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Isotopic carbon composition and related characters of dominant species along an environmental gradient in Inner Mongolia, China

机译:内蒙古沿环境梯度优势物种的同位素碳组成及相关特征

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Carbon isotope composition (δ~(13)C value) provides a useful measure of integrated water-use efficiency (WUE) of plants and can be used to rank the drought tolerance of different species. We determined the δ~(13)C values, leaf water content (LWC) and free proline content of 52 plant species selected from eight plant communities along a moisture gradient in the Xilin River Basin, Inner Mongolia. The δ~(13)C values and WUE of C_3 plant species tended to increase as the occurrence frequency and relative biomass of the species increased in the entire basin. The mean foliage proline concentration of all species in a community was higher when the habitat was drier and the mean LWC of plants decreased with increasing soil aridity. Significantly positive relationships existed between the foliar proline concentration and occurrence frequency and relative biomass of the species, respectively. Our results indicated that inter- and intra-species variations in WUE might significantly influence the outcome of competitive interactions and played a large role in determining species composition of plant communities. In addition, proline accumulation in leaves might strengthen competitive ability of plants growing in drought prone habitats.
机译:碳同位素组成(δ〜(13)C值)为植物综合水分利用效率(WUE)的有效量度提供了依据,可用于对不同物种的耐旱性进行排名。我们确定了在内蒙古锡林河流域沿湿度梯度从8个植物群落中选择的52种植物的δ〜(13)C值,叶片含水量(LWC)和游离脯氨酸含量。 C_3植物种的δ〜(13)C值和WUE随整个流域中种的出现频率和相对生物量的增加而增加。当栖息地较干燥时,群落中所有物种的平均脯氨酸含量较高,并且随着土壤干旱程度的增加,植物的平均LWC降低。叶脯氨酸浓度与该物种的发生频率和相对生物量之间存在显着的正相关关系。我们的结果表明,WUE的种间和种内变异可能会显着影响竞争性相互作用的结果,并在确定植物群落的物种组成中发挥重要作用。此外,脯氨酸在叶片中的积累可能增强干旱易生环境中生长的植物的竞争能力。

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