The Conformation of the Plasma Membrane-Localized SlSERK1 - Mi-1.2 Complex is Altered by a Potato Aphid Derived Effector
| Authors |
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| Publication date | 07-2016 |
| Journal | Plant Physiology |
| Volume | Issue number | 171 | 3 |
| Pages (from-to) | 2211-2222 |
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| Abstract |
Somatic embryogenesis receptor kinases (SERKs) are transmembrane receptors involved in plant immunity. Tomato (Solanum lycopersicum) carries three SERK members. One of these, SlSERK1, is required for Mi-1.2-mediated resistance to potato aphids (Macrosiphum euphorbiae). Mi-1.2
encodes a coiled-coil nucleotide-binding leucine-rich repeat protein
that in addition to potato aphids confers resistance to two additional
phloem-feeding insects and to root-knot nematodes (Meloidogyne spp.). How SlSERK1 participates in Mi-1.2-mediated
resistance is unknown, and no Mi-1.2 cognate pest effectors have been
identified. Here, we study the mechanistic involvement of SlSERK1 in Mi-1.2-mediated resistance. We show that potato aphid saliva and protein extracts induce the Mi-1.2 defense marker gene SlWRKY72b, indicating that both saliva and extracts contain a Mi-1.2 recognized effector. Resistant tomato cultivar Motelle (Mi-1.2/Mi-1.2) plants overexpressing SlSERK1
were found to display enhanced resistance to potato aphids. Confocal
microscopy revealed that Mi-1.2 localizes at three distinct subcellular
compartments: the plasma membrane, cytoplasm, and nucleus.
Coimmunoprecipitation experiments in these tomato plants and in Nicotiana benthamiana transiently expressing Mi-1.2 and SlSERK1 showed that Mi-1.2 and SlSERK1
colocalize only in a microsomal complex. Interestingly, bimolecular
fluorescence complementation analysis showed that the interaction of
Mi-1.2 and SlSERK1 at the plasma membrane distinctively changes
in the presence of potato aphid saliva, suggesting a model in which a
constitutive complex at the plasma membrane participates in defense
signaling upon effector binding.
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| Document type | Article |
| Note | Including supplemental data |
| Language | English |
| Published at | https://doi.org/10.1104/pp.16.00295 |
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The Conformation of the Plasma Membrane-Localized SlSERK1
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