Literature DB >> 32875364

Indole-3-acetic acid biosynthesis and its regulation in plant-associated bacteria.

Daiana R Duca1, Bernard R Glick2.   

Abstract

Numerous studies have reported the stimulation of plant growth following inoculation with an IAA-producing PGPB. However, the specific mode of IAA production by the PGPB is rarely elucidated. In part, this is due to the overwhelming complexity of IAA biosynthesis and regulation. The promiscuity of the enzymes implicated in IAA biosynthesis adds another element of complexity when attempting to decipher their role in IAA biosynthesis. To date, the majority of research on IAA biosynthesis describes three separate pathways classified in terms of their intermediates-indole acetonitrile (IAN), indole acetamide (IAM), and indole pyruvic acid (IPA). Each of these pathways is mediated by a set of enzymes, many of which are traditionally assumed to exist for that specific catalytic role. This lends the possibility of missing other, novel, enzymes that may also incidentally serve that function. Some of these pathways are constitutively expressed, while others are inducible. Some enzymes involved in IAA biosynthesis are known to be regulated by IAA or by IAA precursors, as well as by a multitude of environmental cues. This review aims to provide an update to our current understanding of the biosynthesis and regulation of IAA in bacteria. KEY POINTS: • IAA produced by PGPB improves bacterial stress tolerance and promotes plant growth. • Bacterial IAA biosynthesis is convoluted; multiple interdependent pathways. • Biosynthesis of IAA is regulated by IAA, IAA-precursors, and environmental factors.

Entities:  

Keywords:  IAA; Indole-3-acetic acid; PGPB; Plant growth-promoting bacteria

Mesh:

Substances:

Year:  2020        PMID: 32875364     DOI: 10.1007/s00253-020-10869-5

Source DB:  PubMed          Journal:  Appl Microbiol Biotechnol        ISSN: 0175-7598            Impact factor:   4.813


  10 in total

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Authors:  Maura Santos Reis de Andrade da Silva; Orlando Carlos Huertas Tavares; Isabelly Santos Rosado de Oliveira; Camilla Santos Reis de Andrade da Silva; Carolina Santos Reis de Andrade da Silva; Márcia Soares Vidal; Vera Lúcia Divan Baldani; Ederson da Conceição Jesus
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4.  Rossellomorea arthrocnemi sp. nov., a novel plant growth-promoting bacterium used in heavy metal polluted soils as a phytoremediation tool.

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Review 10.  Microbial Metabolite Regulation of Epithelial Cell-Cell Interactions and Barrier Function.

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  10 in total

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