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A dual-functional laccase gene CsLAC17 from tea plant: Insights from VIGS and heterologous expression into lignin-mediated resistance and direct antifungal activity

2026-03-25

Abstract excerpt

<title>Abstract</title> <p> Tea ( <italic>Camellia sinensis</italic> (L.) O. Kuntze) is a globally significant beverage crop, yet its production is frequently compromised by various fungal diseases, therefore, enhancing its natural disease resistance is of great importance. Laccases (LACs) are key enzymes in plant defense responses. Here, we identified and functionally characterized a tea laccase gene, <itali...

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Literature Corpus work
7f852d7c-7ef5-599c-800a-96c59b5dbb6e
DOI
10.21203/rs.3.rs-9122877/v1
Open publication

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A dual-functional laccase gene CsLAC17 from tea plant: Insights from VIGS and heterologous expression into lignin-mediated resistance and direct antifungal activityDOI 10.21203/rs.3.rs-9122877/v1
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