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首页> 外文期刊>Protoplasma: An International Journal of Cell Biology >Effects of mutual interaction of Laccaria laccata with Trichoderma harzianum and T-virens on the morphology of microtubules and mitochondria
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Effects of mutual interaction of Laccaria laccata with Trichoderma harzianum and T-virens on the morphology of microtubules and mitochondria

机译:紫胶菌与哈茨木霉和T-viren相互作用对微管和线粒体形态的影响

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摘要

Organelles are known to respond to challenges caused by many stress factors. The morphology of the microtubular cytoskeleton and mitochondria during mutual interaction in coculture of Laccaria laccata with Trichoderma harzianum and T. virens were examined. Hyphae from the interaction region were sampled between 4 and 12 days of growth. Microtubules were labelled with a specific antibody and mitochondria with 3,3'-dihexyloxacarbocyanine iodide, and the organelles were examined microscopically. The morphology of microtubules and mitochondria were similar in all three fungi. Microtubules were arranged in long arrays parallel to the hyphal axis and mitochondria formed an interconnected network. In hyphae growing within the interaction zone, microtubules became wavy and eventually fragmented or depolymerised, and mitochondria also became fragmented. The effects were time-dependent. In general, the organelles of all three fungi were affected during the interaction, but L. laccata was affected the least and to the same extent by each of the saprotrophic fungi. The saprotrophic fungi were affected by L. laccata to a similar extent at 4 and 8 days of interaction. Our results suggest that the studied fungi antagonistically affect each other at the cellular level, although the mechanisms involved remain to be elucidated.
机译:已知细胞器可应对许多压力因素引起的挑战。研究了紫胶菌与哈茨木霉和维氏梭菌共培养过程中相互作用时微管细胞骨架和线粒体的形态。在生长的4至12天之间取样来自相互作用区域的菌丝。微管用特异性抗体标记,线粒体用3,3'-二己基氧杂碳菁花青碘化物标记,并在显微镜下检查细胞器。在所有三种真菌中,微管和线粒体的形态均相似。微管以平行于菌丝轴的长阵列排列,线粒体形成相互连接的网络。在相互作用区内的菌丝生长中,微管呈波浪状,最终破碎或解聚,线粒体也破碎。影响是时间依赖性的。通常,所有三种真菌的细胞器在相互作用过程中均受到影响,但乳酸链球菌则受到每种腐生真菌的影响最小,程度相同。腐生真菌在相互作用的第4天和第8天受到乳酸乳球菌的影响程度相似。我们的结果表明,所研究的真菌在细胞水平上相互拮抗,尽管所涉及的机制尚待阐明。

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