Search Results - "Quan, Ruidang"

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  1. 1

    Salt Stress Promotes Abscisic Acid Accumulation to Affect Cell Proliferation and Expansion of Primary Roots in Rice by Huang, Yingying, Zhou, Jiahao, Li, Yuxiang, Quan, Ruidang, Wang, Juan, Huang, Rongfeng, Qin, Hua

    “…The primary root is the basic component of the root system and plays a key role in early seedling growth in rice. Its growth is easily affected by…”
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  2. 2

    Improvement of Salt Tolerance Using Wild Rice Genes by Quan, Ruidang, Wang, Juan, Hui, Jian, Bai, Haibo, Lyu, Xuelian, Zhu, Yongxing, Zhang, Haiwen, Zhang, Zhijin, Li, Shuhua, Huang, Rongfeng

    Published in Frontiers in plant science (17-01-2018)
    “…Salt stress causes significant reductions in rice production worldwide; thus, improving salt tolerance is a promising approach to meet the increasing food…”
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  3. 3

    Transcriptional activation of OsDERF1 in OsERF3 and OsAP2-39 negatively modulates ethylene synthesis and drought tolerance in rice by Wan, Liyun, Zhang, Jianfei, Zhang, Haiwen, Zhang, Zhijin, Quan, Ruidang, Zhou, Shirong, Huang, Rongfeng

    Published in PloS one (26-09-2011)
    “…The phytohormone ethylene is a key signaling molecule that regulates a variety of developmental processes and stress responses in plants. Transcriptional…”
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  4. 4

    An AP2 Domain-Containing Gene, ESE1, Targeted by the Ethylene Signaling Component EIN3 Is Important for the Salt Response in Arabidopsis by Zhang, Lixia, Li, Zhuofu, Quan, Ruidang, Li, Guojing, Wang, Ruigang, Huang, Rongfeng

    Published in Plant physiology (Bethesda) (01-10-2011)
    “…Accumulating investigations reveal that ethylene signaling is involved in the salt response in Arabidopsis (Arabidopsis thaliana), and it has been reported…”
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  5. 5

    Mutation in Mg-Protoporphyrin IX Monomethyl Ester Cyclase Decreases Photosynthesis Capacity in Rice by Wang, Xuexia, Huang, Rongfeng, Quan, Ruidang

    Published in PloS one (27-01-2017)
    “…In photosynthesis, the pigments chlorophyll a/b absorb light energy to convert to chemical energy in chloroplasts. Though most enzymes of chlorophyll…”
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  6. 6

    OsERF2 controls rice root growth and hormone responses through tuning expression of key genes involved in hormone signaling and sucrose metabolism by Xiao, Guiqing, Qin, Hua, Zhou, Jiahao, Quan, Ruidang, Lu, Xiangyang, Huang, Rongfeng, Zhang, Haiwen

    Published in Plant molecular biology (01-02-2016)
    “…Root determines plant distribution, development progresses, stress response, as well as crop qualities and yields, which is under the tight control of genetic…”
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  7. 7

    The ethylene response factor AtERF11 that is transcriptionally modulated by the bZIP transcription factor HY5 is a crucial repressor for ethylene biosynthesis in Arabidopsis by Li, Zhuofu, Zhang, Lixia, Yu, Yanwen, Quan, Ruidang, Zhang, Zhijin, Zhang, Haiwen, Huang, Rongfeng

    “…Summary The phytohormones abscisic acid (ABA) and ethylene are known to play multiple roles in plant development and stress responses. Ethylene biosynthesis is…”
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  8. 8

    Overexpression of an ERF transcription factor TSRF1 improves rice drought tolerance by Quan, Ruidang, Hu, Shoujing, Zhang, Zhili, Zhang, Haiwen, Zhang, Zhijin, Huang, Rongfeng

    Published in Plant biotechnology journal (01-05-2010)
    “…One of the major limitations in rice production is a shortage of water. Conventional breeding as well as emerging genetic engineering methods may be used to…”
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  9. 9

    An ethylene response factor OsWR1 responsive to drought stress transcriptionally activates wax synthesis related genes and increases wax production in rice by Wang, Youhua, Wan, Liyun, Zhang, Lixia, Zhang, Zhijin, Zhang, Haiwen, Quan, Ruidang, Zhou, Shirong, Huang, Rongfeng

    Published in Plant molecular biology (01-02-2012)
    “…Increasing evidence has revealed the major enzymes-involved in Arabidopsis and maize wax/cutin synthesis; however, there is limited information about the…”
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  10. 10

    Ethylene promotes hypocotyl growth and HY5 degradation by enhancing the movement of COP1 to the nucleus in the light by Yu, Yanwen, Wang, Juan, Zhang, Zhijin, Quan, Ruidang, Zhang, Haiwen, Deng, Xing Wang, Ma, Ligeng, Huang, Rongfeng

