Bi, G., Su, M., Li, N., Liang, Y., Dang, S., Xu, J., Hu, M., Wang, J., Zou, M., Deng, Y., 2021. The zar1 resistosome is a calcium-permeable channel triggering plant immune signaling. Cell 184, 3528-3541.e12.
|
Bonardi, V., Tang, S., Stallmann, A., Roberts, M., Cherkis, K., Dangl, J.L., 2011. Expanded functions for a family of plant intracellular immune receptors beyond specific recognition of pathogen effectors. Proc. Natl. Acad. Sci. U. S. A. 108, 16463-16468.
|
Davis, B.K., Wen, H., Ting, J.P.-Y., 2011. The inflammasome NLRs in immunity, inflammation, and associated diseases. Annu. Rev. Immunol. 29, 707-735.
|
Dong, O.X., Tong, M., Bonardi, V., El Kasmi, F., Woloshen, V., Wunsch, L.K., Dangl, J.L., Li, X., 2016. TNL-mediated immunity in Arabidopsis requires complex regulation of the redundant ADR1 gene family. New Phytol. 210, 960-973.
|
Essuman, K., Summers, D.W., Sasaki, Y., Mao, X., DiAntonio, A., Milbrandt, J., 2017. The SARM1 toll/interleukin-1 receptor domain possesses intrinsic NAD+ cleavage activity that promotes pathological axonal degeneration. Neuron 93, 1334-1343 e1335.
|
Horsefield, S., Burdett, H., Zhang, X., Manik, M.K., Shi, Y., Chen, J., Qi, T., Gilley, J., Lai, J.-S., Rank, M.X., 2019. NAD+ cleavage activity by animal and plant TIR domains in cell death pathways. Science 365, 793-799.
|
Hu, M., Qi, J., Bi, G., Zhou, J.-M., 2020. Bacterial effectors induce oligomerization of immune receptor ZAR1 in vivo. Mol. Plant 13, 793-801.
|
Jacob, P., Kim, N.H., Wu, F., El-Kasmi, F., Chi, Y., Walton, W.G., Furzer, O.J., Lietzan, A.D., Sunil, S., Kempthorn, K., Redinbo, M.R., 2021. Plant “helper” immune receptors are Ca2+-permeable nonselective cation channels. Science https://doi.org/10.1126/science.abg7917.
|
Jones, J.D., Vance, R.E., Dangl, J.L., 2016. Intracellular innate immune surveillance devices in plants and animals. Science 354, 6316.
|
Jubic, L.M., Saile, S., Furzer, O.J., El Kasmi, F., Dangl, J.L., 2019. Help wanted: helper nlrs and plant immune responses. Curr. Opin. Plant Biol. 50, 82-94.
|
Ma, S., Lapin, D., Liu, L., Sun, Y., Song, W., Zhang, X., Logemann, E., Yu, D., Wang, J., Jirschitzka, J., 2020. Direct pathogen-induced assembly of an NLR immune receptor complex to form a holoenzyme. Science 370, 6521.
|
Martin, R., Qi, T., Zhang, H., Liu, F., King, M., Toth, C., Nogales, E., Staskawicz, B.J., 2020. Structure of the activated ROQ1 resistosome directly recognizing the pathogen effector XopQ. Science 370, eabd9993.
|
Peart, J.R., Mestre, P., Lu, R., Malcuit, I., Baulcombe, D.C., 2005. NRG1, a CC-NBLRR protein, together with N, a TIR-NB-LRR protein, mediates resistance against tobacco mosaic virus. Curr. Biol. 15, 968-973.
|
Saile, S.C., Jacob, P., Castel, B., Jubic, L.M., Salas-Gonzalez, I., Bäcker, M., Jones, J.D., Dangl, J.L., El Kasmi, F., 2020. Two unequally redundant “helper” immune receptor families mediate Arabidopsis thaliana intracellular “sensor” immune receptor functions. PLoS Biol. 18, e3000783.
