Search Results - "Bai, Qiuxian"

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  1. 1

    Coexpression of PalbHLH1 and PalMYB90 Genes From Populus alba Enhances Pathogen Resistance in Poplar by Increasing the Flavonoid Content by Bai, Qiuxian, Duan, Bingbing, Ma, Jianchao, Fen, Yannan, Sun, Shujiao, Long, Qiming, Lv, Jiaojiao, Wan, Dongshi

    Published in Frontiers in plant science (26-02-2020)
    “…Secondary metabolites of the flavonoid pathway participate in plant defense, and bHLH and MYB transcription factors regulate the synthesis of these…”
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    Journal Article
  2. 2

    Genome-Wide Identification of Long Noncoding RNAs and Their Responses to Salt Stress in Two Closely Related Poplars by Ma, Jianchao, Bai, Xiaotao, Luo, Wenchun, Feng, Yannan, Shao, Xuemin, Bai, Qiuxian, Sun, Shujiao, Long, Qiming, Wan, Dongshi

    Published in Frontiers in genetics (05-09-2019)
    “…Long noncoding RNAs (lncRNAs) are involved in various biological regulatory processes, but their roles in plants resistance to salt stress remain largely…”
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  3. 3

    Recent progress and ongoing challenges in Rhizoma atractylodis research: biogeography, biosynthesis, quality formation and control by Wenjin Zhang, Qiuxian Bai, Gaochang Cui, Xiaojia Zhang, Chaogeng Lyu, Jiahui Sun, Wenyuan Gao, Luqi Huang, Lanping Guo

    Published in Medicinal Plant Biology (01-02-2023)
    “…Rhizoma atractylodis, including Atractylodes lancea and Atractylodes chinensis, is widely utilized worldwide as a Chinese meteria medica (CMM) due to its rich…”
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  4. 4

    Endophytic Bacillus pumilus G5 Interacting with Silicon to Improve Drought Stress Resilience in Glycyrrhiza uralensis Fisch. by Modulating Nitrogen Absorption, Assimilation, and Metabolism Pathways by Xu, Zhanchao, Bai, Qiuxian, Peng, Xueying, Lang, Duoyong, Zhang, Xinhui

    Published in Journal of agricultural and food chemistry (08-05-2024)
    “…Drought stress has become the primary severe threat to global agriculture production, including medicinal plants. Plant growth-promoting bacteria (PGPB) and…”
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  5. 5

    Development of a composite microbial agent beneficial to improve drought and salt tolerance of Glycyrrhiza uralensis Fisch by Peng, Xueying, Jia, Tianjiao, Bai, Qiuxian, Lang, Duoyong, Zhang, Xinhui

    Published in Industrial crops and products (01-05-2024)
    “…Plant growth is enhanced by microbiological agents. In order to develop environment friendly composite microbial agent that can also improve the salt and…”
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  6. 6

    Genome sequence and genetic transformation of a widely distributed and cultivated poplar by Ma, Jianchao, Wan, Dongshi, Duan, Bingbing, Bai, Xiaotao, Bai, Qiuxian, Chen, Ningning, Ma, Tao

    Published in Plant biotechnology journal (01-02-2019)
    “…Summary Populus alba is widely distributed and cultivated in Europe and Asia. This species has been used for diverse studies. In this study, we assembled a de…”
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  7. 7

    The PalWRKY77 transcription factor negatively regulates salt tolerance and abscisic acid signaling in Populus by Jiang, Yuanzhong, Tong, Shaofei, Chen, Ningning, Liu, Bao, Bai, Qiuxian, Chen, Yang, Bi, Hao, Zhang, Zhiyang, Lou, Shangling, Tang, Hu, Liu, Jianquan, Ma, Tao, Liu, Huanhuan

    “…Summary High salinity, one of the most widespread abiotic stresses, inhibits photosynthesis, reduces vegetation growth, blocks respiration and disrupts…”
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  8. 8

    Mechanism of Bacillus pumilus cooperating with silicon to restore carbon metabolism of Glycyrrhiza uralensis Fisch. seedlings exposed to drought stress by Cui, Gaochang, Ma, Xin, Lang, Duoyong, Zhou, Li, Bai, Qiuxian, Zhang, Wenjin, Zhang, Xinhui

    Published in Industrial crops and products (01-12-2024)
    “…Glycyrrhiza uralensis Fisch, widely used in traditional medicine, tobacco flavoring, and food sweetening, faces growth challenges due to drought stress in arid…”
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  9. 9

    Structure-effect relationship studies of polysaccharides based on receptor-active centres: an alternative view by Zhang, Wenjin, Zhang, Xiaojia, Bai, Qiuxian, Liang, Le, Wang, Sheng, Guo, Lanping

    Published in Food & function (06-06-2023)
    “…Polysaccharides are ubiquitous biomolecules found in nature that have attracted research interest due to their unique nutritional and pharmacological value…”
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  10. 10

    LncRNA expression analysis by comparative transcriptomics among closely related poplars and their regulatory roles in response to salt stress by Li, Guiting, Chen, Qingyuan, Bai, Qiuxian, Feng, Yannan, Mao, Kaili, Yang, Mengran, He, Ling, Liu, Meijun, Liu, Jianquan, Wan, Dongshi

    Published in Tree physiology (09-07-2023)
    “…Abstract Long noncoding ribonucleic acids (lncRNAs) play crucial roles in regulating key biological processes; however, our knowledge of lncRNAs’ roles in…”
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  11. 11

    The fasciclin-like arabinogalactan protein FLA11 of Ostrya rehderiana impacts wood formation and salt stress in Populus by Niu, Zhimin, Bai, Qiuxian, Lv, Jiaojiao, Tian, Wenjing, Mao, Kaili, Wei, Qianqian, Zheng, Yuming, Yang, Haohong, Gao, Chengyu, Wan, Dongshi

    Published in Environmental and experimental botany (01-03-2024)
    “…Wood is an abundant source of biomass and an important biomaterial for renewable resources and industrial products worldwide. Fasciclin-like arabinogalactan…”
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  12. 12

    The C2H2‐type zinc finger transcription factor OSIC1 positively regulates stomatal closure under osmotic stress in poplar by Bai, Qiuxian, Niu, Zhimin, Chen, Qingyuan, Gao, Chengyu, Zhu, Mingjia, Bai, Jiexian, Liu, Meijun, He, Ling, Liu, Jianquan, Jiang, Yuanzhong, Wan, Dongshi

    Published in Plant biotechnology journal (01-05-2023)
    “…Summary Salt and drought impair plant osmotic homeostasis and greatly limit plant growth and development. Plants decrease stomatal aperture to reduce water…”
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  13. 13

    The C 2 H 2 -type zinc finger transcription factor OSIC1 positively regulates stomatal closure under osmotic stress in poplar by Bai, Qiuxian, Niu, Zhimin, Chen, Qingyuan, Gao, Chengyu, Zhu, Mingjia, Bai, Jiexian, Liu, Meijun, He, Ling, Liu, Jianquan, Jiang, Yuanzhong, Wan, Dongshi

    Published in Plant biotechnology journal (01-05-2023)
    “…Salt and drought impair plant osmotic homeostasis and greatly limit plant growth and development. Plants decrease stomatal aperture to reduce water loss and…”
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    Journal Article
  14. 14