Kankanala Prasanna, Czymmek Kirk, Valent Barbara
Department of Plant Pathology, Kansas State University, Manhattan, Kansas 66506, USA.
Plant Cell. 2007 Feb;19(2):706-24. doi: 10.1105/tpc.106.046300. Epub 2007 Feb 23.
Rice blast disease is caused by the hemibiotrophic fungus Magnaporthe oryzae, which invades living plant cells using intracellular invasive hyphae (IH) that grow from one cell to the next. The cellular and molecular processes by which this occurs are not understood. We applied live-cell imaging to characterize the spatial and temporal development of IH and plant responses inside successively invaded rice (Oryza sativa) cells. Loading experiments with the endocytotic tracker FM4-64 showed dynamic plant membranes around IH. IH were sealed in a plant membrane, termed the extra-invasive hyphal membrane (EIHM), which showed multiple connections to peripheral rice cell membranes. The IH switched between pseudohyphal and filamentous growth. Successive cell invasions were biotrophic, although each invaded cell appeared to have lost viability when the fungus moved into adjacent cells. EIHM formed distinct membrane caps at the tips of IH that initially grew in neighboring cells. Time-lapse imaging showed IH scanning plant cell walls before crossing, and transmission electron microscopy showed IH preferentially contacting or crossing cell walls at pit fields. This and additional evidence strongly suggest that IH co-opt plasmodesmata for cell-to-cell movement. Analysis of biotrophic blast invasion will significantly contribute to our understanding of normal plant processes and allow the characterization of secreted fungal effectors that affect these processes.
稻瘟病由半活体营养型真菌稻瘟病菌引起,该病菌利用从一个细胞生长到下一个细胞的细胞内侵染菌丝(IH)侵入活的植物细胞。其发生的细胞和分子过程尚不清楚。我们应用活细胞成像技术来表征IH在相继侵染的水稻(Oryza sativa)细胞内的时空发育以及植物的反应。用内吞追踪剂FM4 - 64进行的加载实验显示IH周围有动态的植物膜。IH被包裹在一种植物膜中,称为额外侵染菌丝膜(EIHM),该膜与水稻外周细胞膜有多处连接。IH在假菌丝生长和丝状生长之间切换。连续的细胞侵染是活体营养型的,尽管当真菌进入相邻细胞时,每个被侵染的细胞似乎都失去了活力。EIHM在最初生长于相邻细胞的IH顶端形成独特的膜帽。延时成像显示IH在穿过之前扫描植物细胞壁,透射电子显微镜显示IH优先在纹孔场处接触或穿过细胞壁。这些以及其他证据强烈表明,IH利用胞间连丝进行细胞间移动。对活体营养型稻瘟病菌侵染的分析将极大地有助于我们理解正常的植物过程,并有助于鉴定影响这些过程的真菌分泌效应子。