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Colonization of Corn Zea mays by the Entomopathogenic Fungus Beauveria bassiana

机译:昆虫致病性球孢白僵菌对玉米玉米和玉米的定殖

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摘要

Light and electron microscopy were used to describe the mode of penetration by the entomopathogenic fungus Beauveria bassiana (Balsamo) Vuillemin into corn, Zea mays L. After inoculation with a foliar spray of conidia, germinating hyphae grew randomly across the leaf surface. Often a germ tube formed from a conidium and elongated only a short distance before terminating its growth. Not all developing hyphae on the leaf surface penetrated the cuticle. However, when penetration did occur, the penetration site(s) was randomly located, indicating that B. bassiana does not require specific topographic signals at an appropriate entry site as do some phytopathogenic fungi. Long hyphal structures were observed to follow the leaf apoplast in any direction from the point of penetration. A few hyphae were observed within xylem elements. Because vascular bundles are interconnected throughout the corn plant, this may explain how B. bassiana travels within the plant and ultimately provides overall insecticidal protection. Virulency bioassays demonstrate that B. bassiana does not lose virulence toward the European corn borer, Ostrinia nubilalis (Hübner), once it colonizes corn. This endophytic relationship between an entomopathogenic fungus and a plant suggests possibilities for biological control, including the use of indigenous fungal inocula as insecticides.
机译:用光镜和电子显微镜描述昆虫病原真菌球孢白僵菌(Balveria bassiana(Balsamo)Vuillemin)进入玉米Zea mays L的渗透模式。用分生孢子叶喷雾接种后,发芽的菌丝在叶表面随机生长。胚管通常由分生孢子形成,并在终止其生长之前仅拉长一小段距离。并非所有在叶片表面上生长的菌丝都穿透表皮。但是,当确实发生渗透时,渗透位点是随机定位的,这表明球孢杆菌不需要像某些植物病原真菌那样在适当的进入位点需要特定的地形信号。观察到长菌丝结构从穿透点的任何方向跟随叶片的质外体。在木质部元素中观察到一些菌丝。由于维管束在整个玉米植株中都是相互连接的,因此这可能解释了球孢杆菌如何在植物中传播,并最终提供了全面的杀虫保护。毒力生物测定法表明,球孢杆菌一旦在玉米中定殖,就不会丧失对欧洲玉米r的危害,即玉米Ost(Hubbner)。昆虫病原真菌和植物之间的这种内生关系表明了进行生物防治的可能性,包括使用本地真菌接种物作为杀虫剂。

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