Ukiya M, Arihisa T, Tokudo H, Suzuki H, Mukainaka T, Ichiishi E, Yasulawa K, Kasahara Y, Nishino H. Constituents of compositae plants III. antitumor promoting effects and cytotoxic activity against human cancer cell lines of triterpenediols and triols from edible chrysanthemum flowers[J]. Cancer Letters, 2002, 177(1): 7-12
Bellomarino S A, Conlan X A, Parker R M, Barnett N W, Adams M J. Geographical classification of some Australian wines by discriminant analysis using HPLC with UV and chemiluminescence detection[J]. Talanta, 2009, 80(2): 833-838
[7]
Gonzálvez A, Llorens A, Cervera M L, Armenta S, Guardia M D. Elemental fingerprint of wines from the protected designation of origin Valencia[J]. Food Chemistry, 2009, 112: 26-34
[8]
Maggi L, Carmona M, Kelly S D, Marigheto N, Alonso G L, Geographical origin differentiation of saffron spice (Crocus sativus L. stigmas)-preliminary investigation using chemical and multielement (H, C, N) stable isotope analysis[J]. Food Chemistry, 2011, 128(2): 543-548
Dubreuil P, Charcosset A. Genetic diversity within and among maize populations: a comparison between isozyme and nuclear RFLP loci[J]. Theoretical Applied Genetics, 1998, 96: 577-587
[11]
Kelly S, Heaton K, Hoogewer J. Tracing the geographical origin of food: The application of multi-element and multi-isotope analysis[J]. Trends in Food Science & Technology, 2005, 16: 555-567
[12]
Pilgrim T S, Watling R J, Grice K. Application of trace element and stable isotope signatures to determine the provenance of tea (Camellia sinensis) samples[J]. Food Chemisty, 2010, 118: 921-926
[13]
Zhao H, Guo B, Wei Y, Zhang B, Sun S, Zhang L, Yan J. Determining the geographic origin of wheat using multielement analysis and multivariate statistics[J]. Journal of Agricultural and Food Chemistry, 2011, 59(9): 4397-402
[14]
Gonzálvez A, Armenta S, de la Guardia M, Geographical traceability of "Arròs de Valencia" rice grain based on mineral element composition[J]. Food Chemisty, 2010, 126(3): 1254-1260
[15]
Di Giacomo F, Del Signore A, Giaccio M. Determining the geographic origin of potatoes using mineral and trace element content[J]. Journal of Agricultural and Food Chemistry, 2007, 7, 55(3): 860-866.
[16]
Ariyama K, Horita H, Yasui A. Application of inorganic element ratios to chemometrics for determination of the geographic origin of welsh onions[J]. Journal of Agricultural and Food Chemistry, 2004, 52(19): 5803-5809.
[17]
Pisani A G. Protano and F. Riccobono. Minor and trace elements in different honey types produced in Siena County (Italy) [J]. Food Chemisty, 2008, 107: 1553-1560.
[18]
Martin G J,Mazure M, Jouitteau C, Martin Y L, AguileL Allain P. Characterization of the geographic origin of Bordeaux wines by a combined use of isotopic and trace element measurements[J]. American Journal of Enology and Viticulture, 1999, 50(4): 409-417
[19]
Camin F, Larcher R, Nicolini G, Bontempo L, Bertoldi D, Perini M, Schlicht C, Schellenberg A, Thomas F, Heinrich K, Voerkelius S, Horacek M, Ueckermann H, Froeschl H, Wimmer B, Heiss G, Baxter M, Rossmann A, Hoogewerff J. Isotopic and elemental data for tracing the origin of European olive oils[J]. Journal of Agricultural and Food Chemistry, 2010, 58(1):570-577.
[20]
Joebstl D, Bandoniene D, Meisel T, Chatzistathis S. Identification of the geographical origin of pumpkin seed oil by the use of rare earth elements and discriminant analysis[J]. Food Chemisty, 2010, 123: 1303-1309
Tsialtas J T, Matsi T, Barbayiannis N, Sdrakas A, Veressoglou D. Strontium absorption by two Trifolium species as influenced by soil characteristics and liming[J]. Water Air Soil Poll, 2003, 144: 363-373
[26]
Kokot S, Phuong T D. Elemental content of Vietnamese rice: Part 2. Multivariate data analysis[J]. Analyst, 1999, 24: 561-569.
[27]
Lewis J, Hird S. Determining the geographical origin of foods: Considerations when designing experimental protocols and choosing analytical approaches [M] In S. Caroly (Ed.), The determination of chemical elements in food: Applications for atomic and mass spectrometry. New Jersey: John Wiley & Sons Inc., 2006
[28]
Nyholma N E I, Tyler G. Rubidium content of plants, fungi and animals closely reflects potassium and acidity conditions of forest soils[J]. Forest Ecology and Management,2000, 134: 89-96