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1.
Science ; 374(6567): 625-628, 2021 Oct 29.
Article in English | MEDLINE | ID: mdl-34709882

ABSTRACT

Leghemoglobins enable the endosymbiotic fixation of molecular nitrogen (N2) in legume nodules by channeling O2 for bacterial respiration while maintaining a micro-oxic environment to protect O2-sensitive nitrogenase. We found that the NIN-like protein (NLP) transcription factors NLP2 and NIN directly activate the expression of leghemoglobins through a promoter motif, resembling a "double" version of the nitrate-responsive elements (NREs) targeted by other NLPs, that has conserved orientation and position across legumes. CRISPR knockout of the NRE-like element resulted in strongly decreased expression of the associated leghemoglobin. Our findings indicate that the origins of the NLP-leghemoglobin module for O2 buffering in nodules can be traced to an ancient pairing of NLPs with nonsymbiotic hemoglobins that function in hypoxia.


Subject(s)
Gene Expression Regulation, Plant , Leghemoglobin/genetics , Medicago truncatula/genetics , Root Nodules, Plant/metabolism , Transcription Factors/metabolism , Fabaceae/genetics , Fabaceae/metabolism , Leghemoglobin/chemistry , Medicago truncatula/metabolism , Nitrogen Fixation , Oxygen/metabolism , Plant Proteins/genetics , Plant Proteins/metabolism , Plant Root Nodulation , Promoter Regions, Genetic , Symbiosis , Transcription Factors/genetics
2.
PLoS Genet ; 14(3): e1007292, 2018 03.
Article in English | MEDLINE | ID: mdl-29565971

ABSTRACT

Tripartite integrative and conjugative elements (ICE3) are a novel form of ICE that exist as three separate DNA regions integrated within the genomes of Mesorhizobium spp. Prior to conjugative transfer the three ICE3 regions of M. ciceri WSM1271 ICEMcSym1271 combine and excise to form a single circular element. This assembly requires three coordinated recombination events involving three site-specific recombinases IntS, IntG and IntM. Here, we demonstrate that three excisionases-or recombination directionality factors-RdfS, RdfG and RdfM are required for ICE3 excision. Transcriptome sequencing revealed that expression of ICE3 transfer and conjugation genes was induced by quorum sensing. Quorum sensing activated expression of rdfS, and in turn RdfS stimulated transcription of both rdfG and rdfM. Therefore, RdfS acts as a "master controller" of ICE3 assembly and excision. The dependence of all three excisive reactions on RdfS ensures that ICE3 excision occurs via a stepwise sequence of recombination events that avoids splitting the chromosome into a non-viable configuration. These discoveries expose a surprisingly simple control system guiding molecular assembly of these novel and complex mobile genetic elements and highlight the diverse and critical functions of excisionase proteins in control of horizontal gene transfer.


Subject(s)
Mesorhizobium/genetics , Recombination, Genetic , Amino Acid Sequence , Chromosomes, Bacterial , DNA Nucleotidyltransferases/metabolism , Gene Transfer, Horizontal , Genes, Bacterial , High-Throughput Nucleotide Sequencing , Quorum Sensing , RNA, Bacterial/genetics , Real-Time Polymerase Chain Reaction , Viral Proteins/metabolism
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