Bull, S. E.; Plant Biotechnology, Department of Biology, ETH Zürich, Zürich, Switzerland
Alder, A.; Plant Biotechnology, Department of Biology, ETH Zürich, Zürich, Switzerland
Barsan, Cristina Ioana ; Université de Liège - ULiège > Département des sciences de la vie > Physiologie végétale
Kohler, M.; Plant Biotechnology, Department of Biology, ETH Zürich, Zürich, Switzerland
Hennig, L.; Department of Plant Biology and Linnean Centre for Plant Biology, The Swedish University of Agricultural Sciences, PO Box 7080, Uppsala, Sweden
Gruissem, W.; Plant Biotechnology, Department of Biology, ETH Zürich, Zürich, Switzerland
Vanderschuren, Hervé ; Université de Liège - ULiège > Agronomie, Bio-ingénierie et Chimie (AgroBioChem) > Ingénierie des productions végétales et valorisation
Language :
English
Title :
FLOWERING LOCUS T triggers early and fertile flowering in glasshouse cassava (Manihot esculenta crantz)
Van Nocker, S.; Gardiner, S.E. Breeding better cultivars, faster: Applications of new technologies for the rapid deployment of superior horticultural tree crops. Hortic. Res. 2014, 1, 14022. [CrossRef] [PubMed]
Jinek, M.; Chylinski, K.; Fonfara, I.; Hauer, M.; Doudna, J.A.; Charpentier, E. A programmable dual-RNA-guided DNA endonuclease in adaptive bacterial immunity. Science 2012, 337, 816-821. [CrossRef] [PubMed]
Altpeter, F.; Springer, N.M.; Bartley, L.E.; Blechl, A.E.; Brutnell, T.P.; Citovsky, V.; Conrad, L.J.; Gelvin, S.B.; Jackson, D.P.; Kausch, A.P et al. Advancing crop transformation in the era of genome editing. Plant Cell 2016, 28, 1510-1520. [CrossRef] [PubMed]
Schaeffer, S.M.; Nakata, P.A. CRISPR/Cas9-mediated genome editing and gene replacement in plants: Transitioning from lab to field. Plant Sci. 2015, 240, 130-142. [CrossRef] [PubMed]
De Oliveira, E.J.; Vilela de Resende, M.D.; da Silva Santos, V.; Fortes Ferreira, C.; Alvarenga Fachardo Oliveira, G.; Suzarte da Silva, M.; Alves de Oliveira, L.; Aguilar-Vildoso, C.I. Genome-wide selection in cassava. Euphytica 2012, 187, 263-276. [CrossRef]
FAO. Save and Grow: Cassava. A Guide to Sustainable Production Intensification; FAO: Rome, Italy, 2013; pp. 1-142.
Balat, M.; Balat, H. Recent trends in global production and utilization of bio-ethanol fuel. Appl. Energy 2009, 86, 2273-2282. [CrossRef]
Byrne, D. Breeding cassava. Plant Breed. Rev. 1984, 2, 73-133.
Tang, A.F.; Cappadocia, M.; Byrne, D. In vitro flowering in cassava (Manihot esculenta Cranz). Plant Cell Tissue Organ Cult. 1983, 2, 199-206. [CrossRef]
Halsey, M.E.; Olsen, K.M.; Taylor, N.J.; Chavarriaga-Aguirre, P. Reproductive biology of cassava (Manihot esculenta Crantz) and isolation of experimental field trials. Crop Sci. 2008, 48, 49-58. [CrossRef]
Perera, P.I.; Quintero, M.; Dedicova, B.; Kularatne, J.D.; Ceballos, H. Comparative morphology, biology and histology of reproductive development in three lines of Manihot esculenta Crantz (Euphorbiaceae: Crotonoideae). AoB Plant. 2013, 5, pls046. [CrossRef] [PubMed]
Rudi, N.; Norton, G.W.; Alwang, J.; Asumugha, G. Economic impact analysis of marker-assisted breeding for resistance to pests and post-harvest deterioration in cassava. Afr. J. Agric. Resour. Econ. 2010, 4, 110-122.