    Published in PLoS genetics (01-12-2013)
    “…In the dark, etiolated seedlings display a long hypocotyl, the growth of which is rapidly inhibited when the seedlings are exposed to light. In contrast, the…”
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  11. 11

    EAR motif mutation of rice OsERF3 alters the regulation of ethylene biosynthesis and drought tolerance by Zhang, Haiwen, Zhang, Jianfei, Quan, Ruidang, Pan, Xiaowu, Wan, Liyun, Huang, Rongfeng

    Published in Planta (01-06-2013)
    “…OsERF3 is a transcriptional repressor with an ethylene-responsive element-binding factor-associated amphiphilic repression (EAR) motif (F/LDLNxxP), which…”
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  12. 12

    The Synthesis of Ascorbic Acid in Rice Roots Plays an Important Role in the Salt Tolerance of Rice by Scavenging ROS by Wang, Yayun, Zhao, Hui, Qin, Hua, Li, Zixuan, Liu, Hai, Wang, Juan, Zhang, Haiwen, Quan, Ruidang, Huang, Rongfeng, Zhang, Zhijin

    “…The root plays an important role in the responses of plants to stresses, but the detailed mechanisms of roots in stress responses are still obscure. The…”
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  13. 13

    OsQHB Improves Salt Tolerance by Scavenging Reactive Oxygen Species in Rice by Zhou, Jiahao, Qiao, Jinzhu, Wang, Juan, Quan, Ruidang, Huang, Rongfeng, Qin, Hua

    Published in Frontiers in plant science (04-05-2022)
    “…Soil salinity is a major environmental stress that restricts the growth and yield of crops. Mining the key genes involved in the balance of rice salt tolerance…”
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  14. 14

    Improved chilling tolerance by transformation with betA gene for the enhancement of glycinebetaine synthesis in maize by Quan, Ruidang, Shang, Mei, Zhang, Hui, Zhao, Yanxiu, Zhang, Juren

    Published in Plant science (Limerick) (2004)
    “…The betA gene from Escherichia coli encoding choline dehydrogenase was transferred into elite maize inbred DH4866 via Agrobacterium-mediated transformation…”
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  15. 15

    SALT AND ABA RESPONSE ERF1 improves seed germination and salt tolerance by repressing ABA signaling in rice by Li, Yuxiang, Zhou, Jiahao, Li, Zhe, Qiao, Jinzhu, Quan, Ruidang, Wang, Juan, Huang, Rongfeng, Qin, Hua

    Published in Plant physiology (Bethesda) (01-06-2022)
    “…Rice (Oryza sativa) germination and seedling establishment, particularly in increasingly saline soils, are critical to ensure successful crop yields. Seed…”
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  16. 16

    Abscisic acid promotes auxin biosynthesis to inhibit primary root elongation in rice by Qin, Hua, Wang, Juan, Zhou, Jiahao, Qiao, Jinzhu, Li, Yuxiang, Quan, Ruidang, Huang, Rongfeng

    Published in Plant physiology (Bethesda) (17-03-2023)
    “…Abstract Soil compaction is a global problem causing inadequate rooting and poor yield in crops. Accumulating evidence indicates that phytohormones…”
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  17. 17
  18. 18

    EIN3 and SOS2 synergistically modulate plant salt tolerance by Quan, Ruidang, Wang, Juan, Yang, Dexin, Zhang, Haiwen, Zhang, Zhijin, Huang, Rongfeng

    Published in Scientific reports (16-03-2017)
    “…Ethylene biosynthesis and the ethylene signaling pathway regulate plant salt tolerance by activating the expression of downstream target genes such as those…”
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  19. 19

    Arabidopsis CSN5B Interacts with VTC1 and Modulates Ascorbic Acid Synthesis by Wang, Juan, Yu, Yanwen, Zhang, Zhijin, Quan, Ruidang, Zhang, Haiwen, Ma, Ligeng, Deng, Xing Wang, Huang, Rongfeng

    Published in The Plant cell (01-02-2013)
    “…Light regulates ascorbic acid (AsA) synthesis, which increases in the light, presumably reflecting a need for antioxidants to detoxify reactive molecules…”
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  20. 20

    Orchestration of ethylene and gibberellin signals determines primary root elongation in rice by Qin, Hua, Pandey, Bipin K, Li, Yuxiang, Huang, Guoqiang, Wang, Juan, Quan, Ruidang, Zhou, Jiahao, Zhou, Yun, Miao, Yuchen, Zhang, Dabing, Bennett, Malcolm J, Huang, Rongfeng

    Published in The Plant cell (29-03-2022)
    “…Primary root growth in cereal crops is fundamental for early establishment of the seedling and grain yield. In young rice (Oryza sativa) seedlings, the primary…”
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