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Phylogenetic diversity of fungal communities in areas accessible and not accessible to tourists in Naracoorte Caves

机译:纳拉科特洞穴游客可及和不可访问的地区真菌群落的系统发育多样性

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The fungal diversity in areas accessible and not accessible to tourists at UNESCO World Heritage-listed Naracoorte Caves was investigated with culture-dependent and culture-independent techniques for assistance in cave management protocol development. The caves were selected based on tourist numbers and configurations: Stick Tomato (open, high numbers), Alexandra (lockable openings, high numbers) and Strawhaven (control; no access). Culture-based survey revealed Ascomycota dominance irrespective of sampling area with Microascales (Trichurus sp.) being most frequently isolated. Some Hypocreales-like sequences belonging to Fusarium sp., Trichoderma sp. and Neonectria sp. (Stick Tomato) were cultured only from areas not accessible to tourists. These orders also were detected by DGGE assay irrespective of sampling area. The predominance of Ascomycota (especially Microascales) suggested their important ecological roles in these caves. Culture-independent analysis showed higher Shannon fungal diversity values (from ITS-based DGGE profiles) in tourist-accessible areas of these caves than in inaccessible areas with the fungal community banding patterns being substantially different in Stick Tomato Cave. Further investigations are needed to determine the cause of the differences in the fungal communities of Stick Tomato Cave, although cave-related factors such as use, configuration and sediment heterogeneity might have contributed to these differences.
机译:利用与文化有关和与文化无关的技术来协助洞穴管理规程的发展,对被联合国教科文组织列为世界遗产的纳拉科特岩洞的游客可及和不可访问的地区的真菌多样性进行了调查。这些洞穴是根据游客人数和配置选择的:棍子番茄(开放,高位),亚历山德拉(可上锁的开口,高位)和Strawhaven(控制;无人入场)。基于文化的调查显示,无论取样区域如何,细小鳞片(Trichurus sp。)都最经常被隔离,子囊菌占优势。属于镰刀菌属,木霉属的一些菌丝状序列。和Neonectria sp。 (Stick Tomato)仅在游客无法到达的区域种植。这些订单也可以通过DGGE分析检测到,而与采样区域无关。子囊菌(尤其是微米级)的优势表明了它们在这些洞穴中的重要生态作用。与文化无关的分析表明,与不可达地区相比,这些洞穴的游客可及区域中的香农真菌多样性值更高(来自基于ITS的DGGE谱),而在Stick Tomato Cave中,真菌群落的带状分布模式存在显着差异。尽管与洞穴相关的因素(例如用途,构造和沉积物异质性)可能是造成这些差异的原因,但仍需进一步研究以确定Stick Tomato Cave真菌群落差异的原因。

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