4.7 Review

Molecular mechanisms underlying multi-level defense responses of horticultural crops to fungal pathogens

Journal

HORTICULTURE RESEARCH
Volume 9, Issue -, Pages -

Publisher

OXFORD UNIV PRESS INC
DOI: 10.1093/hr/uhac066

Keywords

-

Funding

  1. National Natural Science Foundation of China [31930086, 32072637]
  2. Natural Science Foundation of Beijing Municipality [6212025]

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The horticultural industry plays a significant role in improving human diet and agricultural economy. However, fungal diseases pose a major challenge, causing economic losses and food waste. Understanding horticultural plant defense responses and fungal pathogenicity is crucial for developing regulatory strategies to enhance plant resistance. Recent advancements in multi-omics analyses, gene editing, sequencing, and data mining have contributed to the identification and functional determination of defense molecules and their signaling pathways. This review summarizes the research progress on defense responses of horticultural crops to fungal pathogens and discusses novel regulatory strategies, as well as future research directions.
The horticultural industry helps to enrich and improve the human diet while contributing to growth of the agricultural economy. However, fungal diseases of horticultural crops frequently occur during pre- and postharvest periods, reducing yields and crop quality and causing huge economic losses and wasted food. Outcomes of fungal diseases depend on both horticultural plant defense responses and fungal pathogenicity. Plant defense responses are highly sophisticated and are generally divided into preformed and induced defense responses. Preformed defense responses include both physical barriers and phytochemicals, which are the first line of protection. Induced defense responses, which include innate immunity (pattern-triggered immunity and effector-triggered immunity), local defense responses, and systemic defense signaling, are triggered to counterstrike fungal pathogens. Therefore, to develop regulatory strategies for horticultural plant resistance, a comprehensive understanding of defense responses and their underlying mechanisms is critical. Recently, integrated multi-omics analyses, CRISPR-Cas9-based gene editing, high-throughput sequencing, and data mining have greatly contributed to identification and functional determination of novel phytochemicals, regulatory factors, and signaling molecules and their signaling pathways in plant resistance. In this review, research progress on defense responses of horticultural crops to fungal pathogens and novel regulatory strategies to regulate induction of plant resistance are summarized, and then the problems, challenges, and future research directions are examined.

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