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1 A viruses, cowpea chlorotic mottle virus and cucumber mosaic virus.
2                                 Notably, the Cucumber mosaic virus 2b protein, shown previously to fu
3 ypersusceptible to TMV, turnip mosaic virus, cucumber mosaic virus and cauliflower mosaic virus as we
4 ts were infected with two different viruses, cucumber mosaic virus and oilseed rape mosaic virus.
5 s (members of Tobamovirus genus), but not to Cucumber mosaic virus and Potato virus X (members of dif
6 umulation of two other heterologous viruses: cucumber mosaic virus and tobacco mosaic virus.
7 ports describe that the 2b suppressor of the Cucumber mosaic virus binds ARGONAUTE and that the P0 su
8                    Finally, the structure of cucumber mosaic virus bound to a loop involved in aphid
9 SDE5 also results in hyper-susceptibility to cucumber mosaic virus but not turnip mosaic virus.
10  RNA (satRNA) with its helper virus, namely, cucumber mosaic virus, causes systemic necrosis in tomat
11                                          The cucumber mosaic virus (CMV) 2b protein suppresses RNA si
12 dopsis thaliana targeted during infection by cucumber mosaic virus (CMV) 2b protein, known to suppres
13 ous analysis of replicase recognition of the Cucumber mosaic virus (CMV) and BMV SLCs indicates that
14 A system already under use in field tests is cucumber mosaic virus (CMV) and its satellite RNAs.
15 se gene sequence from RNA-2 of strain Fny of cucumber mosaic virus (CMV) are resistant to systemic CM
16                                              Cucumber mosaic virus (CMV) comprises numerous isolates
17 onse (systemic necrosis) to seven strains of Cucumber mosaic virus (CMV) from pepper or tomato, but n
18                                              Cucumber mosaic virus (CMV) has been divided into two su
19                                Resistance to Cucumber mosaic virus (CMV) in tobacco lines transformed
20 istance to infection in cowpea by strains of cucumber mosaic virus (CMV) involves a local, hypersensi
21 minent feature on the surfaces of virions of Cucumber mosaic virus (CMV) is a negatively charged loop
22                                              Cucumber mosaic virus (CMV) is a tripartite RNA virus th
23                                              Cucumber mosaic virus (CMV) is an RNA plant virus with a
24 g of 12 restriction enzyme marker mutants of Cucumber mosaic virus (CMV) onto young leaves of squash
25 ucture and genetic diversity of a California Cucumber mosaic virus (CMV) population was assessed by s
26 inants were observed in the progenies of the Cucumber mosaic virus (CMV) reassortant L(1)L(2)F(3) con
27      D satellite RNA (satRNA) is a strain of cucumber mosaic virus (CMV) satRNA that induces an epide
28 a and N. clevelandii coexpressing wt BMV and Cucumber mosaic virus (CMV) showed that despite trans-en
29 r maize based on a naturally maize-infecting cucumber mosaic virus (CMV) strain, ZMBJ-CMV.
30 ble for efficient and accurate initiation of cucumber mosaic virus (CMV) subgenomic RNA4.
31                                              Cucumber mosaic virus (CMV) systemically infects both to
32 n and deletion mutations of the replicase of Cucumber mosaic virus (CMV) was determined in planta by
33 e plant viruses, Tobacco mosaic virus (TMV), Cucumber mosaic virus (CMV), and Cowpea chlorotic mottle
34 s infected with potato virus Y (PVY) or with cucumber mosaic virus (CMV), but not in plants infected
35 e 3a movement protein (MP) of a plant virus, Cucumber mosaic virus (CMV), forms ribonucleoprotein (RN
36  the effects of a widespread plant pathogen, Cucumber mosaic virus (CMV), on the quality and attracti
37 as detected in another tripartite RNA virus, cucumber mosaic virus (CMV), suggesting that the 1a-1a i
38                                              Cucumber mosaic virus (CMV), the type member of the genu
39                      We previously devised a cucumber mosaic virus (CMV)-based vector system carrying
40                                              Cucumber mosaic virus (CMV)-encoded 2b protein was among
41 ridae family, alfalfa mosaic virus (AMV) and cucumber mosaic virus (CMV).
42 the tripartite positive-strand RNA genome of cucumber mosaic virus (CMV).
43 tatus challenged with a generalist pathogen, Cucumber mosaic virus (CMV).
44 ad significantly reduced symptom severity by Cucumber mosaic virus (CMV).
45                Here, we describe a mutant of Cucumber mosaic virus (CMV-Delta2b) that is silenced pre
46                             The structure of cucumber mosaic virus (CMV; strain Fny) has been determi
47     However, a mixed infection of TYLCV with cucumber mosaic virus compromised the resistance.
48 s study, we used an artificial population of Cucumber mosaic virus consisting of 12 restriction enzym
49 c infection with cauliflower mosaic virus or cucumber mosaic virus did not induce the tryptophan path
50 acco plants infected with the Fny isolate of Cucumber mosaic virus (Fny-CMV) that will direct synthes
51  tobacco, the 3a movement protein (3a MP) of Cucumber mosaic virus fused to green fluorescent protein
52 he tripartite viruses Brome mosaic virus and Cucumber mosaic virus have been shown to induce VIGS in
53  of plant potyviruses and the 2b gene of the cucumber mosaic virus have been shown to interfere with
54 Previous work using Tobacco mosaic virus and Cucumber mosaic virus indicated that evolutionarily rela
55         Symptom enhancement by the satRNA of Cucumber mosaic virus is caused by minus-strand inductio
56 Replication of the satellite RNA (satRNA) of Cucumber Mosaic Virus is dependent on replicase proteins
57 ic plus-strand initiation was specific since cucumber mosaic virus minus-strand RNA templates were un
58                            Here, KN1 and the cucumber mosaic virus movement protein (CMV-MP) were use
59 nts showed enhanced susceptibility to either cucumber mosaic virus or oilseed rape mosaic virus based
60                         Tobamovirus, but not Cucumber mosaic virus or Potato virus X, infection of N.
61     One of these proteins, the 2b protein of cucumber mosaic virus, prevents systemic spread of the s
62  in Arabidopsis induced by expression of the Cucumber mosaic virus silencing suppressor protein 2b kn
63 nt of satellite RNA (satRNA) associated with Cucumber mosaic virus strain Q (Q-satRNA) has a propensi
64 ber viroid (PSTVd), a satRNA associated with Cucumber Mosaic Virus strain Q (Q-satRNA) has the propen
65 ript profile for RCY1-mediated resistance to cucumber mosaic virus strain Y (CMV-Y) in Arabidopsis.
66 exhibited enhanced disease susceptibility to cucumber mosaic virus when the virus-encoded function to

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