David Aaron S, Quiram Gina L, Sirota Jennie I, Seabloom Eric W
University of Minnesota, Department of Ecology, Evolution and Behavior, 1479 Gortner Avenue, Saint Paul, Minnesota 55108
University of Minnesota, College of Continuing Education, 1994 Buford Ave, Saint Paul, Minnesota 55108.
Mycologia. 2016 Jul-Aug;108(4):625-37. doi: 10.3852/15-207. Epub 2016 Apr 18.
Fungal endophytes are one of several groups of heterotrophic organisms that associate with living plants. The net effects of these groups of organisms on each other and ultimately on their host plants depend in part on how they facilitate or antagonize one another. In this study we quantified the associations between endophyte communities and herbivory induced by a biological control in the invasive Lythrum salicaria at various spatial scales using a culture-based approach. We found positive associations between herbivory damage and endophyte isolation frequency and richness at the site level and weak, positive associations at the leaf level. Herbivory damage was more strongly influenced by processes at the site level than were endophyte isolation frequency and community structure, which were influenced by processes at the plant and leaf levels. Furthermore, endophytic taxa found in low herbivory sites were nested subsets of those taxa found at high herbivory sites. Our findings suggest that endophyte communities of L. salicaria are associated with, and potentially facilitated by, biocontrol-induced herbivory. Quantifying the associations between heterotrophic groups ultimately may lead to a clearer understanding of their complex interactions with plants.
真菌内生菌是与活植物相关联的几类异养生物之一。这些生物群体之间以及最终与它们的宿主植物之间的净效应部分取决于它们如何促进或拮抗彼此。在本研究中,我们使用基于培养的方法,在不同空间尺度上量化了入侵植物千屈菜中内生菌群落与生物防治诱导的食草作用之间的关联。我们发现在地点水平上,食草损伤与内生菌分离频率和丰富度之间存在正相关,而在叶片水平上存在微弱的正相关。与内生菌分离频率和群落结构相比,食草损伤受地点水平过程的影响更大,内生菌分离频率和群落结构受植物和叶片水平过程的影响。此外,在低食草地点发现的内生菌类群是高食草地点发现的类群的嵌套子集。我们的研究结果表明,千屈菜的内生菌群落与生物防治诱导的食草作用相关联,并可能受到其促进。量化异养群体之间的关联最终可能会使我们更清楚地了解它们与植物的复杂相互作用。