Showing 41 - 52 results of 52 for search '"Rhizobacteria"', query time: 0.05s Refine Results
  1. 41

    Effective Microorganisms Improve Growth, Nutrients Uptake, Normalized Difference Vegetation Index, Photosystem II, and Essential Oil While Reducing Canopy Temperature in Water-Stre... by Naayem M. Elgaml, Adel B. Salama, Heba Sh. Shehata, Magdi T. Abdelhamid

    Published 2022-01-01
    “…The microorganisms included in biofertilizers that have enzymes that solubilize minerals include plant growth-promoting rhizobacteria (PGPRs). Therefore, a field experiment was carried out to test how irrigation management, i.e., 100% of reference evapotranspiration (ETo) (full irrigation) or 50% ETo (water stress), can affect herbal yield, essential oil, and physiological aspects of clary sage, as well as how to improve clary sage plants utilizing biofertilizer in the field in Egypt’s Mediterranean climate zone. …”
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  2. 42

    Living plastics from plasticizer-assisted thermal molding of silk protein by Yushu Wang, Junqi Wu, Emily J. Hartzell, Weiguo Hu, Reddhy Mahle, Xinxin Li, Ying Chen, Jugal Kishore Sahoo, Cameron Chan, Brooke N. Longo, Charlotte S. Jacobus, Chunmei Li, David L. Kaplan

    Published 2025-01-01
    “…These silk-based plastics provide a protective matrix for probiotics, ensuring their survival through the harsh gastrointestinal tract and enhancing intestinal delivery. Similarly, soil rhizobacteria encapsulated within the plastics exhibit long-term protease activity, accelerating plastic degradation upon soil exposure. …”
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  3. 43

    Effect of copper ions on the associations of <i>Azospirillum</i> bacteria with wheat seedlings (<i>Triticum aestivum</i> L.) by A. Yu. Muratova, E. V. Lyubun, S. N. Golubev, O. V. Turkovskaya

    Published 2022-09-01
    “…We evaluated the effect of copper ions on common wheat (Triticum aestivum L.) inoculated with three plant-growth-promoting rhizobacteria (PGPR) of the genus Azospirillum. We analyzed the growth variables of 14-day-old wheat seedlings, the content of photosynthesis pigments, the activity of plant oxidoreductases, and the accumulation of copper by plant tissues. …”
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  4. 44

    Functional and genomic analyses of plant growth promoting traits in Priestia aryabhattai and Paenibacillus sp. isolates from tomato rhizosphere by Carolina Almirón, Tomás Denis Petitti, María Agustina Ponso, Ana María Romero, Vanessa Andrea Areco, María Isabel Bianco, Martín Espariz, Pablo Marcelo Yaryura

    Published 2025-01-01
    “…These findings underscore the importance of integrating in vitro assays, genomic analyses, and plant trials to gain a comprehensive insight into the PGP mechanisms of rhizobacteria like VMYP6 and VMY10. Such insight may contribute to improving the selection of strains used as biofertilizers in tomato, a major crop worldwide.…”
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  5. 45

    Ammonia-Assimilating Bacteria Promote Wheat (<i>Triticum aestivum</i>) Growth and Nitrogen Utilization by Yuqian Gao, Qi Zhang, Yuannan Chen, Yanqing Yang, Chenxiao Zhou, Jiayang Yu, Yanan Li, Liyou Qiu

    Published 2024-12-01
    “…The results suggest that the ammonia-assimilating bacterium promotes wheat growth, nitrogen accumulation, and soil nitrogen immobilization by establishing an ammonia and amino acid exchange with roots and enhancing root antioxidant capacity, making it a potential plant growth-promoting rhizobacteria (PGPR).…”
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  6. 46

    Role of Local Biofertilizer in Enhancing the Oxidative Stress Defence Systems of Date Palm Seedling (Phoenix dactylifera) against Abiotic Stress by Oumaima Harkousse, Afafe Slimani, Issam Jadrane, Mohamed Aitboulahsen, Mouaad Amine Mazri, Abdelmjid Zouahri, Lahcen Ouahmane, Tayeb Koussa, Mohamed Najib Al Feddy

    Published 2021-01-01
    “…Arbuscular mycorrhizal symbiosis and plant growth-promoting rhizobacteria (PGPR) are considered to be the bioameliorators of the plant’s resistance to water stress. …”
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  7. 47

