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2011 | 33 | 4 |

Tytuł artykułu

A new anti-counterfeiting method: fluorescent labeling by safranine T in tobacco seed

Autorzy

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
Counterfeit seeds cause a large loss in seed industry and crop production. Present study was undertaken to find a new anti-counterfeiting technology by labeling seeds with a fluorescent compound, safranine T (ST). Response surface analysis (RSA) experiment with two factors (ST concentration and seed soaking time) of 14 combinations was performed to investigate the ST effects on seed vigor and fluorescence showing in seedlings of two tobacco varieties, MS Yunyan 85 and Honghua Dajinyuan. After soaking in ST solutions, tobacco seeds were germinated for 16 days, then the germination index (GI), vigor index (VI), length of roots and shoots were determined. The optimum combinations of ST concentration and soaking time on GI, VI and length of shoots and roots were 0.57–0.69 mg/ml and 6.77–9.34 h for MS Yunyan 85 and 0.51–0.80 mg/ml and 5.81–7.39 h for Honghua Dajinyuan, respectively. Meanwhile, tobacco seedlings, treated with ST solutions from 0.3 to 1.5 mg/ml showed obviously fluorescence under illumination of green light. It suggests that soaking tobacco seeds in safranine T solution of suitable concentration can be used as a labeling technique for anti-counterfeiting in tobacco seeds.

Słowa kluczowe

Wydawca

-

Rocznik

Tom

33

Numer

4

Opis fizyczny

p.1271-1276,fig.,ref.

Twórcy

autor
  • Seed Science Center, College of Agriculture and Biotechnology, Zhejiang University, Hangzhou, 310058, China
autor
  • Seed Science Center, College of Agriculture and Biotechnology, Zhejiang University, Hangzhou, 310058, China
autor
  • China Tobacco Breeding Research Southern Center, Yunnan Tobacco Science Research Institute, Yuxi, 653100, China
autor
  • China Tobacco Breeding Research Southern Center, Yunnan Tobacco Science Research Institute, Yuxi, 653100, China
autor
  • China Tobacco Breeding Research Southern Center, Yunnan Tobacco Science Research Institute, Yuxi, 653100, China

Bibliografia

  • Cai YL (2009) Several new anti-counterfeiting technologies for packaging. Shanghai Packaging 2:40–41
  • Cao DD, Hu J, Gao CH, Guan YJ, Zhang S, Xiao JF (2008) Chilling tolerance of maize (Zea mays L.) can be improved by seed soaking in putrescine. Seed Sci Technol 36:191–197
  • Guo XQ, Li F, Zhao YB (1998) Fluorescence investigation of the interaction of safranine T with DNA. Anal Lett 31:991–1005
  • Hu J, Zhu ZY, Song WJ, Wang JC, Hu WM (2005) Effects of sand priming on germination and field performance in direct-sown rice (Oryza sativa L.). Seed Sci Technol 33:243–248
  • Kanchanapoom K, Boss WF (1986) The effect of fluorescent labeling on calcium-induced fusion of fusogenic carrot protoplasts. Plant Cell Rep 5:252–255
  • Moore AL, Bonner WD (1982) Measurements of membrane potentials in plant mitochondria with the safranine method. Plant Physiol 70:1271–1276
  • Morell MK, Peakall R, Appels R, Preston LR, Lloyd HL (1995) DNA profiling techniques for plant variety identification. Aust J Exp Agric 35:807–826
  • Ozcan S, Jackson DS (2003) A response surface analysis of commercial corn starch annealing. Cereal Chem 80:241–243
  • Shao CX, Hu J, Song WJ, Hu WM (2005) Effects of seed priming with chitosan solutions of different acidity on seed germination and physiological characteristics of maize seedling. J Zhejiang Univ (Agric Life Sci) 31:705–708
  • Shi YX, Hareland GA, Appolonia BLD (2001) The use of fluorescent dye to study the movement of water into wheat kernels. J Zhengzhou Institute of Technol 22:17–20
  • Tian L, Cao MQ, Wang H, Guo JX, Zhou NY, Sun J, Jia XH (2000) AFLP molecular marker technology and its application on the identification of authenticity and purity of maize seed. Seed World 11:35–36
  • Wang ZH (2009) Anti-counterfeiting technologies grow by leaps and bounds in the market. Print Today 2:76–79
  • Yang WQ, Hu J, Wu B, Zhang S, Song WJ (2007) Combining response surface analysis and principal component analysis to optimize the combination of GA₃ concentration coating and storage time of coated seed in cucumber. J Biomath 22:323–328
  • Zhang S, Hu J, Gao CH (2005) Response surface analysis for principal component of multiple variables—a method to select the optimal conditions for seed treatments. Seed Sci Technol 33:699–703
  • Zhang CF, Hu J, Lou J, Zhang Y, Hu WM (2007a) Sand priming in relation to physiological changes in seed germination and seedling growth of waxy maize under high-salt stress. Seed Sci Technol 35:733–738
  • Zhang YM, Sun WY, Xu M (2007b) The application of anticounterfeiting packaging to seed industry. China Seed Ind 11:16–17
  • Zhou Y, Chen DY (2005) SSR molecular marker technology and its application on the identification of maize seed. China Seed Ind 6:51–52

Uwagi

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Typ dokumentu

Bibliografia

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