Mechanisms of Resistance to Spot Blotch in Yunnan Iron Shell Wheat Based on Metabolome and Transcriptomics

International Journal of Molecular Sciences
2022.0

Abstract

Spot blotch (SB) is a fungal disease that threatens wheat yield and quality. Presently, the molecular mechanism against SB is unclear. In this study, the resistant variety Zhenkang iron shell wheat (Yunmai 0030) and susceptible variety Lincang iron shell wheat (Yunmai 0608) were selected by identifying SB of Yunnan iron shell wheat. The metabolome and transcriptome of leaves of two varieties at different positions were detected using the systemic acquired resistance theory to investigate the molecular and physiological changes in Yunnan iron shell wheat under SB stress. We found that the genes and metabolites related to benzoxazinoid biosynthesis and arginine and proline metabolism were highly enriched after infection with leaf blight. The enriched differential metabolites mainly included phenolic acids, alkaloids, and flavonoids. We further observed that DIBOA-and DIMBOA-glucoside positively affected iron shell wheat resistance to leaf blight and proline and its derivatives were important for plant self-defense. Furthermore, we confirmed that the related metabolites in benzoxazinoid biosynthesis and arginine and proline metabolism positively affected Triticum aestivum ssp. resistance to SB. This study provides new insights into the dynamic physiological changes of wheat in response to SB, helps us better understand the mechanism of resistance to SB, and contributes to the breeding and utilization of resistant varieties. © 2022 by the authors. Licensee MDPI, Basel, Switzerland.

Knowledge Graph

Similar Paper

Mechanisms of Resistance to Spot Blotch in Yunnan Iron Shell Wheat Based on Metabolome and Transcriptomics
International Journal of Molecular Sciences 2022.0
Metabonomic Analysis of Iron Shell Wheat (Triticum aestivum ssp. yunnanense King) Reveals Mechanisms of Resistance against Powdery Mildew
Russian Journal of Plant Physiology 2023.0
Resistance associated metabolite profiling of Aspergillus leaf spot in cotton through non-targeted metabolomics
PLOS ONE 2020.0
Metabolome profile variations in common bean (Phaseolus vulgaris L.) resistant and susceptible genotypes incited by rust (Uromyces appendiculatus)
Frontiers in Genetics 2023.0
Metabolomic profiling of wheat genotypes resistant and susceptible to root-lesion nematode Pratylenchus thornei
Plant Molecular Biology 2021.0
Comparative transcriptome and metabolome analyses of cherry leaves spot disease caused by Alternaria alternata
Frontiers in Plant Science 2023.0
Comparative transcriptome analysis of two contrasting resistant and susceptible Aegilops tauschii accessions to wheat leaf rust (Puccinia triticina) using RNA-sequencing
Scientific Reports 2022.0
A Metabolic Profiling Strategy for the Dissection of Plant Defense against Fungal Pathogens
PLoS ONE 2014.0
Combined Transcriptome and Metabolome Analysis Reveals Adaptive Defense Responses to DON Induction in Potato
International Journal of Molecular Sciences 2023.0
Metabolomic Characterisation of Discriminatory Metabolites Involved in Halo Blight Disease in Oat Cultivars Caused by Pseudomonas syringae pv. coronafaciens
Metabolites 2022.0