    Improving the efficacy of potato clonal micropropagation by inoculation with the rhizosphere bacteria <i>Azospirillum baldaniorum</i> Sp245 and <i>Ochrobactrum cytisi</i> IPA7.2 by K. Yu. Kargapolova, O. V. Tkachenko, G. I. Burygin, N. V. Evseeva, A. A. Shirokov, L. Yu. Matora, S. Yu. Shchyogolev

    Published 2022-09-01
    “…Inoculation with plant-growth-promoting rhizobacteria in in vitro culture can be used to improve the growth efficacy and performance of microplants. …”
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  8. 48

    Applying microbial biostimulants and drought-tolerant genotypes to enhance barley growth and yield under drought stress by Mohamed Ferioun, Mohamed Ferioun, Ilham Zouitane, Said Bouhraoua, Yasmine Elouattassi, Douae Belahcen, Abdellatif Errabbani, Said Louahlia, Riyaz Sayyed, Naïma El Ghachtouli

    Published 2025-01-01
    “…Plant Growth Promoting Rhizobacteria (PGPR) play a crucial role in promoting plant growth through nutrient solubilization, nitrogen fixation, phytohormone production, exopolysaccharide secretion, enzyme activity enhancement, and many other mechanisms. …”
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  9. 49

    The Isolation of Lead-Tolerant PGPR from Red Clover Soil and Its Role in Promoting the Growth of Alfalfa by Wanting Nie, Yuchen Wu, Jingwen Jiang, Zicheng Wang, Meiqi Mu, Siwen Zhao, Minghao Yang, Xi Long, Xiujie Yin, Xiaohua Teng

    Published 2025-01-01
    “…Furthermore, the concurrent inoculation of three distinct types of plant growth-promoting rhizobacteria (PGPR) significantly diminished lead (Pb) concentrations in rhizosphere soil, enhanced the levels of available potassium (AK) and available phosphorus (AP), and augmented the capacity of plants to absorb Pb. …”
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  10. 50

    Biofilmed-PGPR: Next-Generation Bioinoculant for Plant Growth Promotion in Rice under Changing Climate by Jeberlin Prabina Bright, Hemant S. Maheshwari, Sugitha Thangappan, Kahkashan Perveen, Najat A. Bukhari, Debasis Mitra, Riyaz Sayyed, Andrea Mastinu

    Published 2025-01-01
    “…The exopolysaccharide matrix of diazotrophic cyanobacteria was used to integrate phosphorus (P) and potassium (K) solubilizing bacteria, enhancing the survival of plant growth-promoting rhizobacteria, and ultimately the survival of bacteria in the rhizosphere for better plant growth. …”
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  11. 51

    Enterobacter-inoculation altered the C, N contents and regulated biomass allocation in Reaumuria soongorica to promote plant growth and improve salt stress tolerance by Xin-Guang Bao, Xin-Guang Bao, Pei-Fang Chong, Pei-Fang Chong, Cai He, Xue-Mei Lu, Xue-Ying Wang, Feng Zhang, Bing-Bing Tan, Jia-Li Yang, Li-Li Gao

    Published 2025-01-01
    “…Plant growth-promoting rhizobacteria (PGPR) enhance plants’ resilience against biotic and abiotic stresses, thereby playing a vital role in soil improvement and vegetation restoration efforts. …”
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  12. 52

    Optimizing fodder yield and quality through integrated organic nutrient amendments in multi-crop system by Santosh Onte, Santosh Onte, Vrushabh Vijay Fiskey, Manjunath S. Melavanki, Airadevi P. Angadi, Prasanna S. Pyati, Magan Singh, Dileep Kumar, Sanjivkumar Angadarao Kochewad, Sudhir Kumar, Hari Om, Vijendra Kumar Meena, Kamal Garg, Vetrivel Karunakaran, Manish Kanwat, Babu Lal Meena, Yogananda Shivalli Boregowda, Rahul Bellagi, K. Naveena, Sunil Chandersheker, Elisa Azura Azman, Sanjeev Kumar

    Published 2025-02-01
    “…These treatments comprised of different combination of farmyard manure (FYM), Plant growth promoting rhizobacteria (PGPR) and foliar spray of panchagavya for maize (M), berseem (B), and cowpea (C) and a treatment with recommended dose of fertilizers. …”
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