Open Access
Issue
BIO Web Conf.
Volume 155, 2025
10th-ICCC – 10th International Conference on Climate Change “Climate Change, Plant and Health”
Article Number 01026
Number of page(s) 12
Section Impact of Depletion or Enhance of a Capability of Resources of Air, Water, Soil, and Vegetation
DOI https://doi.org/10.1051/bioconf/202515501026
Published online 29 January 2025
  • S. G. Burragoni and J. Jeon, Applications of endophytic microbes in agriculture, biotechnology, medicine, and beyond. Microbiological Research. 245, January (2021). [Google Scholar]
  • A. N. Yadav, D. Kour, T. Kaur, R. Devi, A. Yadav, M. Dikilitas, A. M. Abdel-Azeem, A. S. Ahluwalia, and A. K. Saxena, Biodiversity, and biotechnological contribution of beneficial soil microbiomes for nutrient cycling, plant growth improvement and nutrient uptake. Biocatalysis and Agricultural Biotechnology. 33, March (2021). [Google Scholar]
  • B. S. Adeleke and O. O. Babalola, Roles of Plant Endosphere Microbes in Agriculture-A Review. Journal of Plant Growth Regulation. 41, 4 (2022). [Google Scholar]
  • E. Kang, Y. Li, X. Zhang, Z. Yan, H. Wu, M. Li, L. Yan, K. Zhang, J. Wang, and X. Kang, Soil pH and nutrients shape the vertical distribution of microbial communities in an alpine wetland. Science of the Total Environment. 774, (2021). [Google Scholar]
  • J. Li, Q. Chen, Q. Li, C. Zhao, and Y. Feng, Influence of plants and environmental variables on the diversity of soil microbial communities in the Yellow River Delta Wetland, China. Chemosphere. 274, (2021). [Google Scholar]
  • M. Ali, Q. Ali, M. A. Sohail, M. F. Ashraf, M. H. Saleem, S. Hussain, and L. Zhou, Diversity and taxonomic distribution of endophytic bacterial community in the rice plant and its prospective. International Journal of Molecular Sciences. 22, 18 (2021). [Google Scholar]
  • K. M. G. Dastogeer, F. H. Tumpa, A. Sultana, M. A. Akter, and A. Chakraborty, Plant microbiome-an account of the factors that shape community composition and diversity. Current Plant Biology. 23, June (2020). [Google Scholar]
  • D. N. Nair and S. Padmavathy, Impact of endophytic microorganisms on plants, environment and humans. The Scientific World Journal. 2014, (2014). [Google Scholar]
  • J. F. White, K. L. Kingsley, Q. Zhang, R. Verma, N. Obi, S. Dvinskikh, M. T. Elmore, S. K. Verma, S. K. Gond, and K. P. Kowalski, Review: Endophytic microbes and their potential applications in crop management. Pest Management Science. 75, 10 (2019). [Google Scholar]
  • V. S. Meena, P. K. Mishra, J. K. Bisht, and A. Pattanayak, Agriculturally important microbes for sustainable agriculture. Agriculturally Important Microbes for Sustainable Agriculture. 1, December (2017). [Google Scholar]
  • I. Smirnova, A. Sadanov, G. Baimakhanova, E. Faizulina, and L. Tatarkina, Use of a Consortium of Agronomically Important Microorganisms for Growing Soybean (Glycine max (L.) Merr.). The Open Agriculture Journal. 17, 1 (2023). [CrossRef] [Google Scholar]
  • D. Bekele and M. Birhan, The Characteristics, Distribution and Management of Alfisols. International Journal of Research Studies in Agricultural Sciences. 7, 6 (2021). [Google Scholar]
  • V. Kumar, S. Kant, Shikha, and A. Kumar, Morphological and Pedological Features of Alfisols. Agriways. 4, 2 (2016). [Google Scholar]
  • O. Duchene, J. F. Vian, and F. Celette, Intercropping with legume for agroecological cropping systems: Complementarity and facilitation processes and the importance of soil microorganisms. A review. Agriculture, Ecosystems and Environment. 240, (2017). [Google Scholar]
  • E. R. Dwipa, H. Widiyono, and B. G. Murcitro, Enhancing Entisols Physical Properties and Sweet Corn Agronomic Performances with Liquid Organic Fertilizer and Cow Manure. Journal of Land Restoration. 6, 2 (2023). [Google Scholar]
  • J. Nyaombo and A. E. Majule, Characterization of Vertisols Fertility Status and Their Implications on Chickpea (Cicer arietinum L.) Farming in Semi-Arid Areas of Itigi District in Tanzania. Indonesian Journal of Agricultural Research. 5, 2 (2023). [Google Scholar]
  • B. H. Prasetyo, PERBEDAAN SIFAT-SIFAT TANAH VERTISOL DARI BERBAGAI BAHAN INDUK. Jurnal Ilmu-Ilmu Pertanian Indonesia. 9, 1 (2017). [CrossRef] [Google Scholar]
