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Martinez-Anaya, C.

Publications and source records attributed to Martinez-Anaya, C..

2 recordsLinked to original sources

The NRC0 gene cluster of sensor and helper NLR immune receptors is functionally conserved across asterid plants

NLR (nucleotide-binding domain and leucine-rich repeat-containing) proteins can form complex receptor networks to confer innate immunity. NRCs are phylogenetically related nodes that function downstream of a massively expanded network of disease resistance proteins that protect against multiple plant pathogens. Here, we used phylogenomic methods to reconstruct the macroevolution of the NRC family. One of the NRCs, we termed NRC0, is the only family member shared across asterid plants, leading us to investigate its evolutionary history and genetic organization. In several asterid species, NRC0 is genetically clustered to other NLRs that are phylogenetically related to NRC-dependent disease resistance genes. This prompted us to hypothesize that the ancestral state of the NRC network is an NLR helper-sensor gene cluster that was present early during asterid evolution. We validated this hypothesis by demonstrating that NRC0 is essential for the hypersensitive cell death induced by its genetically linked sensor NLR partners in four divergent asterid species: tomato, wild sweet potato, coffee and carrot. In addition, activation of a sensor NLR leads to high-order complex formation of its genetically linked NRC0 similar to other NRCs. Our findings map out contrasting evolutionary dynamics in the macroevolution of the NRC network over the last 125 million years from a functionally conserved NLR gene cluster to a massive genetically dispersed network. One-sentence summaryNRC0 gene cluster is functionally conserved across divergent asterid species and predates the massively expanded NRC network.

plant biology↗

Identification of Pectobacterium species isolated from the soft rot of tetecho (Neobuxbaumia tetetzo), a columnar cactus, and associated metagenomics

Neobuxbaumia tetetzo, commonly known as tetecho, is a columnar cactus endemic to Mexico. In the last 15 years, damage has been observed in young and adult plants of N. tetetzo, ranging from chlorotic spots with a wet appearance in early stages to tissue necrosis in advanced stages and finally the death of the plant; Pectobacterium brasiliense is the causal agent of the damages. Disease progression may be delayed or accelerated by the involvement of other bacteria, either pathogenic or endophytic, at the site of infection. Our goal was to confirm the presence of Pectobacterium brasiliense, in the soft rot of N. tetetzo and to determine the presence of other bacteria associated with the rot. We isolated three bacterial strains (A1, A3 and A8) from diseased tissue from three separate N. tetetzo plants, and compare them using biochemical and molecular techniques, such as whole-genome sequencing of strains A1 and A3. Phylogenetic analyzes confirmed that A1 corresponded to P. brasiliense, whereas A3 was more misimlar to P. polaris. Additionally, sequencing of 16S rRNA gene from metagenomic DNA isolated from healthy and diseased tissue of N. tetetzo indicated the presence of four operational taxonomic units (OTUs) at the order level, unique to the diseased tissue: Actinomycetales, Burkholderiales, Caulobacterales, and Sphingomonadales, with probable participation in the soft rot process.

microbiology↗