道格拉斯冷杉根感染硫松菌的超微结构研究及宿主致病相关蛋白的免疫定位

M.A. Islam, R.N. Sturrock, T.A. Holmes, A.K.M. Ekramoddoullah
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引用次数: 12

摘要

道格拉斯冷杉(DF)根系间相互作用;采用扫描电镜、透射电镜和免疫金标记技术对蒙氏伪杉树(pseudosuga menziesii)幼苗和层状根腐菌Phellinus sulurascens进行了研究。扫描电镜结果显示,在接种后2 d内,硫葡萄菌丝在根表面定植,并通过附着胞的发育向根表皮组织渗透。在早期定植过程中,检测到细胞内和细胞间的真菌菌丝。它们有效地分解宿主的细胞成分,包括细胞壁和细胞膜。P. sulurascens菌丝通过形成狭窄的菌丝尖端和多种吸器样结构穿透宿主细胞壁,这些结构可能在致病性相互作用中起重要作用。Ovomucoid-WGA(小麦胚芽凝集素)偶联金颗粒(10 nm)证实了P. sulurascens菌丝的存在和位置,而4个与蛋白a -金配合物偶联的特异性宿主致病相关(PR)蛋白抗体(20 nm)显示了这些PR蛋白在感染根组织中的定位和丰度。在宿主细胞膜中发现了一种特异的异染色质样蛋白和一种内质酶样蛋白。DF-PR10蛋白定位于宿主细胞的细胞壁和细胞质中,而抗菌肽则出现在宿主细胞壁中。一些PR蛋白与P. sulurascens菌丝密切相关,表明它们在DF根中具有潜在的抗真菌活性。
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Ultrastructural studies of Phellinus sulphurascens infection of Douglas-fir roots and immunolocalization of host pathogenesis-related proteins

Interactions between roots of Douglas-fir (DF; Pseudotsuga menziesii) seedlings and the laminated root rot fungus Phellinus sulphurascens were investigated using scanning and transmission electron microscopy and immunogold labelling techniques. Scanning electron micrographs revealed that P. sulphurascens hyphae colonize root surfaces and initiate the penetration of root epidermal tissues by developing appressoria within 2 d postinoculation (dpi). During early colonization, intra- and intercellular fungal hyphae were detected. They efficiently disintegrate cellular components of the host including cell walls and membranes. P. sulphurascens hyphae penetrate host cell walls by forming narrow hyphal tips and a variety of haustoria-like structures which may play important roles in pathogenic interactions. Ovomucoid–WGA (wheat germ agglutinin) conjugated gold particles (10 nm) confirmed the occurrence and location of P. sulphurascens hyphae, while four specific host pathogenesis-related (PR) protein antibodies conjugated with protein A–gold complex (20 nm) showed the localization and abundance of these PR proteins in infected root tissues. A thaumatin-like protein and an endochitinase-like protein were both strongly evident and localized in host cell membranes. A DF-PR10 protein was localized in the cell walls and cytoplasm of host cells while an antimicrobial peptide occurred in host cell walls. A close association of some PR proteins with P. sulphurascens hyphae suggests their potential antifungal activities in DF roots.

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