Have a personal or library account? Click to login
Nuclear Genome Size Determination Of Christia Vespertilionis Via Flow Cytometry Cover

Nuclear Genome Size Determination Of Christia Vespertilionis Via Flow Cytometry

Open Access
|Aug 2020

References

  1. [1] J. Nguyen-Pouplin, H. Tran, H. Tran, T.A. Phan, C. Dolecek, J. Farrar, T.H. Tran, P. Caron, B. Bodo, P. Grellier, “Antimalarial and cytotoxic activities of ethnopharmacologically selected medicinal plants from South Vietnam”, Journal of Ethnopharmacology, Vol. 109, No. 3, Pp. 417-427, 2007.10.1016/j.jep.2006.08.011
  2. [2] S. Ganesan, S.F. Sabran, M.H. Mazlun, “Plant Diversity Assessment and Traditional Knowledge Documentation of Home Gardens in Parit Raja, Batu Pahat, Johor”, In IOP Conference Series: Earth and Environmental Science, Vol. 269, No. 1, 012018, 2019. IOP Publishing.10.1088/1755-1315/269/1/012018
  3. [3] H.C. Upadhyay, B.S. Sisodia, H.S. Cheema, J. Agrawal, A. Pal, M.P. Darokar, S.K. Srivastava, “Novel Antiplasmodial Agents from Christia vespertilionis”, Natural Product Communications, 2013. https://doi.org/10.1177/1934578X130080112310.1177/1934578X1300801123
  4. [4] S.N. Bunawan, B. Hamidun, S.N. Baharum, “The red butterfly wing (Christia vespertilionis): A promising cancer cure in Malaysia”, International Journal of Pharmacy and Pharmaceutical Sciences, Vol. 7, No. 8, Pp. 5, 2015.
  5. [5] D. Hofer, G. Schwach, N. Ghaffari Tabrizi-Wizsy, A. Sadjak, S. Sturm, H. Stuppner, R. Pfragner, “Christia vespertilionis plant extracts as novel antiproliferative agent against human neuroendocrine tumor cells”, Oncology reports, Vol. 29, No. 6, Pp. 2219-2226, 2013.10.3892/or.2013.2367
  6. [6] H. Mat Jusoh, N. Haron, “The total phenolic contents and antioxidant scavenging capacity in free and bound extracts of Christia Vespertilionisis (Daun Rerama)”, International Journal of Allied Health Sciences, Vol. 3, No. 2, Pp. 649-657, 2019.
  7. [7] J. Doležel, J.A.N. Bartoš, “Plant DNA flow cytometry and estimation of nuclear genome size”, Annals of botany, Vol. 95, No. 1, Pp. 99-110, 2005.10.1093/aob/mci005
  8. [8] J. Doležel, J. Bartos, H. Voglmayr, J. Greilhuber, “Nuclear DNA content and genome size of trout and human. Cytometry”, Part A: the journal of the International Society for Analytical Cytology, Vol. 51, No. 2, Pp. 127-8, 2003.
  9. [9] R. DeSalle, T.R. Gregory, J.S. Johnston, “Preparation of Samples for Comparative Studies of Arthropod Chromosomes: Visualization, In Situ Hybridization, and Genome Size Estimation”, Methods in Enzymology, Vol. 395, Pp. 460–488, 2005.10.1016/S0076-6879(05)95025-8
  10. [10] M.D. Bennett, I.J. Leitch. “Nuclear DNA amounts in angiosperms: Targets, trends and tomorrow”, Annals of Botany, Vol. 107, No. 3, Pp. 467-590, 2011.10.1093/aob/mcq258304393321257716
  11. [11] D.W. Galbraith, G.M. Lambert, “High throughput monitoring of plant nuclear DNA contents via flow cytometry”, Methods in Molecular Biology, Vol. 918, Pp. 311-325, 2012.10.1007/978-1-61779-995-2_1622893296
  12. [12] J. Vrána, P. Cápal, M. Bednářová, J. Doležel, “Flow cytometry in plant research: A success story”, In: Nick P, Opatrny Z (eds) Applied Plant Cell Biology, Plant Cell Monograph 22. Springer, Berlin Heidelberg New York, Pp. 395–429, 2014.10.1007/978-3-642-41787-0_13
