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- W2067863586 abstract "Verticillium wilt-resistant cv. Seabrook Sea Island and -susceptible cv. Rowden cottons were inoculated in the hypocotyl at the ten leaf stage with conidia of Verticillium dahliae. Stem xylem was observed from 10 to 96 h after inoculation for Verticillium hyphal growth and sporulation, vascular occlusion and terpenoid aldehyde synthesis. Rapid occlusion of xylem vessels by tyloses followed by synthesis of fungitoxic terpenoid aldehydes is apparently required for the resistance of Seabrook Sea Island to Verticillium wilt. Occlusion of infected vessels throughout the stem of Seabrook Sea Island by 48 h after inoculation appeared to prevent the systemic distribution of most, if not all, secondary conidia released at the primary infection sites between 24 and 48 h after inoculation. The fungitoxic terpenoid aldehydes, predominantly hemigossypol and methoxyhemigossypol, then accumulated within the localized primary infection sites. Once V. dahliae was effectively localized, formation of new, non-infected xylem tissue apparently enabled Seabrook Sea Island to compensate for vessels occluded by responses to the primary infections. Occlusions of infected vessels in the stem of Rowden were delayed. This delay allowed secondary conidia to escape containment at primary infection sites and thereby escape exposure to the localized accumulation of terpenoid aldehydes. Because of the extensive systemic distribution of secondary conidia in Rowden, infection of newly formed xylem vessels generally kept pace with their formation, and severe wilt developed." @default.
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- W2067863586 date "1978-01-01" @default.
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- W2067863586 title "Contributions of tyloses and terpenoid aldehyde phytoalexins to Verticillium wilt resistance in cotton" @default.
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- W2067863586 doi "https://doi.org/10.1016/0048-4059(78)90013-9" @default.
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