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Evidence for Exaptation of the Marchantia polymorpha M20D Peptidase MpILR1 into the Tracheophyte Auxin Regulatory Pathway
- Source :
- Plant Physiology. 177:1595-1604
- Publication Year :
- 2018
- Publisher :
- Oxford University Press (OUP), 2018.
-
Abstract
- Auxin homeostasis is tightly regulated by several mechanisms, including conjugation of the hormone to specific moieties, such as amino acids or sugar. The inactive phytohormone conjugate is stored in large pools in plants and hydrolyzed to regain full activity. Many conjugate hydrolases (M20D metallopeptidases) have been identified and characterized throughout the plant kingdom. We have traced this regulatory gene family back to liverwort (Marchantia polymorpha), a member of the most ancient extant land plant lineage, which emerged approximately 475 million years ago. We have isolated and characterized a single hydrolase homologue, dubbed M. polymorpha IAA-Leucine Resistant1 (MpILR1), from liverwort. MpILR1 can hydrolyze two auxin (indole acetic acid [IAA]) substrates (IAA-Leucine and IPA-Alanine) at very low levels of activity, but it cannot hydrolyze the two native auxin conjugates of liverwort (IAA-Glycine and IAA-Valine). We conclude from these results that liverwort likely does not employ active auxin conjugate hydrolysis as a regulatory mechanism and that conjugate homeostasis likely takes place in liverwort by passive background degradation. Furthermore, we present evidence that MpILR1 was probably exapted by tracheophytes over evolutionary time into the auxin regulatory pathway.
- Subjects :
- 0301 basic medicine
chemistry.chemical_classification
Auxin homeostasis
biology
Physiology
fungi
food and beverages
myr
Plant Science
biology.organism_classification
Amino acid
03 medical and health sciences
Marchantia polymorpha
030104 developmental biology
chemistry
Biochemistry
Auxin
Hydrolase
Genetics
heterocyclic compounds
Regulatory Pathway
Regulator gene
Subjects
Details
- ISSN :
- 15322548 and 00320889
- Volume :
- 177
- Database :
- OpenAIRE
- Journal :
- Plant Physiology
- Accession number :
- edsair.doi...........d703517bf0f065fb7b03ac8b888ec159