首页> 美国卫生研究院文献>PLoS Clinical Trials >Effects of Elevated CO2 and N Addition on Growth and N2 Fixation of a Legume Subshrub (Caragana microphylla Lam.) in Temperate Grassland in China
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Effects of Elevated CO2 and N Addition on Growth and N2 Fixation of a Legume Subshrub (Caragana microphylla Lam.) in Temperate Grassland in China

机译:CO 2和N添加量的增加对中国温带草原豆科半灌木(Caragana microphylla Lam。)生长和固氮的影响

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摘要

It is well demonstrated that the responses of plants to elevated atmospheric CO2 concentration are species-specific and dependent on environmental conditions. We investigated the responses of a subshrub legume species, Caragana microphylla Lam., to elevated CO2 and nitrogen (N) addition using open-top chambers in a semiarid temperate grassland in northern China for three years. Measured variables include leaf photosynthetic rate, shoot biomass, root biomass, symbiotic nitrogenase activity, and leaf N content. Symbiotic nitrogenase activity was determined by the C2H2 reduction method. Elevated CO2 enhanced photosynthesis and shoot biomass by 83% and 25%, respectively, and the enhancement of shoot biomass was significant only at a high N concentration. In addition, the photosynthetic capacity of C. microphylla did not show down-regulation under elevated CO2. Elevated CO2 had no significant effect on root biomass, symbiotic nitrogenase activity and leaf N content. Under elevated CO2, N addition stimulated photosynthesis and shoot biomass. By contrast, N addition strongly inhibited symbiotic nitrogenase activity and slightly increased leaf N content of C. microphylla under both CO2 levels, and had no significant effect on root biomass. The effect of elevated CO2 and N addition on C. microphylla did not show interannual variation, except for the effect of N addition on leaf N content. These results indicate that shoot growth of C. microphylla is more sensitive to elevated CO2 than is root growth. The stimulation of shoot growth of C. microphylla under elevated CO2 or N addition is not associated with changes in N2-fixation. Additionally, elevated CO2 and N addition interacted to affect shoot growth of C. microphylla with a stimulatory effect occurring only under combination of these two factors.
机译:充分证明,植物对大气CO2浓度升高的反应是物种特异性的,并取决于环境条件。我们调查了在中国北方半干旱温带草原上使用开放式室对亚灌木豆科植物小叶锦鸡儿(Caragana microphylla Lam。)对增加的CO2和氮(N)的响应。测得的变量包括叶片光合速率,枝条生物量,根系生物量,共生固氮酶活性和叶片氮含量。共生固氮酶活性通过C2H2还原法确定。升高的CO 2分别使光合作用和芽生物量提高了83%和25%,并且仅在高氮浓度下,芽生物量的增加才显着。此外,在升高的CO 2下,小叶锦梭鱼的光合能力没有显示出下调。二氧化碳浓度升高对根生物量,共生固氮酶活性和叶片氮含量无显着影响。在较高的CO2下,氮的添加会刺激光合作用并激发生物量。相比之下,在两种CO2水平下,氮的添加都强烈抑制了共生固氮酶的活性,并使小叶锦鸡儿的叶N含量略有增加,并且对根生物量没有显着影响。除了增加氮对叶片氮含量的影响外,增加二氧化碳和氮的添加对小叶锦梭鱼的影响没有年际变化。这些结果表明,比根系生长,小叶锦梭鱼的芽生长对升高的CO 2更为敏感。在CO2或N含量增加的情况下,对小叶梭菌芽生长的刺激与N2固定的变化无关。此外,升高的CO2和N的添加相互影响,以影响小叶锦梭鱼的枝条生长,并且仅在这两个因素共同作用下才会产生刺激作用。

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