Fungal Endophytes: Australian Terrestrial Orchids

S. Mehra
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Abstract

Orchids are unique as they lack a functional rooting system and share an obligate relationship with their fungal symbionts. This relationship supports their host’s nutritional demands from seed germination to its later development. The orchid fungal endophytes explore large areas in the soil as, to which orchid roots have no access, and thus acquire both organic and inorganic nutrients beyond the depletion zone at low carbon cost. Both ‘autotrophic’ (green) and ‘mycoheterotrophic’ species occur in the Orchidaceae, but the term ‘mixotrophic’ is possibly a truer description of the carbon economy of many green orchids. Some of the major ecological threats of an Australian landscape are habitat destruction and fragmentation. There is little known about the nutritional sources and saprophytic ability of orchid mycorrhizal fungi (OMF) and their role in providing nutrition to orchids. However, several integrated approaches have been developed for the conservation, management and restoration of these plants in wild but there is an urgent need to set appropriate conservation priorities to prevent the loss of habitats for these endangered species in terms of their fungal endophytes. This chapter focuses on the protection of these endangered Australian orchid species by understanding the nutritional behavior of their endophytes.
内生真菌:澳大利亚陆生兰花
兰花是独一无二的,因为它们缺乏一个功能性的生根系统,并与它们的真菌共生体共享一种义务关系。这种关系支持寄主从种子萌发到后期发育的营养需求。兰花真菌内生菌在兰花根系无法进入的大面积土壤中进行探索,从而以低碳成本获取枯竭区以外的有机和无机养分。“自养”(绿色)和“分枝异养”都出现在兰科植物中,但术语“混合营养”可能是对许多绿色兰花碳经济的更真实的描述。澳大利亚景观的一些主要生态威胁是栖息地的破坏和破碎化。兰花菌根真菌(OMF)的营养来源、腐生能力及其在兰花营养中的作用尚不清楚。然而,目前已经开发了几种综合方法来保护、管理和恢复这些野生植物,但迫切需要确定适当的保护重点,以防止这些濒危物种在真菌内生菌方面的栖息地丧失。本章主要通过了解其内生菌的营养行为来保护这些濒临灭绝的澳大利亚兰花物种。
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