Chavarriaga-Aguirre, P.; Brand, A.; Medina, A.; Prías, M.; Escobar, R.; Martinez, J.; Díaz, P.; López, C.; Roca, W.M.; Tohme, J. The potential of using biotechnology to improve cassava: A review. In Vitro Cell. Dev. Biol. Plant 2016, 52, 461-478. [CrossRef] [PubMed]
Corbesier, L.; Vincent, C.; Jang, S.; Fornara, F.; Fan, Q.; Searle, I.; Giakountis, A.; Farrona, S.; Gissot, L.; Turnbull, C et al. FT protein movement contributes to long-distance signaling in floral induction of Arabidopsis. Science 2007, 316, 1030-1033. [CrossRef] [PubMed]
Nakamura, Y.; Andrés, F.; Kanehara, K.; Liu, Y.C.; Dörmann, P.; Coupland, G. Arabidopsis florigen FT binds to diurnally oscillating phospholipids that accelerate flowering. Nat. Commun. 2014, 5, 3553. [CrossRef] [PubMed]
Abe, M.; Kobayashi, Y.; Yamamoto, S.; Daimon, Y.; Yamaguchi, A.; Ikeda, Y.; Ichinoki, H.; Notaguchi, M.; Goto, K.; Araki, T. FD, a bZIP protein mediating signals from the floral pathway integrator FT at the shoot apex. Science 2005, 309, 1052-1056. [CrossRef] [PubMed]
Wigge, P.A.; Kim, M.C.; Jaeger, K.E.; Busch, W.; Schmid, M.; Lohmann, J.U.; Weigel, D. Integration of spatial and temporal information during floral induction in Arabidopsis. Science 2005, 309, 1056-1059. [CrossRef] [PubMed]
Andrés, F.; Coupland, G. The genetic basis of flowering responses to seasonal cues. Nat. Rev. Genet. 2012, 13, 627-639. [CrossRef] [PubMed]
Klocko, A.L.; Ma, C.; Robertson, S.; Esfandiari, E.; Nilsson, O.; Strauss, S.H. FT overexpression induces precocious flowering and normal reproductive development in Eucalyptus. Plant Biotechnol. J. 2016, 14, 808-819. [CrossRef] [PubMed]
McGarry, R.C.; Prewitt, S.; Ayre, B.G. Overexpression of FT in cotton affects architecture but not floral organogenesis. Plant Signal. Behav. 2013, 8, e23602. [CrossRef] [PubMed]
Graham, T.; Scorza, R.; Wheeler, R.; Smith, B.; Dardick, C.; Dixit, A.; Raines, D.; Callahan, A.; Srinivasan, C.; Spencer, L et al. Over-expression of FT1 in plum (Prunus domestica) results in phenotypes compatible with spaceflight: A potential new candidate crop for bioregenerative life support systems. Gravit. Space Res. 2015, 3, 39-50.
Böhlenius, H.; Huang, T.; Charbonnel-Campaa, L.; Brunner, A.M.; Jansson, S.; Strauss, S.H.; Nilsson, O. CO/FT regulatory module controls timing of flowering and seasonal growth cessation in trees. Science 2006, 312, 1040-1043. [CrossRef] [PubMed]
Matsuda, N.; Ikeda, K.; Kurosaka, M.; Takashina, T.; Isuzugawa, K.; Endo, T.; Omura, M. Early flowering phenotype in transgenic pears (Pyrus communis L.) expressing the CiFT gene. J. Jpn. Soc. Hortic. Sci. 2009, 78, 410-416. [CrossRef]
Tränkner, C.; Lehmann, S.; Hoenicka, H.; Hanke, M.V.; Fladung, M.; Lenhardt, D.; Dunemann, F.; Gau, A.; Schlangen, K.; Malnoy, M et al. Over-expression of an FT-homologous gene of apple induces early flowering in annual and perennial plants. Planta 2010, 232, 1309-1324. [CrossRef] [PubMed]
Khatodia, S.; Bhatotia, K.; Passricha, N.; Khurana, S.M.P.; Tuteja, N. The CRISPR/Cas genome-editing tool: Application in improvement of crops. Front. Plant Sci. 2016, 7, 506. [CrossRef] [PubMed]
McGarry, R.C.; Klocko, A.L.; Pang, M.; Strauss, S.H.; Ayre, B.G. Virus-induced flowering: An application of reproductive biology to benefit plant research and breeding. Plant Physiol. 2017, 173, 47-55. [CrossRef] [PubMed]
Ceballos, H.; Jaramillo, J.J.; Salazar, S.; Pineda, L.M.; Calle, F.; Setter, T. Induction of flowering in cassava through grafting. J. Plant Breed. Crop Sci. 2017, 9, 19-29.
