Biology Reference
In-Depth Information
31. Omidvar V, Abdullah SNA, Izadfard A, Ho CL, Mahmood M. The oil palm metal-
lothionein promoter contains a novel AGTTAGG motif conferring its fruit-specific
expression and is inducible by abiotic factors. Planta . 2010; 232 :925-936.
32. Rohde W, Salamani F, Ashburner R, Randles JW. An EcoRI repetitive sequence family of
the coconut palm ( Cocos nucifera L.) shows sequence homology to copia-like elements.
J. Genet. Breed . 1992; 46 :391-394.
33. Lee M, Yeun L, Abdullah R. Expression of Bacillus thuringiensis insecticidal protein
gene in transgenic oil palm. Electron. J. Biotechnol . 2006; 9 :117-126.
34. Lohithaswa HC, Feltus FA, Singh HP, Bacon CD, Bailey CD, Paterson AH. Leveraging
the rice genome sequence for monocot comparative and translational genomics. Theor.
Appl. Genet . 2007; 115 :237-243.
35. Ting NC, Noorhariza MZ, Rozana R, Low ET, Ithnin M, Cheah SC, et al. SSR mining
in oil palm EST database: application in oil palm germplasm diversity studies. J. Genet .
2010; 89 :135-145.
36. Billotte N, Marseillac N, Brottier P, Noyer JL, Jacquemoud-Collet JP, Moreau C, et al.
Nuclear microsatellite markers for the date palm ( Phoenix dactylifera L.): characteriza-
tion and utility across the genus Phoenix and in other palm genera. Mol. Ecol. Notes .
2004; 4 :256-258.
37. Rao NM, Ramesha BT, Ravikanth G, Ganeshaiah KN, Umashankar R. Cross-species
amplification of coconut microsatellite markers in Rattans. Silvae Genet . 2007:282-286.
38. Martenez AK, Gaitin-Solis E, Duque MC, Bernal R, Thome J. Microsatellite loci in
Bactris gasipaes (Arecaceae): their isolation and characterization. Mol. Ecol. Notes .
2002; 2 :408-410.
39. Akkak A, Scariot V, Marinoni T, Boccacci P, Beltramo C, Botta R. Development and
evaluation of microsatellite markers in Phoenix dactylifera L. and their transferability to
other Phoenix species. Biol. Plant . 2009; 53 :164-166.
40. Ruiz M, Rouard M, Raboin LM, Lartaud M, Lagoda P, Courtois B. TropGENE-DB, a
multi-tropical crop information system. Nucleic Acids Res . 2004; 32 :D364-D367.
41. Rajagopal V, Manimekalai R, Devakumar K, Rajesh MK, Karun A, Niral V, et al. A data-
base for coconut crop improvement. Bioinformation . 2005; 1 :75-77.
42. Riju A, Chandrasekhar A, Arunachalam V. Mining for single nucleotide polymorphisms
and insertions/deletions in expressed sequence tag libraries of oil palm. Bioinformation .
2007; 2 :128-131.
43. Beck H, Jones P, Watson D, Zazueta F. An expert database system for ornamental plants.
Agric. Syst . 1989; 31 :111-126.
44. Billotte N, Marseillac N, Risterucci AM, Adon B, Brottier P, Baurens FC, et al.
Microsatellite-based high density linkage map in oil palm ( Elaeis guineensis Jacq.).
Theor. Appl. Genet . 2005; 110 :754-765.
45. Riedel M, Riederer M, Becker D, Herran A, Kullaya A, Arana-López G, et al. Cuticular
wax composition in Cocos nucifera L.: physicochemical analysis of wax components and
mapping of their QTLs onto the coconut molecular linkage map. Tree Genet. Genomes .
2009; 5 :53-69.
46. Zhang L, Wu G, Wu Y, Cao Y, Xiao L, Lu C. The gene MT3-B can differentiate palm oil
from other oil samples. J. Agric. Food Chem . 2009; 57 :7227-7232.
47. Morton BR, Brandon T, Gaut S, Clegg MT. Evolution of alcohol dehydrogenase genes in
the palm and grass families. Proc. Natl. Acad. Sci. U.S.A . 1996; 93 :11735-11739.
48. Dransfield J, Uhl NW, Asmussen NCB, Baker WJ, Harley MM, Lewis CE. Genera pal-
marum: the evolution and classification of palms. Kew, UK: Royal Botanic Gardens;
2008.
Search WWH ::




Custom Search