张安等
:
三浅裂野牵牛
(
Ipomoea trifida
)(
2X
)
谷胱甘肽过氧化物酶
(
GPX
)
基因的克隆与生物信息学分析
1088
stresses: an overview, Arch. Biochem. Biophys., 444(2):
139-158
http://dx.doi.org/10.1016/j.abb.2005.10.018
PMid:16309626
Meira M., da Silva E.P., David J.M., and David J.P., 2012,
Review of the genus
Ipomoea
: traditional uses, chemistry
and biological activities, Rev. Bras. Farmacogn., 22(3):
682-713
http://dx.doi.org/10.1590/S0102-695X2012005000025
Miao Y.C., Lv D., Wang P.C., Wang X.C., Chen J., Miao C.,
and Song C.P., 2006, An Arabidopsis glutathione
peroxidase functions as both a redox transducer and a
scavenger in abscisic acid and drought stress responses,
Plant Cell, 18(10): 2749-2766
http://dx.doi.org/10.1105/tpc.106.044230
PMid:16998070 PMCid:1626619
Mittler R., Vanderauwera S., Gollery M., and Van Breusegem
F., 2004, Reactive oxygen gene network of plants, Trends
Plant Sci., 9(10): 490-498
http://dx.doi.org/10.1016/j.tplants.2004.08.009
PMid:15465684
Noctor G., Gomez L., Vanacker H., and Foyer C.H., 2002,
Interactions between biosynthesis, compartmentation and
transport in the control of glutathione homeostasis and
signalling, J. Exp. Bot., 53(372): 1283-1304
http://dx.doi.org/10.1093/jexbot/53.372.1283
PMid:11997376
Orjeda G., Freyre R., and Iwanaga M., 1991, Use of
Ipomoea
trifida
germ plasm for sweet potato improvement. 3.
development of 4x interspecific hybrids between
Ipomoea
batatas
(L.) Lam. (2n=6x=90) and
I. trifida
(H.B.K) G.
Don. (2n=2x=30) as storage-root initiators for wild species,
Theor. Appl. Genet., 83(2): 159-163
http://dx.doi.org/10.1007/BF00226245
Srisuwan S., Sihachakr D., and Siljak-Yakovlev S., 2006, The
origin and evolution of sweet potato (
Ipomoea batatas
Lam.) and its wild relatives through the cytogenetic
approaches, Plant Sci., 171(3): 424-433
http://dx.doi.org/10.1016/j.plantsci.2006.05.007
PMid:22980213
Sugimoto M., and Sakamoto W., 1997, Putative phospholipid
hydroperoxide glutathione peroxidase gene from
Arabidopsis
thaliana
induced by oxidative stress, Genes Genet. Syst.,
72(5): 311-316
http://dx.doi.org/10.1266/ggs.72.311
PMid:9511228
Tao X., Gu Y.H., Wang H.Y., Zheng W., Li X., Zhao C.W., and
Zhang Y.Z., 2012, Digital gene expression analysis based on
integrated de novo transcriptome assembly of sweet potato
[
Ipomoea batatas
(L.) Lam], PLoS One, 7(4): e36234
http://dx.doi.org/10.1371/journal.pone.0036234
PMid:22558397 PMCid:3338685
Wang Z.Y., Fang B.P., Chen J.Y., Zhang X.J., Luo Z.X., Huang
L.F., Chen X.L., and Li Y.J., 2010,
De novo
assembly and
characterization of root transcriptome using Illumina
paired-end sequencing and development of cSSR markers in
sweetpotato (
Ipomoea batatas
), BMC Genomics, 11: 726
http://dx.doi.org/10.1186/1471-2164-11-726
PMid:21182800 PMCid:3016421
Xie F., Burklew C.E., Yang Y., Liu M., Xiao P., Zhang B., and
Qiu D., 2012, De novo sequencing and a comprehensive
analysis of purple sweet potato (
Impomoea batatas
L.)
transcriptome, Planta, 236(1): 101-113
http://dx.doi.org/10.1007/s00425-012-1591-4
PMid:22270559
Zhou Y.J., Gao F., Liu R., Feng J.C., and Li H.J., 2012, De
novo sequencing and analysis of root transcriptome using
454 pyrosequencing to discover putative genes associated
with drought tolerance in
Ammopiptanthus mongolicus
,
BMC Genomics, 13: 266
http://dx.doi.org/10.1186/1471-2164-13-266
PMid:22721448 PMCid:3407029