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化学信号和物理信号的协同作用触发了小麦秆锈病菌(Puccinia graminis f. sp. tritici)吸器母细胞的体外分化。

In vitro differentiation of haustorial mother cells of the wheat stem rust fungus, Puccinia graminis f. sp. tritici, triggered by the synergistic action of chemical and physical signals.

作者信息

Wiethölter Nicola, Horn Susanne, Reisige Katrin, Beike Ursula, Moerschbacher Bruno M

机构信息

Department of Plant Biochemistry and Biotechnology, Westfälische Wilhelms-Universität Münster, Hindenburgplatz 55, 48143 Münster, Germany.

出版信息

Fungal Genet Biol. 2003 Apr;38(3):320-6. doi: 10.1016/s1087-1845(02)00539-x.

Abstract

Biotrophic plant pathogenic fungi often develop a sophisticated series of infection structures for non-destructive host tissue penetration. In vitro, early infection structures of rust fungi-germ tube, appressorium, substomatal vesicle, infection hyphae-can easily be induced, but in vitro differentiation rates of late infection structures-haustorial mother cells (hmc), haustoria-are low at best. Under appropriate conditions (humid atmosphere), a combination of physical (mild heat shock) and chemical signals (trans-2-hexen-1-ol) induced the in vitro differentiation of hmc in the wheat stem rust fungus, Puccinia graminis f. sp. tritici. Around two thirds of the in vitro differentiated germlings developed up to three hmc which were cytologically identical to hmc formed in planta. Efficient in vitro differentiation of hmc will allow us to analyse in molecular detail the processes involved in the induction and differentiation of this critically important developmental stage of the economically important plant pathogenic rust fungi.

摘要

活体营养型植物病原真菌通常会形成一系列复杂的侵染结构,以便在不破坏宿主组织的情况下穿透宿主。在体外,锈菌的早期侵染结构——芽管、附着胞、气孔下泡、侵染菌丝——很容易诱导形成,但晚期侵染结构——吸器母细胞(hmc)、吸器——的体外分化率最高也很低。在适当条件下(潮湿的大气环境),物理信号(温和热激)和化学信号(反-2-己烯-1-醇)的组合可诱导小麦条锈菌(Puccinia graminis f. sp. tritici)体外吸器母细胞的分化。约三分之二体外分化的芽管可发育出多达三个吸器母细胞,这些吸器母细胞在细胞学上与在植物体内形成的吸器母细胞相同。吸器母细胞的高效体外分化将使我们能够从分子细节上分析经济上重要的植物病原锈菌这一至关重要的发育阶段的诱导和分化过程。

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