Core Microbiome. Группа авторов

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in improving crop productivity under stressful environments. Biotechnology Advances 32 (2): 429–448.

      73 Naeem, M., Khan, M.N., and Khan, M.M.A. (2013). Adverse effects of abiotic stresses on medicinal and aromatic plants and their alleviation by calcium. In: Plant Acclimation to Environmental Stress. 101–146, Springer.

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      75 Narula, A., Kumar, S., and Srivastava, P.S. (2005). Abiotic metal stress enhances diosgenin yield in Dioscorea bulbifera L. cultures. Plant Cell Reports 24 (4): 250–254.

      76 Nam, M.H., Kim, S.I., Liu, J.R., Yang, D.C., Lim, Y.P., Kwon, K.-H., and Park, Y.M. (2005). Proteomic analysis of Korean ginseng (Panax ginseng CA Meyer). Journal of Chromatography B 815 (1-2): 147–155.

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      78 Ngumbi, E. and Kloepper, J. (2016). Bacterial-mediated drought tolerance: Current and future prospects. Applied Soil Ecology 105: 109–125.

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      86 Rahmani, N., Daneshian, J., Farahani, H.A., and Taherkhani, T. (2011). Evaluation of nitrogenous fertilizer influence on oil variations of Calendula (Calendula officinalis L.) under drought stress conditions. Journal of Medicinal Plants Research 5 (5): 696–701.

      87 Ramin, A.A. (2006). Effects of salinity and temperature on germination and seedling establishment of sweet basil (Ocimum basilicum L.). Journal of Herbs, Spices & Medicinal Plants 11 (4): 81–90.

      88 Razmjoo, K.H.O.R.S.H.I.D., Heydarizadeh, P.A.R.I.S.A., and Sabzalian, M.O.H.A.M.M.A.D.R. (2008). Effect of salinity and drought stresses on growth parameters and essential oil content of Matricaria Chamomile. International Journal of Agriculture And Biology 10 (4): 451–454.

      89 Rejšková, A., Patková, L., Stodůlková, E., and Lipavská, H. (2007). The effect of abiotic stresses on carbohydrate status of olive shoots (Olea europaea L.) under in vitro conditions. Journal of Plant Physiology 164 (2): 174–184.

      90 Ruanpanun, P., Tangchitsomkid, N., Hyde, K.D., and Lumyong, S. (2010). Actinomycetes and fungi isolated from plant-parasitic nematode infested soils: Screening of the effective biocontrol potential, indole-3-acetic acid and siderophore production. World Journal of Microbiology and Biotechnology 26 (9): 1569–1578.

      91 Sahoo, R.K., Ansari, M.W., Dangar, T.K., Mohanty, S., and Tuteja, N. (2014). Phenotypic and molecular characterisation of efficient nitrogen-fixing Azotobacter strains from rice fields for crop improvement. Protoplasma 251 (3): 511–523.

      92 Said-Al Ahl, H. and Omer, E.A. (2011). Medicinal and aromatic plants production under salt stress. A review. Herba Polonica 57 (1): 72–87.

      93 Saito, K. (2013). Phytochemical genomics—a new trend. Current Opinion in Plant Biology 16 (3): 373–380.

      94 Shi, J.-Y., Yuan, X.-F., Lin, H.-R., Yang, Y.-Q., and Li, Z.-Y. (2011). Differences in soil properties and bacterial communities between the rhizosphere and bulk soil and among different production areas of the medicinal plant Fritillaria thunbergii. International Journal of Molecular Sciences 12 (6): 3770–3785.

      95 Singh, S., Kate, B.N., and Banerjee, U.C. (2005). Bioactive compounds from cyanobacteria and microalgae: An overview. Critical Reviews in Biotechnology 25 (3): 73–95.

      96 Sorty, A.M., Meena, K.K., Choudhary, K., Bitla, U.M., Minhas, P.S., and Krishnani, K.K. (2016). Effect of plant growth promoting bacteria associated with halophytic weed (Psoralea corylifolia L) on germination and seedling growth of wheat under saline conditions. Applied Biochemistry and Biotechnology 180 (5): 872–882.

      97 Taarit, M.B., Msaada, K., Hosni, K., and Marzouk, B. (2010). Changes in fatty acid and essential oil composition of sage (Salvia officinalis L.) leaves under NaCl stress. Food Chemistry 119 (3): 951–956.

      98 Tamilarasi, S., Nanthakumar, K., Karthikeyan, K., and Lakshmanaperumalsamy, P. (2007). Diversity of root associated microorganisms of selected medicinal plants and influence of rhizomicroorganisms on the antimicrobial property of Coriandrum Sativum. Journal of Environmental Biology 29 (1): 127.

      99 Ting, A.S.Y., Tan, L.M., and Ling, A.P.K. (2009). In vitro assessment of tolerance of Orthosiphon stamineus to induced water and salinity stress. Asian Journal of Plant Sciences 8 (3): 206–211.

      100 Vishwakarma, K., Kumar, N., Shandilya, C., Mohapatra, S., Bhayana, S., and Varma, A. (2020). Revisiting plant–microbe interactions and microbial consortia application for enhancing sustainable agriculture: A review. Frontiers in Microbiology 11: 3195.

      101 Wahid, A., Gelani, S., Ashraf, M., and Foolad, M.R. (2007). Heat tolerance in plants: An overview. Environmental and Experimental Botany 61 (3): 199–223.

      102 Ward, J.L., Baker, J.M., Llewellyn, A.M., Hawkins, N.D., and Beale, M.H. (2011). Metabolomic analysis of Arabidopsis reveals hemiterpenoid glycosides as products of a nitrate ion-regulated, carbon flux overflow. Proceedings of the National Academy of Sciences 108 (26): 10762–10767.

      103 Whang, K.-S., Lee, J.-C., Lee, H.-R., Han, S.-I., and Chung, S.-H. (2014). Terriglobustenax sp. nov., an exopolysaccharide-producing Acidobacterium isolated from rhizosphere soil of a medicinal plant. International Journal of Systematic and Evolutionary Microbiology 64 (Pt_2): 431–437.

      104 Williamson, E. (2003). Drug interactions between herbal and prescription medicines. Drug Safety 26: 1075–1092.

      105 Wings, S., Müller, H., Berg, G., Lamshöft, M., and Leistner, E. (2013). A study of the bacterial community in the root system of the maytansine containing plant Putterlickia verrucosa. Phytochemistry 91: 158–164.

      106 Winzer, T., Gazda, V., He, Z., Kaminski, F., Kern, M., Larson, T.R., and Vaistij, F.E. (2012). A Papaver somniferum 10-gene cluster for synthesis of the anticancer alkaloid noscapine. Science 336 (6089): 1704–1708.

      107 Xianzhi, Y., Shiping, G., Lingqi, Z., and Hua, S. (2003). Select of producing podophyllotoxin endophytic fungi from podophyllin plant. Natural Product Research and Development 15 (5): 419–422.

      108 Xu, Z., Xu, Q., Zheng, Z., and Huang, Y. (2012). Kribbella amoyensis sp. nov., isolated from rhizosphere soil of a pharmaceutical plant, Typhonium giganteum Engl. International Journal of Systematic and Evolutionary Microbiology


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