Pea mutants with reduced sensitivity to far-red light define an important role for phytochrome A in day-length detection

被引:113
作者
Weller, JL [1 ]
Murfet, IC [1 ]
Reid, JB [1 ]
机构
[1] RIKEN,INST PHYS & CHEM RES,LAB PHOTOPERCEPT & SIGNAL TRANSDUCT,FRONTIER RES PROGRAM,WAKO,SAITAMA 35101,JAPAN
关键词
D O I
10.1104/pp.114.4.1225
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
In garden pea (Pisum sativum L.), a long-day plant, long photoperiods promote flowering by reducing the synthesis or transport of a graft-transmissible inhibitor of flowering. Previous physiological studies have indicated that this promotive effect is predominantly achieved through a response that requires long exposures to light and for which far-red (FR) light is the most effective. These characteristics implicate the action of phytochrome A (phyA). To investigate this matter further, we screened ethylmethane sulfonate-mutagenized pea seedlings for FR-unresponsive, potentially phyA-deficient mutants. Two allelic, recessive mutants were isolated and were designated fun1 for FR unresponsive. The fun1-1 mutant is specifically deficient in the PHYA apoprotein and has a seedling phenotype indistinguishable from wild type when grown under white light. However, fun1-1 plants grown to maturity under long photoperiods show a highly pleiotropic phenotype, with short internodes, thickened stems, delayed flowering and senescence, longer peduncles, and higher seed yield. This phenotype results in large part from an inability of fun1-1 to detect day extensions. These results establish a crucial role for phyA in the control of flowering in pea, and show that phyA mediates responses to both red and FR light. Furthermore, grafting and epistasis studies with fun1 and dne, a mutant deficient in the floral inhibitor, show that the roles of phyA in seedling deetiolation and in day-length detection are genetically separable and that the phyA-mediated promotion of flowering results from a reduction in the synthesis or transport of the floral inhibitor.
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页码:1225 / 1236
页数:12
相关论文
共 63 条
[1]  
ARUMINGTYAS EL, 1994, J HERED, V8, P12
[2]  
BARBER H. N., 1959, HEREDITY, V13, P33, DOI 10.1038/hdy.1959.3
[3]   A GENE-CONTROLLED FLOWERING INHIBITOR IN PISUM [J].
BARBER, HN ;
PATON, DM .
NATURE, 1952, 169 (4301) :592-592
[4]   Far-red light blocks greening of arabidopsis seedlings via a phytochrome A-mediated change in plastid development [J].
Barnes, SA ;
Nishizawa, NK ;
Quaggio, RB ;
Whitelam, GC ;
Chua, NH .
PLANT CELL, 1996, 8 (04) :601-615
[5]  
BERNIER G, 1988, ANNU REV PLANT PHYS, V39, P175, DOI 10.1146/annurev.pp.39.060188.001135
[6]   MUTANT DN INFLUENCES DRY-MATTER DISTRIBUTION, ASSIMILATE PARTITIONING AND FLOWERING IN LATHYRUS-ODORATUS L [J].
BEVERIDGE, CA ;
ROSS, JJ ;
MURFET, IC .
JOURNAL OF EXPERIMENTAL BOTANY, 1992, 43 (246) :55-62
[7]   Phytochrome a mediates the promotion of seed germination by very low fluences of light and canopy shade light in arabidopsis [J].
Botto, JF ;
Sanchez, RA ;
Whitelam, GC ;
Casal, JJ .
PLANT PHYSIOLOGY, 1996, 110 (02) :439-444
[8]   ACTION SPECTRUM FOR THE EFFECT OF DAY-EXTENSIONS ON FLOWERING AND APEX ELONGATION IN GREEN, LIGHT-GROWN WHEAT (TRITICUM-AESTIVUM L) [J].
CARRSMITH, HD ;
JOHNSON, CB ;
THOMAS, B .
PLANTA, 1989, 179 (04) :428-432
[9]  
CLARK T, 1994, PLANT MOL BIOL, V25, P413
[10]   Genetic control of photoperiod response in early-maturing, near-isogenic soybean lines [J].
Cober, ER ;
Tanner, JW ;
Voldeng, HD .
CROP SCIENCE, 1996, 36 (03) :601-605