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Response mechanisms of leaf nutrients of endangered plant (Acer catalpifolium) to environmental factors varied at different growth stages

机译:濒危植物(Acer Catalpifolium)叶营养成分对不同生长阶段的环境因素的响应机制

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The response patterns of N and P in plant leaves are one of the tools for investigating the ability of plants to cope with current environmental conditions and predicting their future viability. Endangered species are more sensitive to environmental changes, lack of nutrients such as NP will adversely affect the survival of species. 119 Acer catalpifolium are the only ones left in the world were studied and were divided into different growth stages (small, adult and old trees) to study the environmental response of leaves to NP. Results showed that: the NP stoichiometric characteristics of Acer catalpifolium leaves were lower in small stage, with the growth of plants, the NP content increased. There was a significant correlation between the soil nutrient and leaf NP stoichiometry in all growth stages, and with the increase of soil N:P, the leaf N:P changed from N limitation to N and P limitation, showing a poor adaptability to soil environmental changes. Under the influence of environmental conditions, the adaptation strategy of leaf NP at different growth stages were different. With the return of nutrients, the leaf N:P at adult and old stages increased with litter thickness. Small and old stages showed poor adaptation with environmental changes. These results indicate that leaf NP differed significantly among different life stages and that?these differences can accounted for part of the causes of endangerment of Acer catalpifolium .
机译:植物叶中N和P的响应模式是研究植物应对当前环境条件并预测其未来活力的工具之一。濒危物种对环境变化更敏感,缺乏营养素如NP会对物种的存活率产生不利影响。 119宏碁目录是世界上唯一留在世界上唯一的患者,分为不同的生长阶段(小,成人和旧树木),以研究叶片的环境反应。结果表明:小阶段的丙型酮转化叶片的NP化学计量特性较低,植物生长,NP含量增加。土壤养分和叶片NP化学计量在所有生长阶段之间存在显着的相关性,随着土壤N:P的增加,叶N:P从N和P限制改变,显示对土壤环境的适应性差变化。在环境条件的影响下,不同生长阶段的叶片NP的适应策略不同。随着营养的回报,成人和旧阶段的叶片N:P随夹紧厚度而增加。小型和旧阶段表现出对环境变化的差。这些结果表明,不同的寿命中的叶片NP有显着不同,这可能会占刺痛宏碁催化剂的一部分原因。

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