Resultados globales: 2 registros encontrados en 0.01 segundos.
Artículos, Encontrados 2 registros
Artículos Encontrados 2 registros  
1.
17 p, 1.4 MB Identification of RipAZ1 as an avirulence determinant of Ralstonia solanacearum in Solanum americanum / Moon, Hayoung (Pohang University of Science and Technology. Department of Life Sciences) ; Pandey, Ankita (Pohang University of Science and Technology. Department of Life Sciences) ; Yoon, Hayeon (Pohang University of Science and Technology. Department of Life Sciences) ; Choi, Sera (Pohang University of Science and Technology. Department of Life Sciences) ; Jeon, Hyelim (Seoul National University. Department of Agriculture, Forestry and Bioresources) ; Prokchorchik, Maxim (Pohang University of Science and Technology. Department of Life Sciences) ; Jung, Gayoung (Pohang University of Science and Technology. Department of Life Sciences) ; Witek, Kamil (University of East Anglia. The Sainsbury Laboratory) ; Valls, Marc (Centre de Recerca en Agrigenòmica) ; McCann, Honour C. (Max Planck Institute for Developmental Biology) ; Kim, Min-Sung (Pohang University of Science and Technology. Department of Life Sciences) ; Jones, Jonathan D. G. (University of East Anglia. The Sainsbury Laboratory) ; Segonzac, Cécile (Seoul National University. Agricultural Life Science Research Institute) ; Sohn, Kee Hoon (Pohang University of Science and Technology. School of Interdisciplinary Bioscience and Bioengineering)
Ralstonia solanacearum causes bacterial wilt disease in many plant species. Type III-secreted effectors (T3Es) play crucial roles in bacterial pathogenesis. However, some T3Es are recognized by corresponding disease resistance proteins and activate plant immunity. [...]
2021 - 10.1111/mpp.13030
Molecular plant pathology, Vol. 22, Issue 3 (March 2021) , p. 317-333  
2.
28 p, 5.4 MB A Species-Wide Inventory of NLR Genes and Alleles in Arabidopsis thaliana / Van de Weyer, Anna-Lena (Max Planck Institute for Developmental Biology. Department of Molecular Biology) ; Monteiro, Freddy (Centre de Recerca en Agrigenòmica) ; Furzer, Oliver J. (University of East Anglia. The Sainsbury Laboratory) ; Nishimura, Marc T. (Colorado State University. Department of Biochemistry and Molecular Biology) ; Cevik, Volkan (University of Bath. Milner Centre for Evolution & Department of Biology and Biochemistry) ; Witek, Kamil (University of East Anglia. The Sainsbury Laboratory) ; Jones, Jonathan D. G. (University of East Anglia. The Sainsbury Laboratory) ; Dangl, Jeffery L. (Howard Hughes Medical Institute) ; Weigel, Detlef (Max Planck Institute for Developmental Biology. Department of Molecular Biology) ; Bemm, Felix (Max Planck Institute for Developmental Biology. Department of Molecular Biology)
Infectious disease is both a major force of selection in nature and a prime cause of yield loss in agriculture. In plants, disease resistance is often conferred by nucleotide-binding leucine-rich repeat (NLR) proteins, intracellular immune receptors that recognize pathogen proteins and their effects on the host. [...]
2019 - 10.1016/j.cell.2019.07.038
Cell, Vol. 178, Issue 5 (August 2019) , p. 1260-1272  

Vea también: autores con nombres similares
4 Jones, J.
1 Jones, Jan
2 Jones, Janice L.
1 Jones, Jeffrey A.
1 Jones, Jennifer C.
1 Jones, Jessica
1 Jones, Joanna E.
1 Jones, Joanna E.
1 Jones, Joanne L.
2 Jones, Jonathan D. G.
1 Jones, Julia Talbot
¿Le interesa recibir alertas sobre nuevos resultados de esta búsqueda?
Defina una alerta personal vía correo electrónico o subscríbase al canal RSS.