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Cell specialization and coordination in Arabidopsis leaves upon pathogenic attack revealed by scRNA-seq
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作者 Etienne Delannoy Bastien Batardiere +4 位作者 Ste phanie Pateyron Ludivine Soubigou-Taconnat Julien Chiquet jean colcombet Julien Lang 《Plant Communications》 SCIE CSCD 2023年第5期63-78,共16页
Plant defense responses involve several biological processes that allow plants to fight against pathogenic attacks.How these different processes are orchestrated within organs and depend on specific cell types is poor... Plant defense responses involve several biological processes that allow plants to fight against pathogenic attacks.How these different processes are orchestrated within organs and depend on specific cell types is poorly known.Here,using single-cell RNA sequencing(scRNA-seq)technology on three independent biological replicates,we identified several cell populations representing the core transcriptional responses of wild-type Arabidopsis leaves inoculated with the bacterial pathogen Pseudomonas syringae DC3000.Among these populations,we retrieved major cell types of the leaves(mesophyll,guard,epidermal,companion,and vascular S cells)with which we could associate characteristic transcriptional reprogramming and regulators,thereby specifying different cell-type responses to the pathogen.Further analyses of transcriptional dynamics,on the basis of inference of cell trajectories,indicated that the different cell types,in addition to their characteristic defense responses,can also share similar modules of gene reprogramming,uncovering a ubiquitous antagonism between immune and susceptible processes.Moreover,it appears that the defense responses of vascular S cells,epidermal cells,and mesophyll cells can evolve along two separate paths,one converging toward an identical cell fate,characterized mostly by lignification and detoxification functions.As this divergence does not correspond to the differentiation between immune and susceptible cells,we speculate that this might reflect the discrimination between cellautonomous and non-cell-autonomous responses.Altogether our data provide an upgraded framework to describe,explore,and explain the specialization and the coordination of plant cell responses upon pathogenic challenge. 展开更多
关键词 scRNA-seq plant defense responses plant immunity plant susceptibility Arabidopsis/Pseudomonas interactions biotic stress
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Signaling Mechanisms in Pattern-Triggered Immunity (PTI) 被引量:48
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作者 jean Bigeard jean colcombet Heribert Hirt 《Molecular Plant》 SCIE CAS CSCD 2015年第4期521-539,共19页
In nature, plants constantly have to face pathogen attacks. However, plant disease rarely occurs due to efficient immune systems possessed by the host plants. Pathogens are perceived by two different recognition syste... In nature, plants constantly have to face pathogen attacks. However, plant disease rarely occurs due to efficient immune systems possessed by the host plants. Pathogens are perceived by two different recognition systems that initiate the so-called pattern-triggered immunity (PTI) and effector-triggered immunity (ETI), both of which are accompanied by a set of induced defenses that usually repel pathogen attacks. Here we discuss the complex network of signaling pathways occurring during PTI, focusing on the involvement of mitogen-activated protein kinases. 展开更多
关键词 plant defenses plant immunity PTI signaling mechanisms MAPKS
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