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丝核菌共生兰花中的光照限制与部分菌异养现象

Light limitation and partial mycoheterotrophy in rhizoctonia-associated orchids.

作者信息

Schweiger Julienne M-I, Kemnade Christian, Bidartondo Martin I, Gebauer Gerhard

机构信息

Laboratory of Isotope Biogeochemistry, Bayreuth Center of Ecology and Environmental Research (BayCEER), University of Bayreuth, 95440, Bayreuth, Germany.

Department of Life Sciences, Imperial College London, London, SW7 2AZ, England, UK.

出版信息

Oecologia. 2019 Feb;189(2):375-383. doi: 10.1007/s00442-019-04340-0. Epub 2019 Jan 23.

Abstract

Partially mycoheterotrophic (PMH) plants obtain organic molecules from their mycorrhizal fungi in addition to carbon (C) fixed by photosynthesis. Some PMH orchids associated with ectomycorrhizal fungi have been shown to flexibly adjust the proportion of organic molecules obtained from fungi according to the habitat's light level. We hypothesise that Neottia ovata and Ophrys insectifera, two orchids associated with saprotrophic rhizoctonia fungi, are also able to increase uptake of organic molecules from fungi as irradiance levels decrease. We continuously measured light availability for individuals of N. ovata and O. insectifera at a grassland and a forest during orchid flowering and fruiting. We repeatedly sampled leaves of N. ovata, O. insectifera and autotrophic reference species for stable isotope natural abundances (δC, δN, δH, δO) and C and N concentrations. We found significant C enrichment in both orchids relative to autotrophic references at the forest but not the grassland, and significant H enrichment at both sites. The C enrichment in O. insectifera was linearly correlated with the habitat's irradiance levels. We conclude that both species can be considered as PMH and at least in O. insectifera, the degree of partial mycoheterotrophy can be fine-tuned according to light availability. However, exploitation of mycorrhizal fungi appears less flexible in saprotroph-associated orchids than in orchids associated with ectomycorrhizal fungi.

摘要

部分菌根异养植物(PMH)除了通过光合作用固定碳(C)外,还从其菌根真菌中获取有机分子。一些与外生菌根真菌相关的PMH兰花已被证明能够根据栖息地的光照水平灵活调整从真菌中获取的有机分子比例。我们假设,与腐生丝核菌真菌相关的两种兰花——广布红门兰和眉兰,也能够随着光照强度的降低而增加从真菌中摄取有机分子。在兰花开花和结果期间,我们持续测量了草地和森林中广布红门兰和眉兰个体可获得的光照。我们反复采集广布红门兰、眉兰和自养参照物种的叶片,以测定稳定同位素自然丰度(δC、δN、δH、δO)以及碳和氮的浓度。我们发现,相对于森林中的自养参照物种,两种兰花均有显著的碳富集现象,但在草地中没有,并且在两个地点均有显著的氢富集现象。眉兰中的碳富集与栖息地的光照强度呈线性相关。我们得出结论,这两个物种都可被视为PMH,并且至少对于眉兰来说,部分菌根异养的程度可以根据光照可利用性进行微调。然而,与外生菌根真菌相关的兰花相比,与腐生真菌相关的兰花对菌根真菌的利用似乎灵活性较差。

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