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40植物学报50(1)2015 Montpellierhttp://www.wageningenur.nlen/show/2010-mee-citratelyaseenhancesrubberbiosynthesisinTaraxacum ting-The-future-of-natural-rubber. htm. pp. 2 brevicomiculatum. Biosynthesis, Function and Biotech- Schmidt T, Hillebrand A, Wurbs D, Wahler D, Lenders M, nology of Isoprenoids in Terrestrial and Marine Organisms GronoverCs,PruferD(2010a).MolecularcloningandKolymvari,Crete.http://www.abstract.xlibx.com/aother characterization of rubber biosynthetic genes from Tarax 68826-36-2-terpnet-2013-terpnet-2013-11th-international-m acum koksaghyz Plant Mol Biol Rep 28, 277-284 eeting-biosynt. php. pp 200 Schmidt T, Lenders M, Hillebrand A, van Deenen N, Munt Van der Meer L, Cordewener J, van Arkel J, Hesselink T, o. Reichelt R. Eisenreich W. Fischer r. Prufer d, gr- Koops A, America T(2012). Identification of key elements onover cs(2010b). Characterization of rubber particles in the proteome of Russian dandelion (Taraxacum kok and rubber chain elongation in Taraxacum koksagh saghyz) involved in rubber synthesis. EU-PEARLS consor BMC Biochem 11.11 tium: BioRubber for Europe in Global Perspective. Wagen- Shi Z, chen YL, chen Ys, Lin YR, Liu sw, Ge xJ, Gao TG ingenhttp://www.wageningenur.nl/en/show/2012-congress- Zhu SX, Liu Y, Yang QE, Humphries CJ, von Raab- BioRubber-for-Europe-in-Global-Perspective. htm. pp 43. Straube E, Gilbert MG, Nordenstam B, Kilian N, Brouille, Van der Meer I, Helsper JPFG, America AHP, Cordewener rionova ID, Hind DJN, Jeffrey C, Bayer RJ, Kir- JHW. van Arkel J schner J, Greuter W, Anderberg AA, Semple JC AJ( 2010). Quantitative proteomics and flow cytometric Stepanek J, Freire SE, Martins L, Koyama H, Kawahara analysis of Taraxacum koksaghyz accessions. EU-PEARLS T, Vincent L, Sukhorukov AP, Mavrodiev Ev, Gottsch consortiumTheFutureofNaturalRubberMontpellierhttp:// lichG(2011).Asteraceae(compositae).In:WuZy,Ravenwww.wageningenur.nl/en/show/2010-meeting-the-future-of- PH, Hong DY, eds. Flora of China Volume 20-21(AS- natural-rubber. htm. pp. 9 teraceae). Beijing& St. Louis: Science Press & Missouri Van Dijk PJ, de Heer P, Kirschner J, Stepanek J, Baitulin Shintani D, Nural-Taban H, Collins J, Hathwaik U, Cornish omy and diversity of natural populations and ex-situ collec- K, McMahan C, Whalen M, xie Ws, Scott D, Lazo G tions of the Russian dandelion (Taraxacum koksaghyz Distefano M, Degraw A, Henry o(2010). Summary of U.s. Rod ) a potential rubber crop. 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Trends Biotech- Global-Perspective. htm. pp 44 no/25,522529 Van Dijk PJ, Tas ICQ, Falque M, Bakx-Schotman T (1999) Van Beilen JB, Poirier Y(2007b). Guayule and Russian dandelion as alternative sources of natural rubber. crit Rev (Taraxacum). Il. The breakdown of apomixis. Heredity 83 Biotechnol 27, 217-231 715-721. Van Deenen N, Bachmann AL, Schmidt T, schaller Volis s, Uteulin K, Mills D(2009).Russian dandelion Sand J, Prufer D, Gronover CS(2012). Molecular cloning example of mevalonate pathway genes from Taraxacum brevior- lecting in the past? J Appl Bot Food Qual 83, 60-63 niculatum and functional characterisation of the key en- Wahler D, Colby T, Kowalski NA, Harzen A, Wotzka SY zyme 3-hydroxy-3-methylglutaryl-coenzyme a reductase. Hillebrand A, Fischer R, Helsper J, Schmidt J, o/ Biol Rep39,4337-4349 Gronover CS, Prufer D(2012). Proteomic analysis of latex Van Deenen N, Frahm L, Poirier Y, Prufer D, Gronover cs from the rubber-producing plant Taraxacum brevicornicu- (2013). Laticifer-specific expression of an Arabidopsis ATP latum Proteomics 12. 