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1.
VirB6 is required for stabilization of VirB5 and VirB3 and formation of VirB7 homodimers in Agrobacterium tumefaciens // J. Bacteriol., 2000. Vol. 182, N 16.-С.4505-4511

2.
VirB1, a component of the T-complex transfer machinery of Agrobacterium tumefaciens, is processed to a C-terminal secreted product, VirB1 // J. Bacteriol., 1997. Vol. 179, N 4.-С.1203-1210

3.
Ultrastructural analysis of leaf trichome plasmodesmata reveals major differences from mesophyll plasmodesmata // Planta, 1997. Vol. 203, N 1.-С.75-84

4.
Ultrastructural analysis of leaf trichome plasmodesmata reveals major differences from mesophyll plasmodesmata // Planta, 1997. Vol. 203, N 1.-С.75-84

5.
Citovsky Transport of nucleic acids through membrane Channels: snaking through small holes // Annu. Rev. Microbiol.. -Palo Alto (Calif.), 1993, Vol. 47.-С.167-197

6.
McLean B.Gail Tobacco mosaic virus movement protein associates with the cytoskeleton in tobacco cells // Plant Cell, 1995. Vol. 7, N 12.-С.2101-2114

7.
McLean B.Gail Tobacco mosaic virus movement protein associates with the cytoskeleton in tobacco cells // Plant Cell, 1995. Vol. 7, N 12.-С.2101-2114

8.
McLean B.Gail Tobacco mosaic virus movement protein associates with the cytoskeleton in tobacco cells // Plant Cell, 1995. Vol. 7, N 12.-С.2101-2114

9.
McLean B.Gail Tobacco mosaic virus movement protein associates with the cytoskeleton in tobacco cells // Plant Cell, 1995. Vol. 7, N 12.-С.2101-2114

10.
Thje transfer of DNA from Agrobacterium tumefaciens into plants: A feast of fundamental insights // Plant J., 2000. Vol. 23, N 1.-С.11-28

11.
Thje transfer of DNA from Agrobacterium tumefaciens into plants: A feast of fundamental insights // Plant J., 2000. Vol. 23, N 1.-С.11-28

12.
The virB operon of Agrobacterium tumefaciens pTiC58 encodes 11 open reading frames // Mol. and Gen. Genet., 1990. Vol. 221, N 2.-С.256-266

13.
Baron The lipoprotein VirB7 interacts with VirB9 in the membranes of Agrobacterium tumefaciens // J. Bacteriol., 1997. Vol. 179, N 4.-С.1211-1218

14.
Crawford Katrina M. Subcellular localization determines the availability of non-targeted proteins to plasmodesmatal transport // Curr. Biol., 2000. Vol. 10, N 17.-С.1032-1040

15.
Signaling in plant-microbe interactions // Science, 1997. Vol. 276, N 5313.-С.726-733

16.
Signaling in plant-microbe interactions // Science, 1997. Vol. 276, N 5313.-С.726-733

17.
Kobayashi RNA silencing and its cell-to-cell spread during Arabidopsis embryogenesis // Plant J., 2007. Vol. 50, N 4.-С.597-604

18.
Redox states of plastids and mitochondria differentially regulate intercellular transport via plasmodesmata // Plant Physiol., 2012. Vol. 158, N 1.-С.190-199

19.
Zambryski Plasmodesmata: Gatekeepers for cell-to-cell transport of developmental signals in plants // Annual Review of Cell and Developmental Biology. -Palo Alto (Calif.), 2000, Vol. 16.-С.393-421

20.
McLean B.Gail Plant intercellular communication via plasmodesmata // Plant Cell, 1997. Vol. 9, N 7.-С.1043-1054

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