Jul 2026· Journal of Experimental Botany· 0 citations
Medicine
TL;DR
Recent single-cell and spatial transcriptomic studies across diverse plant-pathogen systems are summarized, highlighting how these methods contribute to a more refined understanding of cell-type-specific immune responses, intercellular communication, and spatial organization of defense responses within plant tissues.
Abstract
Plant immune responses are shaped by cellular identity and tissue context. During interactions with pathogenic microbes, different plant cell types activate distinct defense-associated transcriptional programs that are not readily resolved using whole-tissue analyses. As a result, bulk transcriptomic approaches have limited our ability to capture spatial and cellular heterogeneity during immune responses. Recent advances in single-cell RNA sequencing and spatial transcriptomics have enabled the analysis of plant immune responses at cellular resolution while preserving spatial information. Studies using these approaches have revealed heterogeneous and coordinated transcriptional responses across cell types and tissue regions during pathogen attacks. In this review, we summarize recent single-cell and spatial transcriptomic studies across diverse plant-pathogen systems, highlighting how these methods contribute to a more refined understanding of cell-type-specific immune responses, intercellular communication, and spatial organization of defense responses within plant tissues. We also discuss current technical limitations and future directions for applying spatially resolved transcriptomic approaches in plant-pathogen interaction research.
This review synthesizes recent progress across diverse plant species and tissues, showing that gene expression is not only cell-type specific but also tightly organized by position within organs and developmental niches, establishing spatial gene expression as a fundamental organizing principle of plant development and...
Yiqing Wang, Zhengzhi Tan, Nicole A Freeman et al.· Plant Communications· 0 citations
Effector-triggered immunity (ETI) is central in plant defense, but whether all cell types execute ETI similarly remains unknown. We combined chemically imposed immune activation with single-cell transcriptomics to profile ETI responses across major leaf cell types in Arabidopsis. Despite uniform ETI perception, we find...
Himanshu Chhillar, Leonardo Jo, V. Çevik et al.· Cell Host and Microbe· 0 citations
This review summarizes the technological developments in plant single‐cell omics and highlights their unique advantages for investigating nearly all stages of plant–pathogen interactions, and proposes a potential strategy for breeding crop varieties with cell‐type‐specific resistance.
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It is argued that careful experimental design, robust data integration, and a clear understanding of cell identity are essential to obtain the full potential of plant single-cell and spatial omics in basic research and crop improvement.
L. De Veylder, Maite Saura-Sánchez, B. De Rybel et al.· The Plant Cell· 0 citations
Major gaps remain, including the need for true in-situ spatial maps in intact agriculture soil systems, integration with temporal dynamics of root growth, and coupling transcriptional data with local measurements of water status, mechanical stress, gaseous diffusion, microbial assembly and nutrient gradients.
Grace Denis, Samuel Jamieson, Poonam Mehra et al.· Journal of Experimental Bota...· 0 citations
An optimized protocol for applying the Xenium in situ sequencing platform to formalin-fixed paraffin-embedded sections of plant tissues, including Medicago truncatula roots and nodules, providing a reproducible and scalable method for high-resolution spatial transcriptomics in plant tissues, establishing a robust found...
Min-Yao Jhu, Jo Heffer, Alex Deamer et al.· Methods in molecular biology· 0 citations
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