Blümel, M.; Dally, N.; Jung, C. Flowering time regulation in crops—What did we learn from Arabidopsis? Curr. Opin. Biotechnol. 2015, 32, 121-129. [CrossRef] [PubMed]
Ceballos, H.; Kawuki, R.; Gracen, V.; Yencho, G.C.; Hershey, C. Conventional breeding, marker-assisted selection, genomic selection and inbreeding in clonally propagated crops: A case study for cassava. Theor. Appl. Genet. 2015, 128, 1647-1667. [CrossRef] [PubMed]
Wolfe, M.D.; Pino del Carpio, D.; Alabi, O.; Egesi, C.; Ezenwaka, L.C.; Ikeogu, U.N.; Kawuki, R.S.; Kayondo, I.S.; Kulakow, P.; Lozano, R et al. Prospects for genomic selection in cassava breeding. BioRxiv 2017. [CrossRef]
Rey, M.E.C.; Vanderschuren, H. Cassava mosaic and brown streak diseases: Current perspectives and beyond. Ann. Rev. Virol. 2017, 4, in press.
Østerberg, J.T.; Xiang, W.; Olsen, L.I.; Edenbrandt, A.K.; Vedel, S.E.; Christiansen, A.; Landes, X.; Andersen, M.M.; Pagh, P.; SandØe, P et al. Accelerating the domestication of new crops: Feasibility and approaches. Trends Plant Sci. 2017, 22, 373-384. [CrossRef] [PubMed]
Curtis, M.; Grossniklaus, U. A Gateway™ cloning vector set for high-throughput functional analysis of genes in plants. Plant Physiol. 2003, 133, 462-469. [CrossRef] [PubMed]
Bull, S.E.; Owiti, J.A.; Niklaus, M.; Beeching, J.R.; Gruissem, W.; Vanderschuren, H. Agrobacterium-mediated transformation of friable embryogenic calli and regeneration of transgenic cassava. Nat. Protoc. 2009, 4, 1845-1854. [CrossRef] [PubMed]
Gresshoff, P.; Doy, C. Derivation of a haploid cell line from Vitis vinifera and the importance of the stage of meiotic development of the anthers for haploid culture of this and other genera. Z. Pflanzenphysiol. 1974, 73, 132-141. [CrossRef]
Murashige, T.; Skoog, F. A revised medium for rapid growth and bioassays with tobacco tissue cultures. Physiol. Plant. 1962, 15, 473-497. [CrossRef]
Soni, R.; Murray, J.A.H. Isolation of intact DNA and RNA from plant tissues. Anal. Biochem. 1994, 218, 474-476. [CrossRef] [PubMed]
Southern, E.M. Detection of specific sequences among DNA fragments separated by gel electrophoresis. J. Mol. Biol. 1975, 98, 503-517. [CrossRef]
Wojtusik, T.; Felker, P. Interspecific graft incompatibility in Prosopis. For. Ecol. Manag. 1993, 59, 329-340. [CrossRef]
Moreno, I.; Gruissem, W.; Vanderschuren, H. Reference genes for reliable potyvirus quantitation in cassava and analysis of Cassava brown streak virus load in host varieties. J. Virol. Methods 2011, 177, 49-54. [CrossRef] [PubMed]