Background Intraspecific public goods are commonly shared within microbial populations, where the benefits of public goods are largely limited to closely related conspecifics. One example is the production of iron-scavenging siderophores that deliver iron to cells via specific cell envelope receptor and transport systems. Intraspecific social exploitation of siderophore producers is common, since non-producers avoid the costs of production but retain the cell envelope machinery for siderophore uptake. However, little is known about how interactions between species (i.e., interspecific interactions) can shape intraspecific public goods exploitation. Here, we predicted that strong competition for iron between species in diverse communities wi...
Bacteria secrete a large variety of beneficial metabolites into the environment, which can be shared...
Iron is an essential trace element for most organisms. A common way for bacteria to acquire this nut...
Iron is an essential trace element for most organisms. A common way for bacteria to acquire this nut...
Abstract Background Intraspecific public goods are commonly shared within microbial populations, whe...
Microbes are social organisms. Their social repertoire ranges from mutually beneficial cooperative i...
Microbes are social organisms. Their social repertoire ranges from mutually beneficial cooperative i...
Microbes are social organisms. Their social repertoire ranges from mutually beneficial cooperative i...
Bacteria produce a great diversity of siderophores to scavenge for iron in their environment. We sug...
All social organisms experience dilemmas between cooperators performing group-beneficial actions and...
Many organisms—notably microbes—are embedded within complex communities where cooperative behaviors ...
Bacteria produce a wide variety of exoproducts that favourably modify their environment and increase...
Many organisms—notably microbes—are embedded within complex communities where cooperative behaviors ...
This is the final version of the article. Available from Wiley via the DOI in this record.Many organ...
Bacteria secrete a large variety of beneficial metabolites into the environment, which can be shared...
Bacteria secrete a large variety of beneficial metabolites into the environment, which can be shared...
Bacteria secrete a large variety of beneficial metabolites into the environment, which can be shared...
Iron is an essential trace element for most organisms. A common way for bacteria to acquire this nut...
Iron is an essential trace element for most organisms. A common way for bacteria to acquire this nut...
Abstract Background Intraspecific public goods are commonly shared within microbial populations, whe...
Microbes are social organisms. Their social repertoire ranges from mutually beneficial cooperative i...
Microbes are social organisms. Their social repertoire ranges from mutually beneficial cooperative i...
Microbes are social organisms. Their social repertoire ranges from mutually beneficial cooperative i...
Bacteria produce a great diversity of siderophores to scavenge for iron in their environment. We sug...
All social organisms experience dilemmas between cooperators performing group-beneficial actions and...
Many organisms—notably microbes—are embedded within complex communities where cooperative behaviors ...
Bacteria produce a wide variety of exoproducts that favourably modify their environment and increase...
Many organisms—notably microbes—are embedded within complex communities where cooperative behaviors ...
This is the final version of the article. Available from Wiley via the DOI in this record.Many organ...
Bacteria secrete a large variety of beneficial metabolites into the environment, which can be shared...
Bacteria secrete a large variety of beneficial metabolites into the environment, which can be shared...
Bacteria secrete a large variety of beneficial metabolites into the environment, which can be shared...
Iron is an essential trace element for most organisms. A common way for bacteria to acquire this nut...
Iron is an essential trace element for most organisms. A common way for bacteria to acquire this nut...