  • S. Sudewi, A. Ala, Baharuddin, and M. Farid, The isolation, characterization endophytic bacteria from roots of local rice plant kamba in, central sulawesi, indonesia. Biodiversitas. 21, 4 (2020). [CrossRef] [Google Scholar]
  • R. G. Medison, L. Tan, M. B. Medison, and K. E. Chiwina, Use of beneficial bacterial endophytes: A practical strategy to achieve sustainable agriculture. AIMS Microbiology. 8, 4 (2022). [Google Scholar]
  • M. Ameen, A. Mahmood, A. Sahkoor, M. A. Zia, and M. S. Ullah, The role of endophytes to combat abiotic stress in plants. Plant Stress. 12, March (2024). [Google Scholar]
  • R. Grabka, T. W. D’entremont, S. J. Adams, A. K. Walker, J. B. Tanney, P. A. Abbasi, and S. Ali, Fungal Endophytes and Their Role in Agricultural Plant Protection against Pests and Pathogens. Plants. 11, 3 (2022). [Google Scholar]
  • A. H. M. H. Zuhdi and L. D. Indarwati, Analysis of Potential Cropping Seasons of Cayenne Pepper (Capsicum frustescens L.) Based on Water Balance in Alfisol Dryland, Tuban Regency, East Java, Indonesia. Journal of Tropical Crop Science. 11, 1 (2024). [CrossRef] [Google Scholar]
  • J. Purnomo, Meningkatkan Produksi Kacang Tanah Lahan Alfisol Dengan Menanam Varietas Toleran. Buletin Palawija. 0, 10 (2005). [Google Scholar]
  • L. Zhao, J. Li, N. Tian, G. Li, L. Sheng, C. He, and H. Bian, Effect of experimental warming on dissolved organic matter and bacterial diversity in a forest swamp soil. Ecological Indicators. 158, (2024). [Google Scholar]
  • M. Z. Hossain, M. M. Bahar, B. Sarkar, S. W. Donne, Y. S. Ok, K. N. Palansooriya, M. B. Kirkham, S. Chowdhury, and N. Bolan, Biochar and Its Importance on Nutrient Dynamics in Soil and Plant, (Springer Singapore, 2020). [Google Scholar]
  • Y. Xia, S. DeBolt, J. Dreyer, D. Scott, and M. A. Williams, Characterization of culturable bacterial endophytes and their capacity to promote plant growth from plants grown using organic or conventional practices. Frontiers in Plant Science. 6, JULY (2015). [Google Scholar]
  • L. Singh, N. Ruprela, N. Dafale, and S. T. Thul, Variation in Endophytic Bacterial Communities Associated with the Rhizomes of Tropical Bamboos. Journal of Sustainable Forestry. 40, 2 (2021). [Google Scholar]
  • A. F. Aziez, D. Wiyono, and D. R. Wulandari, Evaluating diazotrophic endophytic bacteria consortium on the physiology of various varieties of rice (Oryza sativa) in rainfed lowlands. Research on Crops. 23, 4 (2022). [CrossRef] [Google Scholar]
  • I. Afzal, Z. K. Shinwari, S. Sikandar, and S. Shahzad, Plant beneficial endophytic bacteria: Mechanisms, diversity, host range and genetic determinants. Microbiological Research. 221, April 2018 (2019). [Google Scholar]
  • M. Muhammad, A. Waheed, A. Wahab, M. Majeed, M. Nazim, Y. H. Liu, L. Li, and W. J. Li, Soil salinity and drought tolerance: An evaluation of plant growth, productivity, microbial diversity, and amelioration strategies. Plant Stress. 11, December 2023 (2024). [Google Scholar]
  • M. Sharma and S. Mallubhotla, Diversity, Antimicrobial Activity, and Antibiotic Susceptibility Pattern of Endophytic Bacteria Sourced From Cordia dichotoma L. Frontiers in Microbiology. 13, May (2022). [Google Scholar]
  • B. N. Bearden and L. Petersen, Influence of arbuscular mycorrhizal fungi on soil structure and aggregate stability of a vertisol. Plant and Soil. 218, 1-2 (2000). [Google Scholar]
  • Y. Hu, G. Y. Wei, J. T. Wen, L. F. Chang, Y. S. Chen, Y. Wang, and M. M. Nizamani, Endophytic fungi: Tracing the evolutionary roots and exploring the diversity of plant- fungal symbioses. Current Research in Environmental and Applied Mycology. 14, 1 (2024). [CrossRef] [Google Scholar]
  • E. Mandolini, M. Probst, and U. Peintner, Methods for studying bacterial-fungal interactions in the microenvironments of soil. Applied Sciences (Switzerland). 11, 19 (2021). [Google Scholar]
  • P. Jha, T. Kaur, I. Chhabra, A. Panja, S. Paul, V. Kumar, and T. Malik, Endophytic fungi: hidden treasure chest of antimicrobial metabolites interrelationship of endophytes and metabolites. Frontiers in Microbiology. 14, July (2023). [Google Scholar]
  • J. K. Eo, J. W. Choi, and A. H. Eom, Diversity, Distribution, and Host Plant of Endophytic Fungi: A Focus on Korea. Mycobiology. 50, 6 (2022). [Google Scholar]
