Beneficial soil-borne microorganisms can induce an enhanced defensive capacity in above-ground plant parts that provides protection against a broad spectrum of microbial pathogens and even insect herbivores. The phytohormones jasmonic acid (JA) and ethylene emerged as important regulators of this induced systemic resistance (ISR). ISR triggered by plant growth-promoting rhizobacteria and fungi is often not associated with enhanced biosynthesis of these hormones, nor with massive changes in defense-related gene expression. Instead, ISR-expressing plants are primed for enhanced defense. Priming is characterized by a faster and stronger expression of cellular defense responses that become activated only upon pathogen or insect attack, resultin...
Plants are exposed to very different attackers, including microbial pathogens and herbivorous insect...
Jasmonic acid (JA) signalling plays a central role in plant defences against necrotrophic pathogens ...
Jasmonic acid (JA) signalling plays a central role in plant defences against necrotrophic pathogens ...
Beneficial soil-borne microorganisms can induce an enhanced defensive capacity in above-ground plant...
Beneficial soil-borne microorganisms can induce an enhanced defensive capacity in above-ground plant...
Within their environment, plants interact with a wide range of microorganisms, some of which are pat...
Jasmonates, together with other plant hormones, are important orchestrators of the plant immune syst...
Within their environment, plants interact with a wide range of microorganisms, some of which are pat...
Plants possess inducible defense mechanisms to effectively combat invasion by microbial pathogens or...
Jasmonates, together with other plant hormones, are important orchestrators of the plant immune syst...
Beneficial soil microbes can promote plant growth and induce systemic resistance (ISR) in abovegroun...
Plant beneficial microorganisms improve the health and growth of the associated plants. Application ...
Some of non-pathogenic rhizosphere bacteria reduce disease by activating a resistance mechanism in t...
Beneficial soil microbes can promote plant growth and induce systemic resistance (ISR) in abovegroun...
To protect themselves from disease, plants have evolved sophisticated inducible defense mechanisms i...
Plants are exposed to very different attackers, including microbial pathogens and herbivorous insect...
Jasmonic acid (JA) signalling plays a central role in plant defences against necrotrophic pathogens ...
Jasmonic acid (JA) signalling plays a central role in plant defences against necrotrophic pathogens ...
Beneficial soil-borne microorganisms can induce an enhanced defensive capacity in above-ground plant...
Beneficial soil-borne microorganisms can induce an enhanced defensive capacity in above-ground plant...
Within their environment, plants interact with a wide range of microorganisms, some of which are pat...
Jasmonates, together with other plant hormones, are important orchestrators of the plant immune syst...
Within their environment, plants interact with a wide range of microorganisms, some of which are pat...
Plants possess inducible defense mechanisms to effectively combat invasion by microbial pathogens or...
Jasmonates, together with other plant hormones, are important orchestrators of the plant immune syst...
Beneficial soil microbes can promote plant growth and induce systemic resistance (ISR) in abovegroun...
Plant beneficial microorganisms improve the health and growth of the associated plants. Application ...
Some of non-pathogenic rhizosphere bacteria reduce disease by activating a resistance mechanism in t...
Beneficial soil microbes can promote plant growth and induce systemic resistance (ISR) in abovegroun...
To protect themselves from disease, plants have evolved sophisticated inducible defense mechanisms i...
Plants are exposed to very different attackers, including microbial pathogens and herbivorous insect...
Jasmonic acid (JA) signalling plays a central role in plant defences against necrotrophic pathogens ...
Jasmonic acid (JA) signalling plays a central role in plant defences against necrotrophic pathogens ...