Skip to content
#gene editing Review Open access

Precision Engineering of Evolution-Resilient Rice against Bacterial Blight.

Sep 2026 · Plant Communications · pp. 102097 · 0 citations
Medicine

Abstract

The persistent conflict between rice and Xanthomonas oryzae pv. oryzae (Xoo), the causal agent of bacterial blight, exemplifies a dynamic genetic arms race in agriculture. The cyclical deployment and erosion of major resistance (R) genes highlight the high adaptive potential of Xoo and the need for strategies that are durable rather than absolute. This review synthesizes a paradigm shift from reactive, single R-gene deployment toward proactive engineering of evolution-resilient resistance. We explore the molecular-genetic basis of Xoo adaptability, including TAL effector diversification, non-TAL virulence functions, genome variation, and immune suppression mechanisms. In response, we propose a framework for durable disease management with three connected components: precision disarmament through editing of susceptibility-gene effector-binding elements and executor/decoy designs; smart induction through targeted delivery and immune priming; and ecological fortification through protective microbiomes. We also discuss the limits, trade-offs, and field-validation requirements of these approaches. Integrating frontier technologies with evolutionary genetics, predictive genomics, and pathogen population dynamics can help develop rice varieties and deployment systems that are more difficult for Xoo populations to overcome.

Read PDF

Similar papers

#gene editing Review Open access Sep 2026

Molecular Bases and Genetic Design of Rice Disease Resistance for Optimized Yield and Sustainable Agriculture

ABSTRACT Rice diseases continue to undermine yield stability and threaten the sustainability of rice production. The central challenge is therefore not simply to maximize immune activation, but to identify genetic interventions that remain effective across diverse pathogen races and environmental conditions without imp...

Xin-Yue Hou, Yuan-Jiang Cui, Chao-Yang Ding et al. · 0 citations
Aug 2026

Molecular Characterization of Plant Pathogens Affecting Major Agricultural Crops

The global agricultural sector faces significant yield losses due to the emergence and rapid evolution of plant pathogens, including fungi, bacteria, viruses, and oomycetes. Conventional diagnostic methods, while foundational, often lack the sensitivity and speed required for early detection and strain-level identifica...

Research Author · 0 citations
Review Open access Aug 2026

BioCNT-TLS engineered systemic mobile resistome for sustainable crop protection

The global agricultural sector faces an existential threat from viral quasispecies that bypass traditional resistance through high-frequency mutation and rapid systemic colonization. Conventional strategies, including chemical pesticides and transgenic modifications, are increasingly constrained by environmental toxici...

Wen-Bo Li, T. Farooq, M. D. Hussain et al. · 0 citations
Review Open access Sep 2026

Unravelling the Genetic Basis of Insect Resistance in Maize: Progress and Future Challenges

Maize, the queen of cereals, is generally affected by several insect pests throughout its lifecycle and by post-harvest pests, which affects yield and grain quality, resulting in heavy reliance on chemical insecticides. Although host-plant resistance is environmentally friendly, its polygenic inheritance, genotype-by-e...

Sunandan Swain, Rohit, Ankushpreet Singh et al. · 0 citations
#gene editing Review Open access Aug 2026

Genomics-assisted Improvement of Resistance to Insect Pests, Diseases and Nematodes in Tomato: A Critical Appraisal of Discovery, Durability and Deployment

Whether, and where, genomic technologies have altered breeding outcomes rather than merely accelerating gene discovery is examined, and the available evidence indicates that genomic resources have substantially improved the resolution of resistance discovery and the precision of marker-assisted introgression, but have...

Vishal Singh, Mitali Tiwari, Diksha Kushwaha et al. · 0 citations
Review Open access 2026

Deciphering the Molecular Interplay Between Wheat and Puccinia striiformis f. sp. Tritici: Mechanisms of Interaction and Resistance Strategies

Current knowledge of the molecular mechanisms underlying wheat-Pst interactions are synthesized, key advances in understanding their reciprocal communication are highlighted, and emerging directions for developing durable resistance are discussed.

Jicheng Qu, Fengchang Ye, Baishan Liu et al. · 0 citations

Related blog posts

We use cookies to run the site and, with your consent, for analytics and to show ads. See our Cookie Policy.