|
Saur, I.M., Panstruga, R., Schulze-Lefert, P., 2020. Nod-like receptor-mediated plant immunity: from structure to cell death. Nat. Rev. Immunol. 1-14.
|
Sun, X., Lapin, D., Feehan, J.M., Stolze, S.C., Kramer, K., Dongus, J.A., Rzemieniewski, J., Blanvillain-Baufume, S., Harzen, A., Bautor, J., 2021. Pathogen effector recognition-dependent association of NRG1 with EDS1 and SAG101 in TNL receptor immunity. Nat. Commun. 12, 1-15.
|
Tamborski, J., Krasileva, K.V., 2020. Evolution of plant NLRs: from natural history to precise modifications. Annu. Rev. Plant Biol. 71, 355-378.
|
Thor, K., Jiang, S., Michard, E., George, J., Scherzer, S., Huang, S., Dindas, J., Derbyshire, P., Leitão, N., DeFalco, T.A., 2020. The calcium-permeable channel OSCA1.3 regulates plant stomatal immunity. Nature 585, 569-573.
|
Tian, W., Hou, C., Ren, Z., Wang, C., Zhao, F., Dahlbeck, D., Hu, S., Zhang, L., Niu, Q., Li, L., 2019. A calmodulin-gated calcium channel links pathogen patterns to plant immunity. Nature 572, 131-135.
|
Urbach, J.M., Ausubel, F.M., 2017. The NBS-LRR architectures of plant R-proteins and metazoan NLRs evolved in independent events. Proc. Natl. Acad. Sci. U. S. A. 114, 1063-1068.
|
Wan, L., Essuman, K., Anderson, R.G., Sasaki, Y., Monteiro, F., Chung, E.-H., Nishimura, E.O., DiAntonio, A., Milbrandt, J., Dangl, J.L., 2019. TIR domains of plant immune receptors are NAD+-cleaving enzymes that promote cell death. Science 365, 799-803.
|
Wang, J., Hu, M., Wang, J., Qi, J., Han, Z., Wang, G., Qi, Y., Wang, H.-W., Zhou, J.-M., Chai, J., 2019. Reconstitution and structure of a plant NLR resistosome conferring immunity. Science 364, eaav5870.
|
Wu, Z., Li, M., Dong, O.X., Xia, S., Liang, W., Bao, Y., Wasteneys, G., Li, X., 2019. Differential regulation of TNL-mediated immune signaling by redundant helper CNLs. New Phytol. 222, 938-953.
|
Wu, Z., Tian, L., Liu, X., Zhang, Y., Li, X., 2021. TIR signal promotes interactions between lipase-like proteins and ADR1-L1 receptor and ADR1-L1 oligomerization. Plant Physiol., kiab305, https://doi.org/10.1093/plphys/kiab305.
|
Xia, B., Fang, S., Chen, X., Hu, H., Chen, P., Wang, H., Gao, Z., 2016. MLKL forms cation channels. Cell Res. 26, 517-528.
|
Yoshioka, K., Moeder, W., Kang, H.G., Kachroo, P., Masmoudi, K., Berkowitz, G., Klessig, D.F., 2006. The chimeric Arabidopsis CYCLIC NUCLEOTIDE-GATED ION CHANNEL11/12 activates multiple pathogen resistance responses. Plant Cell 18, 747-763.
|
Zhao, C., Tang, Y., Wang, J., Zeng, Y., Sun, H., Zheng, Z., Su, R., Schneeberger, K., Parker, J.E., Cui, H., 2021. A mis-regulated cyclic nucleotide-gated channel mediates cytosolic calcium elevation and activates immunity in Arabidopsis. New Phytol. 230, 1078-1094.
|
Zhou, J.-M., Zhang, Y., 2020. Plant immunity: danger perception and signaling. Cell 181, 978-989.
|