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review · Plants

Biochemical Defence of Plants against Parasitic Nematodes

20249 citationsOpen accessMekelle University

Abstract

Plant parasitic nematodes (PPNs), such as <i>Meloidogyne</i> spp., <i>Heterodera</i> spp. and <i>Pratylenchus</i> spp., are obligate parasites on a wide range of crops, causing significant agricultural production losses worldwide. These PPNs mainly feed on and within roots, impairing both the below-ground and the above-ground parts, resulting in reduced plant performance. Plants have developed a multi-component defence mechanism against diverse pathogens, including PPNs. Several natural molecules, ranging from cell wall components to secondary metabolites, have been found to protect plants from PPN attack by conferring nematode-specific resistance. Recent advances in <i>omics</i> analytical tools have encouraged researchers to shed light on nematode detection and the biochemical defence mechanisms of plants during nematode infection. Here, we discuss the recent progress on revealing the nematode-associated molecular patterns (NAMPs) and their receptors in plants. The biochemical defence responses of plants, comprising cell wall reinforcement; reactive oxygen species burst; receptor-like cytoplasmic kinases; mitogen-activated protein kinases; antioxidant activities; phytohormone biosynthesis and signalling; transcription factor activation; and the production of anti-PPN phytochemicals are also described. Finally, we also examine the role of epigenetics in regulating the transcriptional response to nematode attack. Understanding the plant defence mechanism against PPN attack is of paramount importance in developing new, effective and sustainable control strategies.

Research topics

  • Nematode management and characterization studies
  • Legume Nitrogen Fixing Symbiosis
  • Plant Parasitism and Resistance

Sustainable Development Goals

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DOI: 10.3390/plants13192813

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