize NAC Family Transcription Factor with Multiple Transcripts Conferring Drought Tolerance in <i>Arabidopsis</i> by Fei Wang, Yong Chen, Ruisi Yang, Ping Luo, Houwen Wang, Runze Zhang, Wenzhe Li, Ke Yang, Xinlong Xu, Zhuanfang Hao, Xinhai Li

    Published 2024-12-01
    “…The overexpression of <i>ZmSNAC06</i>-T02 in <i>Arabidopsis</i> resulted in hypersensitivity to abscisic acid (ABA) at the germination stage, and overexpression lines exhibited higher survival rates and higher antioxidant enzyme activities compared with the wild-type under drought stress. …”
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    TaSnRK3.23B, a CBL-interacting protein kinase of wheat, confers drought stress tolerance by promoting ROS scavenging in Arabidopsis by Feiyan Dong, Yide Liu, Huadong Zhang, Yaqian Li, Jinghan Song, Sheng Chen, Shuailei Wang, Zhanwang Zhu, Yan Li, Yike Liu

    Published 2025-01-01
    “…Although SnRK3.23 is known to be involved in drought stress, the underlying mechanism of resistance differs between Arabidopsis and rice, and little is known about its function in wheat. …”
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    Exploring the Potential of Selenium-Containing Amine (Se-AMA) to Enhance Photosynthesis and Leaf Water Content: New Avenues for Carbonic Anhydrase Modulation in <i>Arabidopsis thaliana</i> by Sara Beltrami, Francesca Alderotti, Antonella Capperucci, Damiano Tanini, Cecilia Brunetti, Francesco Ferrini, Ermes Lo Piccolo, Antonella Gori

    Published 2025-01-01
    “…Our research demonstrated that foliar treatments with a synthetic selenium-containing CA activator (Se-AMA) influenced the physiological performances of <i>Arabidopsis thaliana</i>. Se-AMA increased net photosynthesis (A + 31.7%) and stomatal conductance (g<sub>s</sub> + 48.2%) at 100 µM, with the most notable effects after 10 days of treatment. …”
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    Functional Characterization of the <i>PoWHY1</i> Gene from <i>Platycladus orientalis</i> and Its Role in Abiotic Stress Tolerance in Transgenic <i>Arabidopsis thaliana</i> by Chun Ou, Zhiyu Dong, Xudong Zheng, Wenhui Cheng, Ermei Chang, Xiamei Yao

    Published 2025-01-01
    “…Here, the <i>PoWHY1</i> gene was analyzed bioinformatically using <i>P. orientalis</i> as study material, and the role of the gene against abiotic stress conditions in <i>Arabidopsis thaliana</i> was verified using transgenic technology. …”
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