  • J. Guo, R. L. McCulley, T. D. Phillips, and D. H. McNear, Fungal endophyte and tall fescue cultivar interact to differentially effect bulk and rhizosphere soil processes governing C and N cycling. Soil Biology and Biochemistry. 101, (2016). [Google Scholar]
  • A. T. Morales-Vargas, V. López-Ramírez, C. Álvarez-Mejía, and J. Vázquez-Martinez, Endophytic Fungi for Crops Adaptation to Abiotic Stresses. Microorganisms. 12, 7 (2024). [Google Scholar]
  • K. Oorts, B. Vanlauwe, and R. Merckx, Cation exchange capacities of soil organic matter fractions in a Ferric Lixisol with different organic matter inputs. Agriculture, Ecosystems and Environment. 100, 2-3 (2003). [Google Scholar]
  • A. A. Abdelhafez, H. H. Abbas, R. S. Abd-El-Aal, N. F. Kandil, J. Li, and W. Mahmoud, Environmental and Health Impacts of Successive Mineral Fertilization in Egypt. Clean - Soil, Air, Water. 40, 4 (2012). [Google Scholar]
  • A. O. Adekiya, G. A. Ajayi, K. A. Adegbite, F. L. Imhanze, and A. L. Ibaba, Mineralogical compositions of soils under three geological formations in some parts of Ogun state, Nigeria and their agricultural potentials. Scientific Reports. 14, 1 (2024). [CrossRef] [Google Scholar]
  • L. A. de Andrade, C. H. B. Santos, E. T. Frezarin, L. R. Sales, and E. C. Rigobelo, Plant Growth-Promoting Rhizobacteria for Sustainable Agricultural Production. Microorganisms. 11, 4 (2023). [Google Scholar]
  • A. Hashem, B. Tabassum, and E. Fathi Abd Allah, Bacillus subtilis: A plant-growth promoting rhizobacterium that also impacts biotic stress. Saudi Journal of Biological Sciences. 26, 6 (2019). [Google Scholar]
  • B. L. Mellbye, P. J. Bottomley, and L. A. Sayavedra-Soto, Nitrite-oxidizing bacterium Nitrobacter winogradskyi produces N-acyl-homoserine lactone autoinducers. Applied and Environmental Microbiology. 81, 17 (2015). [Google Scholar]
  • P. Ghorai and D. Ghosh, Screening and isolation of potential nitrogen-fixing Enterobacter sp. GG1 from mangrove soil with its accelerated impact on green chili plant (Capsicum frutescens L.) growth amelioration. Journal of Applied Biology and Biotechnology. 11, 6 (2023). [Google Scholar]
  • M. Milenkov, R. Thummer, J. Glöer, J. Grötzinger, S. Jung, and R. A. Schmitz, Insights into membrane association of Klebsiella pneumoniae NifL under nitrogen-fixing conditions from mutational analysis. Journal of Bacteriology. 193, 3 (2011). [Google Scholar]
  • Q. Ma, S. He, X. Wang, Z. Rengel, L. Chen, X. Wang, S. Pei, X. Xin, and X. Zhang, Isolation and characterization of phosphate-solubilizing bacterium Pantoea rhizosphaerae sp. nov. from Acer truncatum rhizosphere soil and its effect on Acer truncatum growth. Frontiers in Plant Science. 14, July (2023). [Google Scholar]
  • L. Pang, Y. He, X. Liu, J. Li, and P. Yang, The role of a newly isolated strain Corynebacterium pollutisoli SPH6 in waste activated sludge alkaline fermentation. Chemosphere. 241, (2020). [Google Scholar]
  • D. T. Jones, The Industrial Fermentation Process and Clostridium Species Used to Produce Biobutanol. Applied Microbiology. 4, 2 (2024). [Google Scholar]
  • A. Sumbul, R. A. Ansari, R. Rizvi, and I. Mahmood, Azotobacter: A potential bio-fertilizer for soil and plant health management. Saudi Journal of Biological Sciences. 27, 12 (2020). [Google Scholar]
  • M. Tavares, M. Kozak, A. Balola, and I. Sá-Correia, Burkholderia cepacia complex bacteria: A feared contamination risk in water-based pharmaceutical products. Clinical Microbiology Reviews. 33, 3 (2020). [CrossRef] [Google Scholar]
  • A. Jayakumar, A. Krishna, I. C. Nair, and E. K. Radhakrishnan, Drought-tolerant and plant growth-promoting endophytic Staphylococcus sp. having synergistic effect with silicate supplementation. Archives of Microbiology. 202, 7 (2020). [Google Scholar]
  • Renaldo Olivar, Entisol Chemical Properties On The System Organic Agriculture. International Journal of Science Review. 3, 1 (2021). [Google Scholar]

Current usage metrics show cumulative count of Article Views (full-text article views including HTML views, PDF and ePub downloads, according to the available data) and Abstracts Views on Vision4Press platform.

Data correspond to usage on the plateform after 2015. The current usage metrics is available 48-96 hours after online publication and is updated daily on week days.

Initial download of the metrics may take a while.