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地衣 Ramalina farinacea 藻层中总是存在两种具有不同生理性能的 Trebouxia 藻类。共存还是竞争?

Two Trebouxia algae with different physiological performances are ever-present in lichen thalli of Ramalina farinacea. Coexistence versus competition?

机构信息

Department of Plant Biology, University of Alcalá, Madrid, Spain.

出版信息

Environ Microbiol. 2011 Mar;13(3):806-18. doi: 10.1111/j.1462-2920.2010.02386.x. Epub 2010 Dec 6.

Abstract

Ramalina farinacea is an epiphytic fruticose lichen that is relatively abundant in areas with Mediterranean, subtropical or temperate climates. Little is known about photobiont diversity in different lichen populations. The present study examines the phycobiont composition of several geographically distant populations of R. farinacea from the Iberian Peninsula, Canary Islands and California as well as the physiological performance of isolated phycobionts. Based on anatomical observations and molecular analyses, the coexistence of two different taxa of Trebouxia (working names, TR1 and TR9) was determined within each thallus of R. farinacea in all of the analysed populations. Examination of the effects of temperature and light on growth and photosynthesis indicated a superior performance of TR9 under relatively high temperatures and irradiances while TR1 thrived at moderate temperature and irradiance. Ramalina farinacea thalli apparently represent a specific and selective form of symbiotic association involving the same two Trebouxia phycobionts. Strict preservation of this pattern of algal coexistence is likely favoured by the different and probably complementary ecophysiological responses of each phycobiont, thus facilitating the proliferation of this lichen in a wide range of habitats and geographic areas.

摘要

粉枝梅衣是一种附生的灌木状地衣,相对丰富的地区与地中海、亚热带或温带气候。对不同地衣种群中光生物多样性知之甚少。本研究检查了来自伊比利亚半岛、加那利群岛和加利福尼亚的几个地理上遥远的粉枝梅衣种群的藻原生物组成以及分离藻原生物的生理性能。根据解剖学观察和分子分析,在所有分析的种群中,每个粉枝梅衣的叶状体中都存在两种不同的 Trebouxia (工作名称,TR1 和 TR9)的共生。研究温度和光照对生长和光合作用的影响表明,TR9 在相对较高的温度和辐照度下表现较好,而 TR1 在中等温度和辐照度下生长良好。粉枝梅衣叶状体显然代表了一种特殊的、选择性的共生形式,涉及到相同的两种 Trebouxia 藻原生物。每个藻原生物的不同且可能互补的生理生态响应可能有利于这种藻共生模式的严格保存,从而促进了这种地衣在广泛的栖息地和地理区域中的繁殖。

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