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2020 | 30 | 2 |

Tytuł artykułu

Endomycorrhizal studies in Curcuma aeruginosa Roxb. of Kerala, India

Autorzy

Treść / Zawartość

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN

Słowa kluczowe

Wydawca

-

Rocznik

Tom

30

Numer

2

Opis fizyczny

p.125-135,fig.,ref.

Twórcy

  • Department of Botany, St Joseph University, Dimapur, 797 115 Nagaland, India

Bibliografia

  • [1] G.R. Angel, B. Vimala, B. Nambisan, Phenolic content and antioxidant activity in five underutilized starchy Curcuma species. International Journal of Pharmacognosy and Phytochemical Research 4 (2012) 69–73
  • [2] Y. Liu, S.S. Roy, R.H.C. Nebie, Y. Zhang, M.G. Nair, Functional Food Quality of Curcuma caesia , Curcuma zedoaria and Curcuma aeruginosa Endemic to Northeastern India. Plant FoodsHuman Nutrition 68 (2013) 72–77
  • [3] S. Srivastava, N. Chitranshi, S. Srivastava, Ma. Dan, A. Rawat, P. Pushpangadan, Pharmacognostic evaluation of Curcuma aeruginosa Roxb. Natural Products Science 12 (2006) 162–165
  • [4] B. Vimala, B. Nambisan, Variability of Rhizome Yield and Biochemical Characters of Some Starchy Curcuma Species. Joural of Root Crops 36 (2010) 189–193
  • [5] W. Moon-ai, P. Niyomploy, A Superoxide Dismutase Purified from the Rhizome of Curcuma aeruginosa Roxb. as Inhibitor of Nitric Oxide Production in the Macrophage-like RAW 264. 7 Cell Line. Applied Biochemistry and Biotechnology 166 (2012) 2138–2155
  • [6] T.S.A.T. Kamazeri, O.A. Samah, M. Taher, D. Susanti, H. Qaralleh, Antimicrobial activity and essential oils of Curcuma aeruginosa , Curcuma mangga , and Zingiber cassumunar from Malaysia. Asian Pacific Journal of Tropical Medicine (2012) 202–209
  • [7] S. Hempel, L. Gotzenberger, I. Kuhn, S.G. Michalski, M.C. Rillig, M. Zobel, M. Moora, Mycorrhizas in the Central European flora: Relationships with plant life history traits and ecology. Ecology 94 (2013) 1389–1399. doi:10.1890/12-1700.1
  • [8] L.K. Abbott, A.D. Robson, The role of vesicular arbuscular mycorrhizal fungi in agriculture and the selection of fungi for inoculation. Australian Journal of Agricultural Research 33 (1982) 389–408. doi:10.1071/AR9820389
  • [9] M. Gerz, C.G. Bueno, M. Zobel, M. Moora, Plant community mycorrhization in temperate forests and grasslands : relations with edaphic properties and plant diversity. Journal of Vegetation Science 27 (2016) 89–99. doi:10.1111/jvs.12338
  • [10] N. Valsalakumar, J.G. Ray, V.P. Potty, Arbuscular Mycorrhizal Fungi Associated with Green Gram in South India Identification of Arbuscular Mycorrhizal Fungi. Agronomy Journal 99 (2007) 1260–1265. doi:10.2134/agronj2006.0367
  • [11] G. Mahecha-Vásquez, S. Sierra, R. Posada, Diversity indices using arbuscular mycorrhizal fungi to evaluate the soil state in banana crops in Colombia. Applied Soil Ecology 109 (2017) 32–39. doi:10.1016/j.apsoil.2016.09.017
  • [12] S.P. Khodke, Arbuscular mycorrhizal fungi and dark septate endophytic association in Curcuma species, International Journal of Innovations in Bio-Sciences 3 (2013) 6–9
  • [13] J.W. Gerdemann, T.. Nicolson, Spores of mycorrhizal endogone species extracted from soil gy wet sieving and decanting. Transactions of the British Mycological Society 46 (1963) 235–244
  • [14] G.W. Smith, H.D. Skipper, Comparison of methods to extract spores of vesicular arbuscular fungi. Soil Science Society of America Journal 43 (1979) 1979
  • [15] I.R. Hall, B.J. Fish, A key to the Endogonaceae. Transactions of the British Mycological Society 73 (1979) 261–270
  • [16] N.C. Schenk, Y. Perez, Manual for the Identification of VA Mycorrhizal Fungi, Synergistic Publications, USA, Gainesville, 1988.
  • [17] D. Redecker, A. Schüßler, H. Stockinger, S.L. Stürmer, J.B. Morton, C. Walker, An evidence-based consensus for the classification of arbuscular mycorrhizal fungi (Glomeromycota). Mycorrhiza 23 (2013) 515–531
  • [18] A. Schüßler, C. Walker, The Glomeromycota: a species list with new families, Glomeromycota a Species List with New Fam. (2010) 1–56. http://www.amf-phylogeny.com (accessed July 19, 2016).
  • [19] INVAM, International Culture Collection of (Vesicular) Arbuscular Mycorrhizal Fungi - Establishment of Monospecific Cultures, (2016) 2016. http://invam.wvu.edu/methods/cultures/single-species-cultures (accessed August 25, 2016).
  • [20] J.M. Philips, D.S. Hayman, Improved procedure for clearing roots and staining parasitic VAM for rapid assessment of infection. Transactions of the British Mycological Society 55 (1970) 158–161
  • [21] K. Chen, W. Liu, S. Guo, R. Liu, M. Li, Diversity of arbuscular mycorrhizal fungi in continuous cropping soils used for pepper production. African Journal of Microbiology Research 6 (2012) 2469–2474. doi:10.5897/AJMR11.1532
  • [22] P.D. Stiling, Ecology : global insights & investigations, The McGraw-Hill Companies, Inc., 1221 Avenue of the Americas, New York, NY, 2012.
  • [23] D.L. Sparks, Methods of soil analysis: Part 3 - Chemical methods, SSSA Book Ser No. 5, Madison., 1996.
  • [24] R.H. Bray, L.T. Kurtz, Determination of total, organic and available forms of phosphorus in soils. Soil Science 59 (1945) 39–45
  • [25] M.L. Jackson, Chemical Analysis, Asia Publishing House, New Delhi, New Delhi, 1967.
  • [26] A. Walkley, I.A. Black, An examination of the degtjareff method for determining soil organic matter and proposed modification of chromic acid titration method. Soil Science 37 (1934) 29–38
  • [27] Soil Survey Organization, Benchmark soils of Kerala. Agriculture Department, Government of Kerala., Agriculture Department, Government of Kerala, 2007.

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

bwmeta1.element.agro-e4c35643-3a2f-469a-94b6-789b27cd1875
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