Core Microbiome. Группа авторов

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Core Microbiome - Группа авторов


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to keener studies on the selection of microbes, their characterization, and plant–microbe compatibility when introduced into the new environment to mitigate abiotic stress in medicinal plants.

      References

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      17 Castillo, U.F., Strobel, G.A., Ford, E.J., Hess, W.M., Porter, H., Jensen, J.B., and Teplow, D.B. (2002). Munumbicins, wide-spectrum antibiotics produced by Streptomyces NRRL 30562, endophytic on Kennedia nigriscansaa. The GenBank accession number for the sequence determined in this work is AY127079. Microbiology 148 (9): 2675–2685.

      18 Castillo, U., Harper, J.K., Strobel, G.A., Sears, J., Alesi, K., Ford, E., and Ge, H. (2003). Kakadumycins, novel antibiotics from Streptomyces sp. NRRL 30566, an endophyte of Grevillea pteridifolia. FEMS Microbiology Letters 224 (2): 183–190.

      19 Chandra, D., Kim, J.G., and Kim, Y.P. (2012). Changes in microbial population and quality of microgreens treated with different sanitizers and packaging films. Horticulture, Environment, and Biotechnology 53 (1): 32–40.

      20 Chowdhary, K., Kumar, A., Sharma, S., Pathak, R., and Jangir, M. (2018). Ocimum sp.: Source of biorational pesticides. Industrial Crops and Products 122: 686–701.

      21 Cloete, K.J., Przybylowicz, W.J., Mesjasz‐przybylowicz, J.O.L.A.N.T.A., Barnabas, A.D., Valentine, A.J., and Botha, A. (2010). Micro‐particle‐induced X‐ray emission mapping of elemental distribution in roots of a Mediterranean‐type sclerophyll, Agathosma betulina (Berg.) Pillans, colonized by Cryptococcus laurentii. Plant, Cell & Environment 33 (6): 1005–1015.

      22 Compant, S., Van Der Heijden, M.G., and Sessitsch, A. (2010). Climate change effects on beneficial plant–microorganism interactions. FEMS Microbiology Ecology 73 (2): 197–214.

      23 Dai, C.-C., Chen, Y., Wang, X.-X., and Li, P.-D. (2013). Effects of intercropping of peanut with the medicinal plant Atractylodes lancea on soil microecology and peanut yield in subtropical China. Agroforestry Systems 87 (2): 417–426.

      24 Debbab, A., Aly, A.H., Edrada-Ebel, R., Müller, W.E.G., Mosaddak, M., Hakikj, A., and Proksch, P. (2009). Bioactive secondary metabolites from the endophytic fungus Chaetomium sp. isolated from Salvia officinalis growing in Morocco. Biotechnology, Agronomy, Society and Environment (BASE) 13 (2): 229–234.

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      26 Dos Santos, A.L.W., Elbl, P., Navarro, B.V., de Oliveira, L.F., Salvato, F., Balbuena, T.S., and Floh, E.I.S. (2016). Quantitative proteomic analysis of Araucaria angustifolia (Bertol.) Kuntze cell lines with contrasting embryogenic potential. Journal of Proteomics 130: 180–189.

      27 Dubey, A., Malla, M.A., Kumar, A., Dayanandan, S., and Khan, M.L. (2020). Plants endophytes: Unveiling hidden agenda for bioprospecting toward sustainable agriculture. Critical Reviews in Biotechnology 40 (8): 1210–1231.

      28 Dubey, D., Kothapalli, N., McKeon, A., Flanagan, E.P., Lennon, V.A., Klein, C.J., and Tillema, J.-M. (2018). Predictors of neural-specific autoantibodies and immunotherapy response in patients with cognitive dysfunction. Journal of Neuroimmunology 323: 62–72.

      29 Egamberdieva, D., Wirth, S.J., Alqarawi, A.A., Abd_Allah, E.F., and Hashem, A. (2017). Phytohormones and beneficial microbes: Essential components for plants to balance stress and fitness. Frontiers in Microbiology 8: 2104.

      30 Eliašová, A., Repčák, M., and Pastírová, A. (2004). Quantitative changes of secondary metabolites of Matricaria chamomilla by abiotic stress. Zeitschrift Für Naturforschung C 59 (7-8): 543–548.

      31 El-Leithy, E.S., Shaker, D.S., Ghorab, M.K., and Abdel-Rashid, R.S. (2010). Evaluation of mucoadhesive hydrogels loaded with diclofenac sodium–chitosan microspheres for rectal administration. Aaps Pharmscitech 11 (4): 1695–1702.

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      33 Farahani, H.A., Valadabadi, S.A., Daneshian, J., and Khalvati, M.A. (2009). Evaluation changing of essential oil of balm (Melissa officinalis L.) under water deficit stress conditions. Journal of Medicinal Plants Research 3 (5): 329–333.

      34 Freitas, H., Prasad, M.N.V., and Pratas, J. (2004). Plant community tolerant to trace elements growing on the degraded soils of Sao Domingos mine in the southeast of Portugal: Environmental implications. Environment International 30 (1): 65–72.

      35 Gao,


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