束红梅等
, 2011,
油菜素内酯代谢相关基因及其调控植物耐盐性的研究进展
,
分子植物育种
Vol.9 No.34 (doi: 10.5376/mpb.cn.2011.09.0034)
1265
inhibitors, Trends Plant Sci., 4: 348-359
Azpiroz R., Wu Y., LoCascio J.C., and Feldmann K.A., 1998,
An
Arabidopsis
brassinosteroid-dependent mutant is
blocked in cell elongation, The Plant Cell, 10: 219-230
Bajguz A., 2007, Metabolism of brassinosteroids in plants,
Plant Physiol. Biochem., 45: 95-107
Bajguz A., 2009, Brassinosteroid enhanced the level of abscisic
acid in Chlorella vulgaris subjected to short-term heat
stress, J. Plant Physiol., 166: 882-886
Bajguz A., and Hayat S., 2009, Effects of brassinosteroids on
the plant responses to environmental stresses, Plant
Physiol. Biochem., 47: 1-8
Bishop G.J., and Koncz C., 2002, Brassinosteroids and plant steroid
hormone signaling, The Plant Cell, Supplement, 97-110
Bishop G.J., and Yokota T., 2001, Plants steroid hormones,
brassinosteroids: current highlights of molecular aspects
on their synthesis/metabolism, transport, perception and
response, Plant Cell Physiol., 42: 114-120
Cao Y.Y., and Zhao H., 2007, Protective roles of brassinolide in
rice seedlings under heat stress, Zhongguo Shuidao Kexue
(Chinese J. Rice Sci.), 21(5): 525-529 (
曹云英
,
赵华
,
2007,
高温胁迫下油菜素内酯对水稻幼苗的保护作用
,
中国水稻科学
, 21(5): 525-529)
Chen L.P., and He D.Y., 2010, Research advance on drought
and salt resistant genes in transgenic plants, Jiyinzuxue Yu
Yingyongshengwuxue (Genomics and Applied Biology),
29(3): 542-549 (
陈丽萍
,
何道一
, 2010,
植物抗旱耐盐基
因的研究进展
,
基因组学与应用生物学
, 29(3): 542-549)
Choe S., 2010, Brassinosteroid biosynthesis and metabolism,
Plant Hormones, pp.156-178
Choe S., Dilkes B.P., Fujioka S., Takatsuto S., Sakurai A., and
Feldmann K.A., 1998, The
DWF4
gene of
Arabidopsis
encodes a cytochrome P450 that mediates multiple
22a-hydroxylation steps in brassinosteroid biosynthesis,
Plant Cell, 10: 231-243
Choi Y.H., Fujioka S., Nomura T., Harada A., Yokota T., Takatsuto
S., and Sakurai A., 1997, An alternative brassinolide
biosynthetic pathway via late C-6 oxidation, Phytochemistry,
44: 609-613
Chu Z.Q., Li L., Song L., and Xue H.W., 2006, Advances on
brassinosteroid biosynthesis and functions, Zhiwuxue
Tongbao (Chinese Bulletin of Botany), 23(5): 534-555 (
储
昭庆
,
李李
,
宋丽
,
薛红卫
, 2006,
油菜素内酯生物合成
与功能的研究进展
,
植物学通报
, 23(5): 534-555)
Divi U.K., and Krishna P., 2009, Brassinosteroid: a
biotechnological target for enhancing crop yield and stress
tolerance, New Biotechnology, 36: 131-136
Divi U.K., and Krishna P., 2010, Overexpression of the brassin-
osteroid biosynthetic gene
AtDWF4
in
Arabidopsis
seeds
overcomes abscisic acid-induced inhibition of germination
and increases cold tolerance in transgenic seedlings, J.
Plant Growth Regul., doi: 10.1007/s00344-010-9150-3
Fujioka S., and Yokota T., 2003, Biosynthesis and metabolism
of brassinosteroids, Annu. Rev. Plant Biol., 54: 137-64
Fujioka S., Li J., Choi Y.H., Seto H., Takatsuto S., Noguchi T.,
Watanabe T., Kuriyama H., Yokota T., Chory J., and Sakurai
A., 1997, The
Arabidopsis deetiolated2
mutant is blocked
early in brassinosteroid biosynthesis, Plant Cell, 9: 1951-1962
Jager C.E., Symons G.M., Nomura T., Yamada Y., Smith J.J.,
Yamaguchi S., Kamiya Y., Weller J.L., Yokota T., and Reid
J.B., 2007, Characterization of two brassinosteroid C-6
oxidase genes in Pea, Plant Physiol., 143: 1894-1904
Kim T.W., Hwang J.Y., Kim Y.S., Joo S.H., Chang S.C., Lee
J.S., Takatsuto S., and Kim S.K., 2005,
Arabidopsis
CYP85A2, a cytochrome P450, mediates the baeyer-villiger
oxidation of castasterone to brassinolide in brassinosteroid
biosynthesis, The Plant Cell, 17: 2397-2412
Li J., Nagpal P., Vitart V., McMorris T.C., and Chory J., 1996,
A role for brassinosteroids in light-dependent development
of
Arabidopsis
, Science, 272: 398-401
Liu L., Zeng Y.L., and Zhang F.C., 2009, ABA and salt tolerance
of plant, Zhiwu Shenglixue Tongxun, Zhiwu Shenglixue
Tongxun (Plant Physiol. Commu.), 45(2): 187-194 (
刘琳
,
曾幼玲
,
张富春
, 2009, ABA
与植物的耐盐性
,
植物生理
学通讯
, 45(2): 187-194)
Luo M., 2007, Functions of
GhDET2
and
GhKTN1
in cotton
fiber cell development, Dissertation for Ph. D, Southwest
university, Supervisor: Pei Y., pp.7-20 (
罗明
, 2007,
GhDET2
和
GhKTN1
在棉花纤维细胞发育中的功能
,
博
士学位论文
,
西南大学
,
导师
:
裴炎
, pp.7-20)
Luo M., Xiao Y., Li X., Lu X., Deng W., Li D., Hou L., Hu M.,
Li Y., and Pei Y., 2007,
GhDET2
, a steroid 5α-reductase,
plays an important role in cotton fiber cell initiation and
elongation, The Plant Journal, 51(3): 419-430
Luo M., Xiao Z., Xiao Y., Li X., Hou L., Zhou J., Hu M., and
Pei Y., 2007, Cloning and expression analysis of a
brassinosteroid biosynthetic enzyme gene,
GhDWF1
, from
cotton (
Gossypium hirsufurm
L.), Agricultural Sciences in
China, 6(11): 1297-1305
Marsolais F., Sebastia C.H., Rousseau A., and Varin L., 2004,
Molecular and biochemical characterization of
BNST4
, an
ethanol-inducible steroid sulfotransferase from
Brassica