DEFECTIVE CELL-TO-CELL MOVEMENT OF COWPEA MOSAIC-VIRUS MUTANT N123 IS EFFICIENTLY COMPLEMENTED BY SUNN-HEMP MOSAIC-VIRUS

被引:10
作者
TALIANSKY, ME
DEJAGER, CP
WELLINK, J
VANLENT, JWM
GOLDBACH, RW
机构
[1] AGR UNIV WAGENINGEN,DEPT VIROL,BINNENHAVEN 11,6709 PD WAGENINGEN,NETHERLANDS
[2] AGR UNIV WAGENINGEN,DEPT MOLEC BIOL,6703 BC WAGENINGEN,NETHERLANDS
关键词
D O I
10.1099/0022-1317-74-9-1895
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
During an infection with cowpea mosaic virus (CPMV) both virion assembly and formation of tubules associated with plasmodesmata are required for cell-to-cell movement. These functions are encoded by the M-RNA of CPMV. To study the mechanism of CPMV movement, mutant N123 was used in complementation studies with sunn-hemp mosaic virus (SHMV), a legume-infecting tobamovirus. Previous studies have shown that N123 fails to spread in cowpea plants because of mutation(s) in its M-RNA. However, the mutant was efficiently replicated in cowpea protoplasts, in which virions were formed and tubular transport structures were induced. After high-dose inoculation of cowpeas with N123, only a few infected protoplasts could be isolated, indicating that cell-to-cell transport of N123 was greatly impaired, if not completely abolished. Upon coinoculation with SHMV, mutant N123 infected cowpea plants systemically and accumulated to levels which were comparable to those of wild-type CPMV. In contrast, separate B-RNA of CPMV and a CPMV deletion mutant lacking the tubule-inducing function, were complemented by SHMV to only low levels. It is concluded that SHMV-facilitated spread of CPMV in the non-virion tobamovirus mode is inefficient and that spread of mutant N123 is probably in the CPMV mode, SHMV providing an as yet unidentified helper function.
引用
收藏
页码:1895 / 1901
页数:7
相关论文
共 23 条
[1]   THE TOBACCO MOSAIC VIRUS-30K MOVEMENT PROTEIN IN TRANSGENIC TOBACCO PLANTS IS LOCALIZED TO PLASMODESMATA [J].
ATKINS, D ;
HULL, R ;
WELLS, B ;
ROBERTS, K ;
MOORE, P ;
BEACHY, RN .
JOURNAL OF GENERAL VIROLOGY, 1991, 72 :209-211
[2]   VISUALIZATION AND CHARACTERIZATION OF TOBACCO MOSAIC-VIRUS MOVEMENT PROTEIN-BINDING TO SINGLE-STRANDED NUCLEIC-ACIDS [J].
CITOVSKY, V ;
WONG, ML ;
SHAW, AL ;
PRASAD, BVV ;
ZAMBRYSKI, P .
PLANT CELL, 1992, 4 (04) :397-411
[3]  
CLARK MF, 1986, METHOD ENZYMOL, V118, P742
[4]   GENETIC-ANALYSIS OF COWPEA MOSAIC-VIRUS MUTANTS BY SUPPLEMENTATION AND REASSORTMENT TESTS [J].
DEJAGER, CP .
VIROLOGY, 1976, 70 (01) :151-163
[5]   IMPROVEMENTS OF THE INFECTIVITY OF INVITRO TRANSCRIPTS FROM CLONED COWPEA MOSAIC-VIRUS CDNA - IMPACT OF TERMINAL NUCLEOTIDE-SEQUENCES [J].
EGGEN, R ;
VERVER, J ;
WELLINK, J ;
DEJONG, A ;
GOLDBACH, R ;
VANKAMMEN, A .
VIROLOGY, 1989, 173 (02) :447-455
[6]  
EGGEN R, 1988, RNA GENETICS, V1, P49
[7]   EXPRESSION OF MIDDLE-COMPONENT RNA OF COWPEA MOSAIC-VIRUS - INVITRO GENERATION OF A PRECURSOR TO BOTH CAPSID PROTEINS BY A BOTTOM-COMPONENT RNA-ENCODED PROTEASE FROM INFECTED-CELLS [J].
FRANSSEN, H ;
GOLDBACH, R ;
BROEKHUIJSEN, M ;
MOERMAN, M ;
VANKAMMEN, A .
JOURNAL OF VIROLOGY, 1982, 41 (01) :8-17
[8]   INDEPENDENT REPLICATION AND EXPRESSION OF B-COMPONENT RNA OF COWPEA MOSAIC-VIRUS [J].
GOLDBACH, R ;
REZELMAN, G ;
VANKAMMEN, A .
NATURE, 1980, 286 (5770) :297-300
[9]  
GOLDBACH R, 1985, MOL PLANT VIROLOGY, V2, P83
[10]  
GOODING GV, 1967, PHYTOPATHOLOGY, V57, P1285