  13. [13] G.M.A. Carvalho, C.R. Carvalho, F.A.F. Soares, “Flow cytometry and cytogenetic tools in eucalypts: genome size variation × karyotype stability”, Tree Genetics and Genomes, Vol. 13, Pp. 1-11, 2017.10.1007/s11295-017-1186-0
  14. [14] H.F. Sakhanokho, N. Islam-Faridi, “Nuclear DNA content, base composition and cytogenetic characterization of Christia obcordate”, Journal of the American Society for Horticultural Science, Vol. 138, No. 3, Pp. 205-209, 2013.10.21273/JASHS.138.3.205
  15. [15] I. Jedrzejczyk, E. Sliwinska, “Leaves and seeds as materials for flow cytometric estimation of the genome size of 11 rosaceae woody species containing DNA-Staining inhibitors”, Journal of Botany, Pp. 1–9, 2010.10.1155/2010/930895
  16. [16] M.R. Midin, R. Samsul Kamal, A.H. Tarmizi, R. Nulit, M. Madon, “Analysis of oil palm clones, their suspension calli and regenerants via flow cytometry (FCM) and rDNA-fluorescence in situ hybridisation (rDNA-FISH)”, Journal of Oil Palm Research, Vol. 25, No. 3, Pp. 357-367, 2013.
  17. [17] M.R. Midin, M.S. Nordin, M. Madon, M.N. Saleh, H.H. Goh, M.N. Normah, “Determination of the chromosome number and genome size of Garcinia mangostana L. via cytogenetics, flow cytometry and k-mer analyses”, Caryologia, Vol. 71, Pp. 35-44, 2018.10.1080/00087114.2017.1403762
  18. [18] J. Doležel, P. Binarova, S. Lucretti, “Analysis of nuclear DNA content in plant cells by flow cytometry”, Biologia Plantarum, Vol. 31, Pp. 113-120, 1989.10.1007/BF02907241
  19. [19] F. Otto, “Preparation and staining cells for high resolution DNA analysis”, In: Radbruch A ed. Flow cytometry and cell sorting. Springer, Berlin Verlag, 101104, 1992.10.1007/978-3-662-02785-1_8
  20. [20] J. Doležel, W. Göhde, “Sex determination in dioecious plants Melandrium album and M. rubrum using high-resolution flow cytometry”, Cytometry, Vol. 19, No. 2, Pp. 103-106, 1995.10.1002/cyto.9901902037743889
  21. [21] J. Doležel, J. Greilhuber, J. Suda, “Estimation of nuclear DNA content in plants using flow cytometry”, Nature Protocols, Vol. 2, No. 9, Pp. 2233-2244, 2007.10.1038/nprot.2007.310
  22. [22] J. Doležel, S. Sgorbati, S. Lucretti, “Comparison of three DNA fluorochromes for flow cytometric estimation of nuclear DNA content in plant”, Physiologia Plantarum, Vol. 85, Pp. 625-631, 1992.10.1111/j.1399-3054.1992.tb04764.x
  23. [23] M. Madon, L.Q. Phoon, M.M. Clyde, D.A. Mohd, “Application of flow cytometry for estimation of nuclear DNA content in Elaies”, Journal of Oil Palm Research, Vol. 20, Pp. 447-452, 2008.
  24. [24] B. Hendrix, J.M. Stewart, “Estimation of the nuclear DNA content of Gossypium species”, Annals of Botany, Vol. 95, Pp. 789-797, 2005.10.1093/aob/mci078424672715701660
  25. [25] M.D. Bennett, I.J. Leitch, “Plant Genome Size Research: A Field In Focus”, Annals of Botany, Vol. 95, Pp. 1-6, 2005.10.1093/aob/mci001424670615596455
  26. [26] P. Šmarda, P. Bureš, “Understanding intraspecific variation in genome size in plants”, Preslia, Vol. 82, No. 1, Pp. 41-61, 2010.
  27. [27] B.G. Murray, “When does Intraspecific C-value Variation become Taxonomically Significant”, Annals of Botany, Vol. 95, No. 1, Pp. 119–125, 2005.10.1093/aob/mci007424671215596461
Language: English
Page range: 72 - 75
Published on: Aug 3, 2020
Published by: Sciendo
In partnership with: Paradigm Publishing Services
Publication frequency: 2 issues per year

© 2020 Mohd Razik Midin, Muhammad Irfan Fikri, Siti Sarah Zailani, published by Sciendo
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.