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Early Events in the Fusarium verticillioides-Maize Interaction Characterized by Using a Green Fluorescent Protein-Expressing Transgenic Isolate

机译:通过使用绿色荧光蛋白表达转基因分离株表征Fusarium v​​erticillioides-玉米相互作用的早期事件。

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摘要

The infection of maize by Fusarium verticillioides can result in highly variable disease symptoms ranging from asymptomatic plants to severe rotting and wilting. We produced F. verticillioides green fluorescent protein-expressing transgenic isolates and used them to characterize early events in the F. verticillioides-maize interaction that may affect later symptom appearance. Plants grown in F. verticillioides-infested soil were smaller and chlorotic. The fungus colonized all of the underground parts of a plant but was found primarily in lateral roots and mesocotyl tissue. In some mesocotyl cells, conidia were produced within 14 to 21 days after infection. Intercellular mycelium was detected, but additional cells were not infected until 21 days after planting. At 25 to 30 days after planting, the mesocotyl and main roots were heavily infected, and rotting developed in these tissues. Other tissues, including the adventitious roots and the stem, appeared to be healthy and contained only a small number of hyphae. These results imply that asymptomatic systemic infection is characterized by a mode of fungal development that includes infection of certain tissues, intercellular growth of a limited number of fungal hyphae, and reproduction of the fungus in a few cells without invasion of other cells. Development of visibly rotted tissue is associated with massive production of fungal mycelium and much less organized growth.
机译:玉米镰刀菌(Fusarium v​​erticillioides)对玉米的感染可导致多种疾病症状,从无症状植物到严重腐烂和枯萎。我们生产了表达F. verticillioides绿色荧光蛋白的转基因分离株,并用它们来表征F. verticillioides-玉米相互作用中的早期事件,这可能会影响以后的症状出现。在黄萎病菌(F. verticillioides)侵染的土壤中生长的植物较小且呈绿藻。真菌定植在植物的所有地下部分,但主要在侧根和中胚轴组织中发现。在某些中胚轴细胞中,分生孢子在感染后14至21天内产生。检测到细胞间菌丝体,但直到种植后21天才感染其他细胞。种植后25至30天,中胚轴和主根受到严重感染,并且在这些组织中腐烂。其他组织,包括不定根和茎,似乎都是健康的,并且仅包含少量的菌丝。这些结果暗示无症状的全身性感染的特征在于真菌发育的模式,包括某些组织的感染,有限数量的真菌菌丝的细胞间生长以及真菌在少数细胞中的繁殖而没有其他细胞的入侵。明显腐烂的组织的发育与真菌菌丝体的大量产生和组织生长少得多有关。

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