Indole-3-acetic acid in microbial and microorganism-plant signaling
Индол-3-уксусная кислота в микробной и межорганизменной сигнализации между микроорганизмами и растениями
2007-05-18
SCID: 54.1/2hk8krw5
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bacterial IAA biosynthesisbacterial signalingindole-3-acetic acidmicroorganism-plant interactionsplant colonization
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Abstract (AI)
Diverse bacterial species possess the ability to produce the auxin phytohormone indole-3-acetic acid (IAA). Different biosynthesis pathways have been identified and redundancy for IAA biosynthesis is widespread among plant-associated bacteria. Interactions between IAA-producing bacteria and plants lead to diverse outcomes on the plant side, varying from pathogenesis to phyto-stimulation. Reviewing the role of bacterial IAA in different microorganism-plant interactions highlights the fact that bacteria use this phytohormone to interact with plants as part of their colonization strategy, including phyto-stimulation and circumvention of basal plant defense mechanisms. Moreover, several recent reports indicate that IAA can also be a signaling molecule in bacteria and therefore can have a direct effect on bacterial physiology. This review discusses past and recent data, and emerging views on IAA, a well-known phytohormone, as a microbial metabolic and signaling molecule.
Key Findings
1
Bacteria use IAA during plant colonization, including to promote plant stimulation and circumvent basal plant defense mechanisms.
2
Bacterial IAA production can drive varied plant outcomes, ranging from pathogenicity to growth stimulation.
3
Diverse bacterial species produce the plant hormone indole-3-acetic acid (IAA) through multiple, often redundant biosynthetic pathways.
4
IAA should be viewed not only as a plant hormone but also as a microbial metabolic and signaling molecule in microorganism–plant interactions.
5
Recent evidence indicates that IAA also functions as a bacterial signaling molecule with direct effects on bacterial physiology.
Research Object
Indole-3-acetic acid (IAA) in microbial and microorganism–plant systems
Research Subject
The roles and signaling functions of bacterial IAA in microbial metabolism, bacterial physiology, plant colonization, phyto-stimulation, pathogenesis, and modulation of basal plant defenses
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2007-05-18
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