首页> 外文期刊>American Fern Journal >Effects of Soil Moisture on Ecophysiological Characteristics of Adiantum reniforme var. sinensis, an Endangered Fern Endemic to the Three Gorges Region in China
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Effects of Soil Moisture on Ecophysiological Characteristics of Adiantum reniforme var. sinensis, an Endangered Fern Endemic to the Three Gorges Region in China

机译:土壤水分对肾形铁线蕨生态生理特性的影响。中国三峡地区特有的濒危蕨类植物中华

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摘要

The effects of soil moisture (80%, 60% and 40% water holding capacity) on dry matter production and allocation, leaf morphological and physiological characteristics were examined in Adiantum reniforme var. sinensis, an endangered fern endemic to the Three Gorges region in southwest China. Drought stress decreased leaf growth and photosynthetic capacity, and hence reduced total mass, specific leaf area (SLA) and leaf area ratio (LAR). Dry matter allocation into the root fraction, however, increased with decreasing soil moisture. Leaf relative water content (RWC) decreased as soil water depletion, but the differences were insignificant. Such results might be the result of a physiological balance between the demand for water by the leaves and the water uptake from soil by the roots. The decrease in stomatal conductance (g_s) effectively controlled water loss and maintained intrinsic water use efficiency (WUE_i) under drought stress. The increase in proline content might contribute to osmotic adjustment, and hence sustained cytomembrane integrality in structure and function under drought conditions.
机译:研究了土壤水分(80%,60%和40%持水量)对铁线蕨植物干物质生产和分配,叶片形态和生理特性的影响。 sinensis,中国西南三峡地区特有的濒危蕨类。干旱胁迫降低了叶片的生长和光合能力,因此降低了总质量,比叶面积(SLA)和叶面积比(LAR)。然而,随着土壤水分的减少,干物质分配到根部的比例增加了。叶片相对含水量(RWC)随着土壤水分的减少而降低,但差异不明显。这种结果可能是叶子对水的需求与根系从土壤中吸收水分之间的生理平衡的结果。在干旱胁迫下,气孔导度(g_s)的降低可有效控制水分流失并保持固有的水分利用效率(WUE_i)。脯氨酸含量的增加可能有助于渗透调节,因此在干旱条件下持续的细胞膜结构和功能完整性。

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