Effect of Pochonia chlamydosporia Endophytism and Meloidogyne incognita Parasitism on WRKYs and Defense Gene Expression in Tomato Roots

Author:

Rosso Laura C.1,Romano Francesca2,Pentimone Isabella1ORCID,Ciancio Aurelio1ORCID,Colagiero Mariantonietta1

Affiliation:

1. Consiglio Nazionale delle Ricerche, Istituto per la Protezione Sostenibile delle Piante, CNR, Via G. Amendola 122/D, 70126 Bari, Italy

2. Medical Genetics, Department of Precision Medicine, Università degli Studi della Campania, via Luigi De Crecchio 7, Naples 80131, Naples, Italy

Abstract

The expression of WRKY transcription factors and plant defense-related genes was studied in the roots of Apulian tomato (Solanum lycopersicum) cv Regina di Fasano (accessions MRT and PLZ) endophytically colonized by Pochonia chlamydosporia and parasitized or not by the root-knot nematode (RKN) Meloidogyne incognita. The effect on plant growth, nematode parasitism and histological aspect of the interaction were considered. The association of P. chlamydosporia with RKN-parasitized MRT plants increased the total biomass and shoot fresh weight in comparison with healthy plants and with those only parasitized by RKN, without the endophyte. However, the PLZ accession showed no significant difference in the observed biometric parameters. The number of RKN-induced galls per plant was not affected by endophytism eight days after inoculation. No histological changes were observed in the nematode feeding sites in the presence of the fungus. Gene expression analysis showed an accession-specific response to P. chlamydosporia with differential activation of WRKY-related genes. No significant change was found for WRKY76 expression in nematode-parasitized plants compared with control roots, confirming cultivar susceptibility. Data indicate genotype-specific responses of the WRKY genes to parasitism examined in roots with nematodes and/or endophytic P. chlamydosporia. At 25 days post-inoculation with P. chlamydosporia, no significant difference was observed in the expression of defense-related genes in both accessions, suggesting that salicylic acid (SA) (PAL and PR1) and jasmonate (JA) related genes (Pin II) are not active during endophytism.

Funder

EU Tempus

Publisher

MDPI AG

Subject

Plant Science,Ecology,Ecology, Evolution, Behavior and Systematics

Reference38 articles.

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3. Endophytic colonization of barley (Hordeum vulgare) roots by the nematophagous fungus Pochonia chlamydosporia reveals plant growth promotion and a general defense and stress transcriptomic response;Larriba;J. Plant Res.,2015

4. Transcriptomic responses to water deficit and nematode infection in mycorrhizal tomato roots;Balestrini;Front. Microbiol.,2019

5. Biocontrol of Pythium aphanidermatum on cucumber by microbial isolates from Mexican soils;Lumsden;Phytopathology,1982

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