GENETIC-REGULATION OF DEVELOPMENT IN SORGHUM-BICOLOR .6. THE MA3R ALLELE RESULTS IN ABNORMAL PHYTOCHROME PHYSIOLOGY

被引:34
作者
CHILDS, KL
PRATT, LH
MORGAN, PW
机构
[1] TEXAS A&M UNIV SYST,DEPT SOIL & CROP SCI,COLLEGE STN,TX 77843
[2] UNIV GEORGIA,DEPT BOT,ATHENS,GA 30602
关键词
D O I
10.1104/pp.97.2.714
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Physiological processes controlled by phytochrome were examined in three near-isogenic genotypes of Sorghum bicolor, differing at the allele of the third maturity gene locus. Seedlings of 58M (ma3(R)ma3R) did not show phytochrome control of anthocyanin synthesis. In contrast, seedlings of 90M (ma3ma3) and 100M (Ma3Ma3) demonstrated reduced anthocyanin synthesis after treatment with far red and reversal of the far red effect by red. De-etiolation of 48-hour-old 90M and 100M dark-grown seedlings occurred with 48 hours of continuous red. Dark-grown 58M seedlings did not de-etiolate with continuous red treatment. Treatment of seedlings with gibberellic acid or tetcyclacis, a gibberellin synthesis inhibitor, did not alter anthocyanin synthesis. Levels of chlorophyll and anthocyanin were lower in light-grown 58M seedlings than in 90M and 100M. Etiolated seedlings of all three genotypes have similar amounts of photoreversible phytochrome. Crude protein extracts from etiolated seedlings were separated by sodium dodecyl sulfate-polyacrylamide gel electrophoresis and transferred to nitrocellulose. Phytochrome was visualized with Pea-25, a monoclonal antibody directed to phytochrome from etiolated peas. The samples from all three genotYpes contained approximately equivalent amounts of a Prominent, immunostaining band at 126 kD. However, the sample from 58M did not show a fainter, secondary band at 123 kD that was present in 90M and 100M. The identity and importance of this secondary band at 123 kD is unknown. We propose that 58M is a phytochrome-related mutant that contains normal amounts of photoreversible phytochrome and normal phytochrome protein when grown in the dark.
引用
收藏
页码:714 / 719
页数:6
相关论文
共 29 条
[1]   PHOTOPHYSIOLOGY AND PHYTOCHROME CONTENT OF LONG-HYPOCOTYL MUTANT AND WILD-TYPE CUCUMBER SEEDLINGS [J].
ADAMSE, P ;
JASPERS, PAPM ;
BAKKER, JA ;
KENDRICK, RE ;
KOORNNEEF, M .
PLANT PHYSIOLOGY, 1988, 87 (01) :264-268
[2]   COPPER ENZYMES IN ISOLATED CHLOROPLASTS - POLYPHENOLOXIDASE IN BETA-VULGARIS [J].
ARNON, DI .
PLANT PHYSIOLOGY, 1949, 24 (01) :1-15
[3]  
BEALL FD, 1990, PLANT PHYSIOL, V95, P116
[4]   EVIDENCE FOR PHYTOCHROME REGULATION OF GIBBERELLIN-A20 3BETA-HYDROXYLATION IN SHOOTS OF DWARF (LELE) PISUM-SATIVUM-L [J].
CAMPELL, BR ;
BONNER, BA .
PLANT PHYSIOLOGY, 1986, 82 (04) :909-915
[5]   PHYTOCHROME CONTROL OF CHLOROPHYLL CONTENT IN MATURE ATTACHED LEAVES OF PETUNIA-AXILLARIS [J].
CASAL, JJ ;
APHALO, PJ .
ANNALS OF BOTANY, 1989, 63 (05) :595-598
[6]  
CHORY J, 1989, PLANT CELL, V1, P867, DOI 10.1105/tpc.1.9.867
[7]   PHYTOCHROME FROM GREEN AVENA SHOOTS CHARACTERIZED WITH A MONOCLONAL-ANTIBODY TO PHYTOCHROME FROM ETIOLATED PISUM SHOOTS [J].
CORDONNIER, MM ;
GREPPIN, H ;
PRATT, LH .
BIOCHEMISTRY, 1986, 25 (23) :7657-7666
[8]   IDENTIFICATION OF A HIGHLY CONSERVED DOMAIN ON PHYTOCHROME FROM ANGIOSPERMS TO ALGAE [J].
CORDONNIER, MM ;
GREPPIN, H ;
PRATT, LH .
PLANT PHYSIOLOGY, 1986, 80 (04) :982-987
[9]   PHOTOCONTROL OF ANTHOCYANIN SYNTHESIS IN MILO SEEDLINGS [J].
DOWNS, RJ ;
SIEGELMA, HW .
PLANT PHYSIOLOGY, 1963, 38 (01) :25-&
[10]  
Garner WW, 1923, J AGRIC RES, V23, P0871