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Symbiotic fungal associations in 'lower' land plants

机译:“较低”陆地植物中的共生真菌协会

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摘要

An analysis of the current state of knowledge of symbiotic fungal associations in 'lower' plants is provided Three fungal phyla, the Zygomycota, Ascomycota and Basidiomycota, are involved in forming these associations, each producing a distinctive suite of structural features in well-defined groups of 'lower' plants. Among the 'lower' plants only mosses and Equisetum appear to lack one or other of these types of association. The salient features of the symbioses produced by each fungal group are described and the relationships between these associations and those formed by the same or related fungi in 'higher' plants are discussed. Particular consideration is given to the question of the extent to which root-fungus associations in 'lower' plants are analogous to 'mycorrhizas' of 'higher' plants and the need for analysis of the functional attributes of these symbioses is stressed. Zygomycetous fungi colonize a wide range of extant lower land plants (hornworts, many hepatics, lycopods, Ophioglossales, Psilotales and Gleicheniaceae), where they often produce structures analogous to those seen in the vesicular-arbuscular (VA) mycorrhizas of higher plants, which are formed by members of the order Glomales. A preponderance of associations of this kind is in accordance with palaeobotanical and molecular evidence indicating that glomalean fungi produced the archetypal symbioses with the first plants to emerge on to land. It is shown, probably for the first time, that glomalean fungi forming typical VA mycorrhiza with a higher plant (Plantago lanceolata) can colonize a thalloid liverwort (Pellia epiphylla), producing arbuscules and vesicles in the hepatic. The extent to which these associations, which are structurally analogous to mycorrhizas, have similar functions remains to be evaluated. Ascomycetous associations are found in a relatively small number of families of leafy liverworts. The structural features of the fungal colonization of rhizoids and underground axes of these plants are similar to those seen in mycorrhizal associations of ericaceous plants like Vaccinium. Cross inoculation experiments have confirmed that a typical mycorrhizal endophyte of ericaceous plants, Hymenoscyphus ericae, will form associations in liverworts which are structurally identical to those seen in nature. Again, the functional significance of these associations remains to be examined. Some members of the Jungermanniales and Metzgeriales form associations with basidiomycetous fungi. These produce intracellular coils of hyphae, which are similar to the pelotons seen in orchid mycorrhizas, which also involve basidiomycetes. The fungal associates of the autotrophic Aneura and of its heterotrophic relative Cryptothallus mirabilis have been isolated. In the latter case it has been shown that the fungal symbiont is an ectomycorrhizal associate of Betula, suggesting that the apparently obligate nature of the association between the hepatic and Betula in nature is based upon requirement for this particular heterotroph. [References: 106]
机译:提供了对“低等”植物中共生真菌关联的当前知识状态的分析。三种真菌门,合子菌,子囊菌和担子菌都参与了这些关联的形成,每一个都在定义明确的群体中产生了一套独特的结构特征较低的植物。在“低等”植物中,只有苔藓和木贼似乎缺乏这些类型中的一种或另一种。描述了每个真菌群产生的共生酶的显着特征,并讨论了这些关联与“较高”植物中相同或相关真菌形成的关联之间的关系。特别考虑了“低等”植物中的根真菌组合在何种程度上类似于“高等”植物的“菌根”的问题,并强调需要分析这些共生酶的功能特性。锁虫真菌在许多现存的低地植物(金枪鱼,许多肝病,番茄科,蛇舌兰,侧柏和草科)中定植,它们的结构通常类似于高等植物的泡状丛枝(VA)菌根。由Glomales成员组成。这类结合的优势是根据古植物学和分子证据表明,草甘膦真菌与最早出现在陆地上的植物产生了原型共生体。可能首次显示,高等植物(车前草)形成典型的VA菌根的神经胶质真菌可在拟南芥(Pellia epiphylla)上定殖,从而在肝中产生丛枝和囊泡。在结构上类似于菌根的这些关联具有相似功能的程度仍有待评估。在相对较少的多叶艾蒿科中发现了子囊性结缔组织。这些植物的根状茎和地下轴真菌定殖的结构特征类似于在象菊科植物如痘苗的菌根协会中看到的那些。交叉接种实验已经证实,菊科植物典型的菌根内生菌,Hymenoscyphus ericae,将在地母草中形成与自然界中观察到的结构相同的缔合体。同样,这些关联的功能意义仍有待检验。 Jungermanniales和Metzgeriales的某些成员与担子菌真菌形成关联。这些产生菌丝的细胞内线圈,类似于在兰花菌根中看到的果皮,也包括担子菌。自养的Aneura及其异养的相对隐孢子虫的真菌伴体已被分离。在后一种情况下,已经表明真菌共生体是桦木的外生菌根缔合体,这表明肝与桦木之间的缔合体的明显专一性是基于对该特定异养菌的需求。 [参考:106]

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