NRC Immune receptor networks show diversified hierarchical genetic architecture across plant lineages

Author:

Goh Foong-Jing123ORCID,Huang Ching-Yi1ORCID,Derevnina Lida4ORCID,Wu Chih-Hang125ORCID

Affiliation:

1. Institute of Plant and Microbial Biology, Academia Sinica , Taipei 115201 , Taiwan

2. Molecular and Biological Agricultural Sciences Program, Taiwan International Graduate Program, National Chung-Hsing University and Academia Sinica , Taipei 115201 , Taiwan

3. Graduate Institute of Biotechnology, National Chung-Hsing University , Taichung 402202 , Taiwan

4. Crop Science Centre, Department of Plant Science, University of Cambridge , Cambridge CB3 0LE , UK

5. Biotechnology Center, National Chung-Hsing University , Taichung 402202 , Taiwan

Abstract

Abstract Plants' complex immune systems include nucleotide-binding domain and leucine-rich repeat-containing (NLR) proteins, which help recognize invading pathogens. In solanaceous plants, the NRC (NLR required for cell death) family includes helper NLRs that form a complex genetic network with multiple sensor NLRs to provide resistance against pathogens. However, the evolution and function of NRC networks outside solanaceous plants are currently unclear. Here, we conducted phylogenomic and macroevolutionary analyses comparing NLRs identified from different asterid lineages and found that NRC networks expanded significantly in most lamiids but not in Ericales and campanulids. Using transient expression assays in Nicotiana benthamiana, we showed that NRC networks are simple in Ericales and campanulids, but have high complexity in lamiids. Phylogenetic analyses grouped the NRC helper NLRs into three NRC0 subclades that are conserved, and several family-specific NRC subclades of lamiids that show signatures of diversifying selection. Functional analyses revealed that members of the NRC0 subclades are partially interchangeable, whereas family-specific NRC members in lamiids lack interchangeability. Our findings highlight the distinctive evolutionary patterns of the NRC networks in asterids and provide potential insights into transferring disease resistance across plant lineages.

Funder

Institute of Plant and Microbial Biology, Academia Sinica

National Science and Technology Council, Taiwan

National Institute for Agricultural Botany

British Society of Plant Pathology

Gatsby Charitable Foundation

Royal Society

Publisher

Oxford University Press (OUP)

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