Jul 2026· Journal of Experimental Agriculture International· Vol 48, pp. 39-52· 0 citations
Abstract
Plant hormones orchestrate the defensive capacity of crops against an expanding array of biotic and abiotic constraints that threaten global agricultural output. Among these regulators, salicylic acid and jasmonic acid form the backbone of inducible immunity, directing distinct yet interconnected transcriptional programmes that determine whether a plant survives attack by biotrophic pathogens, necrotrophic fungi, phloem-feeding insects or chewing herbivores. This review synthesises current knowledge on the biosynthesis, perception and signal transduction of salicylate and jasmonate, and examines the molecular basis of their crosstalk, which ranges from mutual antagonism to context-dependent synergy. Particular attention is given to the agronomic exploitation of these pathways through exogenous hormone application, seed priming, defence elicitors and induced systemic resistance, alongside the physiological costs that accompany such interventions, most notably the growth-defence trade-off associated with sustained jasmonate signalling. The review situates this mechanistic understanding within the pressing context of global food security, considering how pest pressure, plant disease and climate-driven abiotic stress converge to erode crop yields, and how hormone-informed breeding and crop management strategies might mitigate these losses. Persistent knowledge gaps are identified concerning field-level translation, crop-specific pathway architecture in monocots relative to the Arabidopsis model, and the reconciliation of defence induction with yield stability. The review concludes that a nuanced, crop-specific understanding of salicylate-jasmonate signalling, rather than a uniform strategy transplanted from model species, will be indispensable for designing resilient cropping systems capable of sustaining production under mounting biotic and climatic pressure.
It is argued that the plant holobiont the plant together with its rhizosphere, phyllosphere, phyllosphere and endophytic microbiota offers a more complete account of herbivore resistance than plant-centred models alone, but that the field's central problem is no longer discovering mechanisms; it is explaining why those...
K. Krishnan, Subhashini Selvaraj, Aravind Krishnamoorthy et al.· Plant Biosystems· 0 citations
It is proposed that microbiome-driven hormonal regulation represents a key mechanism for plant adaptation to environmental stress and that its integration can offer promising opportunities to enhance resilience, reduce agrochemical dependence, and improve agricultural sustainability under climate change.
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This review critically synthesizes the ‘landscape’ of endophyte-mediated pest resistance through direct antagonism by insecticidal metabolites and enzymes, immune priming, signaling crosstalk, volatile organic compound-mediated indirect defense, and microbiome restructuring to provide a translational framework for movi...
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The plant microbiome, which encompasses diverse communities of bacteria, fungi, archaea, viruses and oomycetes that colonise plant surfaces and internal tissues, is a critical determinant of plant health, resilience and productivity. This review systematically examines how plant-associated microbial communities modulat...
A. Daunde, S. Yogendra, V. Gholve et al.· Plant Science Today· 0 citations