901-905140 植物学报 50(1) 2015 Montpellier. http://www.wageningenur.nl/en/show/2010-Mee￾ting-The-future-of-natural-rubber.htm. pp. 21. Schmidt T, Hillebrand A, Wurbs D, Wahler D, Lenders M, Gronover CS, Prüfer D (2010a). Molecular cloning and characterization of rubber biosynthetic genes from Tarax￾acum koksaghyz. Plant Mol Biol Rep 28, 277–284. Schmidt T, Lenders M, Hillebrand A, van Deenen N, Munt O, Reichelt R, Eisenreich W, Fischer R, Prufer D, Gr￾onover CS (2010b). Characterization of rubber particles and rubber chain elongation in Taraxacum koksaghyz. BMC Biochem 11, 11. Shi Z, Chen YL, Chen YS, Lin YR, Liu SW, Ge XJ, Gao TG, Zhu SX, Liu Y, Yang QE, Humphries CJ, von Raab￾Straube E, Gilbert MG, Nordenstam B, Kilian N, Brouille, L, Illarionova ID, Hind DJN, Jeffrey C, Bayer RJ, Kir￾schner J, Greuter W, Anderberg AA, Semple JC, Štěpánek J, Freire SE, Martins L, Koyama H, Kawahara T, Vincent L, Sukhorukov AP, Mavrodiev EV, Gottsch￾lich G (2011). Asteraceae (Compositae). In: Wu ZY, Raven PH, Hong DY, eds. Flora of China Volume 20–21 (As￾teraceae). Beijing & St. Louis: Science Press & Missouri Botanical Garden Press. pp. 311. Shintani D, Nural-Taban H, Collins J, Hathwaik U, Cornish K, McMahan C, Whalen M, Xie WS, Scott D, Lazo G, Distefano M, Degraw A, Henry O (2010). Summary of U.S. efforts to identify rubber biosynthetic genes. EU-PEARLS consortium: The Future of Natural Rubber. Montpellier. http:// www.wageningenur.nl/en/show/2010-Meeting-The-future-of￾natural-rubber.htm. pp. 7. Suchat S, Pioch D, Palu S, Tardan E, van Loo EN, Da￾vrieux F (2013). Fast determination of the resin and rubber content in Parthenium argentatum biomass using near in￾frared spectroscopy. Ind Crop Prod 45, 44– 51. Van Beilen JB, Poirier Y (2007a). Establishment of new crops for the production of natural rubber. Trends Biotech￾nol 25, 522–529. Van Beilen JB, Poirier Y (2007b). Guayule and Russian dandelion as alternative sources of natural rubber. Crit Rev Biotechnol 27, 217–231. Van Deenen N, Bachmann AL, Schmidt T, Schaller H, Sand J, Prüfer D, Gronover CS (2012). Molecular cloning of mevalonate pathway genes from Taraxacum brevicor￾niculatum and functional characterisation of the key en￾zyme 3-hydroxy-3-methylglutaryl-coenzyme a reductase. Mol Biol Rep 39, 4337–4349. Van Deenen N, Frahm L, Poirier Y, Prüfer D, Gronover CS (2013). Laticifer-specific expression of an Arabidopsis ATP citrate lyase enhances rubber biosynthesis in Taraxacum brevicorniculatum. Biosynthesis, Function and Biotech￾nology of Isoprenoids in Terrestrial and Marine Organisms. Kolymvari, Crete. http://www.abstract.xlibx.com/aother/ 68826-36-2-terpnet-2013-terpnet-2013-11th-international-m eeting-biosynt.php. pp. 200. Van der Meer I, Cordewener J, van Arkel J, Hesselink T, Koops A, America T (2012). Identification of key elements in the proteome of Russian dandelion (Taraxacum kok￾saghyz) involved in rubber synthesis. EU-PEARLS consor￾tium: BioRubber for Europe in Global Perspective. Wagen￾ingen. http://www.wageningenur.nl/en/show/2012-Congress￾BioRubber-for-Europe-in-Global-Perspective.htm. pp. 43. Van der Meer I, Helsper JPFG, America AHP, Cordewener JHG, Bergervoet JHW, van Arkel J, Willemsz D, Koops AJ (2010). Quantitative proteomics and flow cytometric analysis of Taraxacum koksaghyz accessions. EU-PEARLS consortium: The Future of Natural Rubber. Montpellier. http:// www.wageningenur.nl/en/show/2010-Meeting-The-future-of￾natural-rubber.htm. pp. 9. Van Dijk PJ, de Heer P, Kirschner J, Štěpánek J, Baitulin IO, Černý T, Molenveld K, Gronover CS (2010). Taxon￾omy and diversity of natural populations and ex-situ collec￾tions of the Russian dandelion (Taraxacum koksaghyz Rod.), a potential rubber crop. EU-PEA-RLS consortium: The Future of Natural Rubber. Montpellier. http://www.wagen￾ingenur.nl/en/show/2010-Meeting-The-future-of-natural-rubber. htm. pp. 11–12. Van Dijk PJ, Lecoulant S (2012). The genomic organization of rubber biosynthesis genes in the Russian dandelion (Taraxacum koksaghyz) and the common dandelion (T. of￾ficinale). EU-PEARLS consortium: BioRub- ber for Europe in Global Perspective. Wageningen. http://www. wagening￾enur.nl/en/show/2012-Cong-ress-BioRubber-for-Europe-in￾Global-Perspective.htm. pp. 44. Van Dijk PJ, Tas ICQ, Falque M, Bakx-Schotman T (1999). Crosses between sexual and apomictic dandelions (Taraxacum). II. The breakdown of apomixis. Heredity 83, 715–721. Volis S, Uteulin K, Mills D (2009). Russian dandelion (Taraxacum koksaghyz): one more example of overcol￾lecting in the past? J Appl Bot Food Qual 83, 60–63. Wahler D, Colby T, Kowalski NA, Harzen A, Wotzka SY, Hillebrand A, Fischer R, Helsper J, Schmidt J, Gronover CS, Prüfer D (2012). Proteomic analysis of latex from the rubber-producing plant Taraxacum brevicornicu￾latum. Proteomics 12, 901–905
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