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分子植物育种
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网络版
), 2012
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10
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Fenzi Zhiwu Yuzhong (Online), 2012, Vol.10, 1218
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http://mpb.5th.sophiapublisher.com
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Armas, R., Somonte, D., Rodriguez, J., Gomez, M., and
Pimentel E., 1998, Transgenic sweetpotato plants carrying
the delta-endotoxin gene from Bacillus thuringiensisn var.
tenebrionis, Plant Science, 139(2): 175-184 http://dx.doi.org/
10.1016/S0168-9452(98)00179-4
Murata T., Okada Y., Saito A., Kimura T., Mori M., Nishiguchi
M., Hanada K., Saika J., and Fukuoka H., 1998,
Transformation by direct gene transfer in sweetpotato
(
Ipomoea batatas
(L.) Lam.), In: Proceedings of
International Workshop on Sweetpotato Production
System toward the 21
st
Century held 9-10 Dec., 1997 at
Miyakonojo, Miyazaki, Japan, pp.159-180
Newell C.A., Lowe J.M., Merryweather A., Rooke L.M., and
Hamilton W.D.O., 1995, Transformation of sweet potato
(
Ipomoea batatas
(L.) Lam) with
Agrobacterium
tumefaciens
and regeneration of plants expressing cowpea
trypsin inhibitor and snowdrop lectin, Plant Science,
107(2): 215-227 http://dx.doi.org/10.1016/0168-9452(95)
04109-8
Okada Y., Saito A., Nishiguchi M., Kimura T., Mori M.,
Hanada K., Sakai J., Miyazaki C., Matsuda Y., and Murata
T., 2001, Virus resistance in transgenic sweetpotato
(Ipomoea batatas L. (Lam)) expressing the coat protein
gene of sweet potato feathery mottle virus, Theor. Appl.
Genet., 103(5): 743- 751 http://dx.doi.org/10.1007/s00-
1220100654
Otani M., and Shimada T., 2001, Transgenic sweet potato
(
Ipomoea batatas
(L.) Lam.), In: Bajaj Y.P.S.(ed.),
Biotechnology in agriculture and forestry 47, transgenic
crops II, Springer-Verlag Berlin Heidelberg, New Delhi,
India, pp.183-204
Otani M., Wakita Y., and Shimada T., 2001, Genetic
transformation of sweet potato (Ipomoea batatas (L.) Lam.)
by Agrobacterium tumefaciens, Acta Hort., 560: 193-196
Otani M., Wakita Y., and Shimada T., 2003, Production of
herbicide-resistant sweet potato (
Ipomoea batatas
(L.)
Lam.) plants by
Agrobacterium tumefaciens-
mediated
transformation, Breeding Science, 53:145-148 http://dx.doi.org/
10.1270/jsbbs.53.145
Park S.C., Kim Y.H., Jeong J.C., Kim C.Y., Lee H.S., Bang
J.W., and Kwak S.S., 2011, Sweetpotato late
embryogenesis abundant 14 (IbLEA14) gene influences
lignification and increases osmotic- and salt stress-tolerance
of transgenic calli, Planta, 233: 621-634 http://dx.doi.org/
10.1007/s00425-010-1326-3 PMid:21136074
Sharma K. K., Bhojwani S.S., and Thorpe T.A., 1990, Factors
affecting high frequency differentiantion of shoots and
roots from cotyledon explants of
Brassica Juncea
(L.)
Czern, Plant Science, 66(2): 247-253 http://dx.doi.org/
10.1016/0168-9452(90)90210-F
Shimada T., Otani M., Hamada T., and Kim S.H., 2006,
Increase of amylose content of sweetpotato starch by RNA
interference of the starch branching enzyme II gene
(IbSBEII), Plant Biotechnology, 23: 85-90 http://dx.doi.org/
10.5511/plantbiotechnology.23.85
Shimoda N., Toyoda Y.A., Nagamine J., Usami S., Katayama
M., Sakagami Y., and Machida Y., 1990, Control of
expression of Agrobacterium vir genes by synergistic
actions of phenolic signal molecules and monosaccharides,
Proc. Natl.Acad. Sci., USA, 87(17): 6684-6688 http://dx.doi.org/
10.1073/pnas.87.17.6684
Song G.Q., Honda H., and Yamaguchi K., 2004, Efficient
Agrobacterium tumefacients-mediated transformation of
sweetpotato (
Ipomoea batatas
(L.) Lam.) from stem
explants using a two-step kanamycin-hygromycin
selection method, In Vitro Cellular & Developmental
Biology, Plant, 40(4): 359-365 http://dx.doi.org/10.1079/
IVP2004539
Stachel S.E., Messens E., Montagu M.V., and Zambryski P.,
1985, Indentification of the signal molecules produced by
wounded plant cells that active T-DNA transfer in
Agrobacterium tumefaciens
, Nature, 318: 624-629
http://dx.doi.org/10.1038/318624a0
Veluthambi K., Krishnan M., Gould J.H., Smith R.H., and
Gelvin S.B., 1989, Opines stimulate induction of the vir
genes of the
Agrobacterium tumefaciens
Ti plasmid,
Journal of Bacteriology, 171(7): 3696-3703 PMid:2738020
PMCid:210113
Wakita Y., Otani M., Hamada T., Mori M., Iba K., and Shimada
T., 2001, A tobacco microsomal ω-3 fatty acid desaturase
gene increases the linolenic acid content in transgenic
sweetpotato (Ipomoea batatas), Plant Cell Reports, 20(3):
244-249 http://dx.doi.org/10.1007/s002990100316
Wang X., Zhou Z., Li Q., Gu X.H., and Ma D.F., 2006,
Optimization of genetic transformation using SAAT in
sweetpotato, Jiangsu Nongye Xuebao (Jiangsu Journal of
Agricultural Sciences), 22 (1): 14-18 (
王欣
,
周忠
,
李强
,
顾向华
,
马代夫
, 2006,
甘薯
SAAT
法遗传转化条件的优
,
江苏农业学报
, 22 (1): 14-18)
Winfield S., Lawton R., Daniell H., and Dhir S.K., 2001,
Transformation of sweetpotato tissues with green-fluorescent
protein gene, In Vitro Cellular and Developmental Biology
Plant, 37(5): 648-653 http://dx.doi.org/10.1007/s11627-
001-0113-z
Wu X.B., Cheng Y.J., Deng X.P., and Kwak S.S., 2010, Effect
of foliar spraying of H2O2 and Cu/Zn SOD and APX gene