Rice OsVAMP714, a membrane-trafficking protein localized to the chloroplast and vacuolar membrane, is involved in resistance to rice blast disease View Full Text


Ontology type: schema:ScholarlyArticle     


Article Info

DATE

2016-02-15

AUTHORS

Shoji Sugano, Nagao Hayashi, Yasushi Kawagoe, Susumu Mochizuki, Haruhiko Inoue, Masaki Mori, Yoko Nishizawa, Chang-Jie Jiang, Minami Matsui, Hiroshi Takatsuji

ABSTRACT

Membrane trafficking plays pivotal roles in many cellular processes including plant immunity. Here, we report the characterization of OsVAMP714, an intracellular SNARE protein, focusing on its role in resistance to rice blast disease caused by the fungal pathogen Magnaporthe oryzae. Disease resistance tests using OsVAMP714 knockdown and overexpressing rice plants demonstrated the involvement of OsVAMP714 in blast resistance. The overexpression of OsVAMP7111, whose product is highly homologous to OsVAMP714, did not enhance blast resistance to rice, implying a potential specificity of OsVAMP714 to blast resistance. OsVAMP714 was localized to the chloroplast in mesophyll cells and to the cellular periphery in epidermal cells of transgenic rice plant leaves. We showed that chloroplast localization is critical for the normal OsVAMP714 functioning in blast resistance by analyzing the rice plants overexpressing OsVAMP714 mutants whose products did not localize in the chloroplast. We also found that OsVAMP714 was located in the vacuolar membrane surrounding the invasive hyphae of M. oryzae. Furthermore, we showed that OsVAMP714 overexpression promotes leaf sheath elongation and that the first 19 amino acids, which are highly conserved between animal and plant VAMP7 proteins, are crucial for normal rice plant growths. Our studies imply that the OsVAMP714-mediated trafficking pathway plays an important role in rice blast resistance as well as in the vegetative growth of rice. More... »

PAGES

81-95

Identifiers

URI

http://scigraph.springernature.com/pub.10.1007/s11103-016-0444-0

DOI

http://dx.doi.org/10.1007/s11103-016-0444-0

DIMENSIONS

https://app.dimensions.ai/details/publication/pub.1047056552

PUBMED

https://www.ncbi.nlm.nih.gov/pubmed/26879413


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29 schema:description Membrane trafficking plays pivotal roles in many cellular processes including plant immunity. Here, we report the characterization of OsVAMP714, an intracellular SNARE protein, focusing on its role in resistance to rice blast disease caused by the fungal pathogen Magnaporthe oryzae. Disease resistance tests using OsVAMP714 knockdown and overexpressing rice plants demonstrated the involvement of OsVAMP714 in blast resistance. The overexpression of OsVAMP7111, whose product is highly homologous to OsVAMP714, did not enhance blast resistance to rice, implying a potential specificity of OsVAMP714 to blast resistance. OsVAMP714 was localized to the chloroplast in mesophyll cells and to the cellular periphery in epidermal cells of transgenic rice plant leaves. We showed that chloroplast localization is critical for the normal OsVAMP714 functioning in blast resistance by analyzing the rice plants overexpressing OsVAMP714 mutants whose products did not localize in the chloroplast. We also found that OsVAMP714 was located in the vacuolar membrane surrounding the invasive hyphae of M. oryzae. Furthermore, we showed that OsVAMP714 overexpression promotes leaf sheath elongation and that the first 19 amino acids, which are highly conserved between animal and plant VAMP7 proteins, are crucial for normal rice plant growths. Our studies imply that the OsVAMP714-mediated trafficking pathway plays an important role in rice blast resistance as well as in the vegetative growth of rice.
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36 Magnaporthe oryzae
37 SNARE proteins
38 acid
39 amino acids
40 animals
41 blast disease
42 blast resistance
43 cells
44 cellular periphery
45 cellular processes
46 characterization
47 chloroplast localization
48 chloroplasts
49 disease
50 disease resistance tests
51 elongation
52 epidermal cells
53 functioning
54 fungal pathogen Magnaporthe oryzae
55 growth
56 hyphae
57 immunity
58 important role
59 invasive hyphae
60 involvement
61 knockdown
62 leaf sheath elongation
63 leaves
64 localization
65 membrane
66 membrane trafficking
67 membrane trafficking proteins
68 mesophyll cells
69 mutants
70 oryzae
71 overexpression
72 pathogen Magnaporthe oryzae
73 pathway
74 periphery
75 pivotal role
76 plant growth
77 plant immunity
78 plant leaves
79 plants
80 potential specificity
81 process
82 products
83 protein
84 resistance
85 resistance test
86 rice
87 rice blast disease
88 rice blast resistance
89 rice plant growth
90 rice plant leaves
91 rice plants
92 role
93 sheath elongation
94 specificity
95 study
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