Chloroplasts have a crucial role in plant immunity against pathogens. Increasing evidence suggests that phytopathogens target chloroplast homeostasis as a pathogenicity mechanism. In order to regulate the performance of chloroplasts under stress conditions, chloroplasts produce retrograde signals to alter nuclear gene expression. Many signals for the chloroplast retrograde pathway have been identified, including chlorophyll intermediates, reactive oxygen species, and metabolic retrograde signals. Although there is a reasonably good understanding of chloroplast retrograde signaling in plant immunity, some signals are not well-understood. In order to understand the role of chloroplast retrograde signaling in plant immunity, we investigated Ar...
Chloroplast retrograde signaling networks are vital for chloroplast biogenesis, operation, and signa...
Homeostasis of metabolism and regulation of stress‐signaling pathways are important for plant growth...
Plants have the ability to acquire an enhanced level of resistance to pathogen attack after being ex...
Compartmentation of the eukaryotic cell requires a complex set of subcellular messages, including mu...
Plant organelles produce retrograde signals to alter nuclear gene expression in order to coordinate ...
Microbe‐associated molecular pattern (MAMP)‐triggered immunity (MTI) research has traditionally cent...
Microbe associated molecular pattern (MAMP) receptors in plants recognize MAMPs and activate basal d...
Chloroplasts are key players in plant immune signaling, contributing to not only de novo synthesis o...
International audienceThe evolutionary history of plants is tightly connected with the evolution of ...
Plant growth and development are dependent on chloroplast development and function. Constitutive hig...
Excess excitation energy, mechanical injury and defence against pathogens, each trigger rapid produc...
Plant growth and development are dependent on chloroplast development and function. Constitutive hig...
The plant-signaling molecules salicylic acid (SA) and jasmonic acid (JA) play an important role in i...
To protect themselves from disease, plants have evolved sophisticated inducible defense mechanisms i...
International audienceThe chloroplast originated from the endosymbiosis of an ancient photosynthetic...
Chloroplast retrograde signaling networks are vital for chloroplast biogenesis, operation, and signa...
Homeostasis of metabolism and regulation of stress‐signaling pathways are important for plant growth...
Plants have the ability to acquire an enhanced level of resistance to pathogen attack after being ex...
Compartmentation of the eukaryotic cell requires a complex set of subcellular messages, including mu...
Plant organelles produce retrograde signals to alter nuclear gene expression in order to coordinate ...
Microbe‐associated molecular pattern (MAMP)‐triggered immunity (MTI) research has traditionally cent...
Microbe associated molecular pattern (MAMP) receptors in plants recognize MAMPs and activate basal d...
Chloroplasts are key players in plant immune signaling, contributing to not only de novo synthesis o...
International audienceThe evolutionary history of plants is tightly connected with the evolution of ...
Plant growth and development are dependent on chloroplast development and function. Constitutive hig...
Excess excitation energy, mechanical injury and defence against pathogens, each trigger rapid produc...
Plant growth and development are dependent on chloroplast development and function. Constitutive hig...
The plant-signaling molecules salicylic acid (SA) and jasmonic acid (JA) play an important role in i...
To protect themselves from disease, plants have evolved sophisticated inducible defense mechanisms i...
International audienceThe chloroplast originated from the endosymbiosis of an ancient photosynthetic...
Chloroplast retrograde signaling networks are vital for chloroplast biogenesis, operation, and signa...
Homeostasis of metabolism and regulation of stress‐signaling pathways are important for plant growth...
Plants have the ability to acquire an enhanced level of resistance to pathogen attack after being ex...