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Salinity tolerance and mycorrhizal responsiveness of native xeroriparian plants in semi-arid western USA

机译:美国西部半干旱地区天然干湿地植物的耐盐性和菌根响应性

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摘要

Restoration of salt-affected soils is a global concern. In the western United States, restoration of salinized land, particularly in river valleys, often involves control of Tamarix, an introduced species with high salinity tolerance. Revegetation of hydrologically disconnected floodplains and terraces after Tamarix removal is often difficult because of limited knowledge regarding the salinity tolerance of candidate native species for revegetation. Additionally, Tamarix appears to be non-mycorrhizal. Extended occupation of Tamarix may deplete arbuscular mycorrhizal fungi in the soil, further decreasing the success of revegetation efforts. To address these issues, we screened 42 species, races, or ecotypes native to southwestern U.S. for salinity tolerance and mycorrhizal responsiveness. As expected, the taxa tested showed a wide range of responses to salinity and mycorrhizal fungi. This variation also occurred between ecotypes or races of the same species, indicating that seed collected from high-salinity reference systems is likely better adapted to harsh conditions than seed originating from less saline environments. All species tested had a positive or neutral response to mycorrhizal inoculation. We found no clear evidence that mycorrhizae increased salinity tolerance, but some species were so dependent on mycorrhizal fungi that they grew poorly at all salinity levels in pasteurized soil.
机译:恢复受盐影响的土壤已成为全球关注的问题。在美国西部,盐碱化土地的恢复,特别是在河谷中的恢复,通常涉及控制Tamarix,Tamarix是一种具有高盐分耐受性的引入物种。除去Tamarix后,水文上不连贯的洪泛区和阶地的植被恢复通常很困难,因为关于候选天然物种对植被的耐盐性的了解有限。另外,他马柳似乎是非菌根的。 mari柳的长期占领可能会耗尽土壤中的丛枝菌根真菌,从而进一步降低植被恢复工作的成功率。为了解决这些问题,我们筛选了美国西南部42种原生的物种,种族或生态型的耐盐性和菌根反应性。正如预期的那样,测试的分类单元显示出对盐度和菌根真菌的广泛响应。这种变化也发生在同一物种的生态型或种族之间,这表明从高盐度参比系统收集的种子比来自较少盐分环境的种子更可能适应恶劣条件。测试的所有物种对菌根接种均具有阳性或中性反应。我们没有发现明确的证据表明菌根增加了耐盐性,但是某些物种对菌根真菌的依赖性如此之高,以至于在所有巴氏消毒的土壤中,它们在所有盐度下均生长较差。

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