植物的光受体和光控发育研究

被引:80
作者
童哲
赵玉锦
王台
李念华
毛居代·亚力
机构
[1] 中国科学院植物研究所!北京,中国科学院植物研究所!北京,中国科学院植物研究所!北京,中国科学院植物研究所!北京,中国科学院植物研究所!北京
关键词
光敏色素; 植物发育; 光形态建成; 光周期现象; 基因表达; 信号转导;
D O I
暂无
中图分类号
Q945.4 [植物发育];
学科分类号
071008 ;
摘要
Phytochrome has fascinated plant scientists since its discovery in 1959-1960 by the Beltsville research group of the United States Department of Agriculture. Studies in the first 20 years had evidenced that phytochrome acts as an universal regulator in plant life adapting its behavior to the environmental light, and developed widely the physiological understanding of phytochrome action. In the following 20 years, some thirty worldwide major laboratories have published over two hundred papers a year on various aspects of the subject, and they are making steady progress. The authors' work has also contributed to the following aspects: coaction of phytochrome and phytohormone in photomorphogenesis, phytochrome purification, phytochrome regulation of male fertility, as well as phytochrome A gene analysis and expression in photoperiod sensitive genic male sterile rice. In the recent decade significant advances have been made in studies on phytochrome molecules, genes and signal transduction in phytochrome response. This is largely due to the advances in molecular genetics, where experiments using mutants and transgenic plants, particularly in Arabidopsis, that have led to the significant insights at the molecular level. The topics in this review include:(1) Discovery of phytochrome; (2) Functions of phytochrome; (3) Phytochrome molecules; (4) Phytochrome regulation in gene expression.
引用
收藏
页码:111 / 115
页数:5
相关论文
共 7 条
[1]   内源植物激素与光敏核不育水稻农垦58S育性的关系 [J].
赵玉锦 ;
童哲 ;
陈华君 ;
金幼菊 .
植物学报, 1996, (12) :936-941
[2]   光敏色素对黄化绿豆幼苗下胚轴原生质体膨大的调节作用 [J].
龙程 ;
王小菁 ;
潘瑞炽 .
植物学报, 1994, (10) :765-772
[3]   光敏核不育水稻光敏色素基因的RFLP分析 [J].
梁成志 ;
童哲 ;
宋文源 ;
朱立煌 .
植物学报, 1994, (09) :664-670
[4]   水稻120kDa光敏色素的提纯 [J].
童哲 ;
R.Schendel ;
W.Rdiger ;
宋国清 .
Journal of Integrative Plant Biology, 1989, (12) :897-902
[5]   COACTION OF LIGHT AND CYTOKININ IN PHOTOMORPHOGENESIS [J].
TONG, Z ;
KASEMIR, H ;
MOHR, H .
PLANTA, 1983, 159 (02) :136-142
[6]  
Photomorphogenesis inPlants (2nd Edition). Kendrick R E , Kronenberg G H M. . 1994
[7]  
Attenuation of phytochrome A and B signaling pathways by the Arabidopsis circadian clock. Anderson S L, Somers D E, Millar A J, Hanson K, Chory J, Kay S A. The Plant Cell . 1997