Sep 2026· Plant, Cell and Environment· 0 citations· 56 references
Medicine
TL;DR
It is demonstrated that a constitutive immune state at the transcriptional level, rather than the overall magnitude of induced responses, underlies effective early resistance to leaf rust, offering valuable target candidates for resistance breeding.
Abstract
Wheat leaf rust, caused by Puccinia triticina, poses a continuous threat to global food security. To dissect durable resistance mechanisms, we compared early infection responses between the near-immune cultivar 'Yunmai 34' (YM) and the susceptible 'Chinese Spring' (CS). While CS exhibited massive transcriptional reprogramming upon infection, YM displayed a relatively narrow scale-changes yet could arrested the pathogen prior to haustorium formation. This resistance might be associated with a constitutive immune state, evidenced by elevated basal expression of pathogenesis-related (PR) genes and defence regulators in the absence of pathogen challenge. Comparatively, CS mobilised a massive differentially expressed genes including those involved in hormone pathways and immune receptors yet insufficient to suppress the pathogen infection. Integrated analysis of differential expression and co-expression networks identified two defence-associated genes encoding an LRR-domain-containing protein (TaLRRop) and an aspartyl-tRNA synthetase (TaAspRS). Functional validation confirmed both as positive regulators contributing to PR- and ROS-associated basal defence. Collectively, these findings demonstrate that a constitutive immune state at the transcriptional level, rather than the overall magnitude of induced responses, underlies effective early resistance to leaf rust, offering valuable target candidates for resistance breeding.
Wheat stripe rust, caused by the obligate biotrophic fungus
Puccinia striiformis
f. sp.
tritici
(
Pst
), poses a major threat to global wheat production. Although breeding resistant cultivars remains the most effective strategy for controlling stripe rust, resistance conferred by race-specific genes is of...
ABSTRACT Tandem kinases are emerging regulators of plant immunity, but the downstream defense programs they activate remain poorly understood. Stripe rust, caused by Puccinia striiformis f. sp. tritici (Pst), is a major constraint on global wheat production. The Yr15 resistance gene, derived from wild emmer wheat, enco...
Liubov Govta, Nikolai Govta, E. Potapenko et al.· Physiologia Plantarum : An I...· 0 citations
Wheat stripe rust, caused by Puccinia striiformis f. sp. tritici (Pst), remains a major threat to global wheat production, which necessitates a better understanding of the molecular mechanisms underlying resistance. WRKY transcription factors are pivotal regulators of plant immunity; however, their specific functions i...
Shu Deng, Jiang-Hua Chen, Tian Qiu et al.· Plant Science· 0 citations
Both shared and distinct genetic pathways underlying SCR resistance are unveiled and the value of tropical germplasm in breeding for durable resistance is underscored.
Xiuzhen Zhai, Jing-Jing Zhan, Nan Wang et al.· Plant Cell Reports· 0 citations
Findings indicate that constitutive priming and dynamic activation of defense signaling, protein turnover, and osmoprotectant accumulation underpin the enhanced resistance in Varuna_WRR against Albugo candida.
Prajjwal Rai, L. Prasad, M. Gurjar et al.· Frontiers in Plant Science· 0 citations
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