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阿霍氏菌卵孢子的活力和成熟。

Viability and maturation of Aphanomyces cochlioides oospores.

机构信息

University of Minnesota, Northwest Research and Outreach Center, Crookston 56716 and Department of Plant Pathology, St. Paul, Minnesota 55108.

出版信息

Mycologia. 2003 Mar-Apr;95(2):321-6.

Abstract

Plasmolysis, tetrazolium bromide staining and microscopic appearance were tested for their usefulness in determining viability of oospores of Aphanomyces cochlioides. For comparison, three lethal treatments were employed to contrast the reaction of dead oospores and untreated, presumably viable oospores. Few oospores stained with tetrazolium bromide, even though plasmolysis and microscopic appearance indicated that 85% were viable. Cytoplasm of viable oospores was densely organized and uniformly granular (DOUG), whereas cytoplasm of oospores exposed to lethal treatments was loosely organized and non-uniformly granular (LONG). Dose-response bioassay experiments were conducted with untreated oospores of varying inoculum densities or with mixtures of untreated DOUG and heat-treated LONG oospores in varying proportions. The number of DOUG oospores was correlated (R(2) = 0.62, P < 0.001) with severity of damping-off of sugar beet seedlings caused by A. cochlioides. Thus, the granular appearance of cytoplasm offered a fast, easy and reliable indicator of viability of A. cochlioides oospores. Tests with newly formed oospores/oogonia showed that >80% harvested at 3-4 d after inoculation of hypocotyls stained with tetrazolium, but by 8-9 d <10% stained, apparently because of declining permeability of the spore wall to tetrazolium as oospores matured.

摘要

质壁分离、四唑溴盐染色和显微镜观察被用于测定旋孢腔菌卵孢子的活力。为了进行比较,采用了三种致死处理来对比死亡卵孢子和未经处理的、可能存活的卵孢子的反应。尽管质壁分离和显微镜观察表明 85%的卵孢子是存活的,但只有少数卵孢子被四唑溴盐染色。存活卵孢子的细胞质组织致密且均匀颗粒状(DOUG),而暴露于致死处理的卵孢子的细胞质组织疏松且颗粒状不均匀(LONG)。用不同接种密度的未经处理的卵孢子或未经处理的 DOUG 和经热处理的 LONG 卵孢子的混合物以不同比例进行剂量反应生物测定实验。DOUG 卵孢子的数量与旋孢腔菌引起的甜菜幼苗猝倒的严重程度呈相关性(R(2) = 0.62,P < 0.001)。因此,细胞质的颗粒状外观提供了一种快速、简便和可靠的旋孢腔菌卵孢子活力的指标。对新形成的卵孢子/卵母细胞的测试表明,在接种下胚轴后 3-4 天收获的 >80%的卵孢子用四唑溴盐染色,但到 8-9 天时,只有不到 10%的卵孢子染色,这显然是由于卵孢子成熟时孢子壁对四唑溴盐的通透性下降所致。

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