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首页> 外文期刊>Functional Ecology >Effect of enhanced atmospheric CO2 on mycorrhizal colonization and phosphorus inflow in 10 herbaceous species of contrasting growth strategies.
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Effect of enhanced atmospheric CO2 on mycorrhizal colonization and phosphorus inflow in 10 herbaceous species of contrasting growth strategies.

机译:大气CO2浓度升高对10种不同生长策略草本植物菌根定殖和磷流入的影响。

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摘要

Ten herbaceous species (grasses, forbs and pasture legumes) were grown over a 4-month period under ambient (360μmol mol-1) and elevated (610μmol mol-1) atmospheric CO2 conditions. Plants were inoculated with the arbuscular mycorrhizal (AM) fungusGlomus mosseae and given a phosphorus (P) supply which was not immediately available to the plants. Multiple harvests were taken in order to determine whether the effect of elevated CO2 on mycorrhizal colonization and phosphorus inflow was independent ofits effect on plant growth. All species grew faster under elevated CO2 and carbon partitioning was altered, generally in favour of the shoots. All species responded similarly to elevated CO2. Elevated CO2 did not affect the percentage of root length colonized by AM fungi, but the total amount of colonized root length was increased, because the plants were bigger. Elevated CO2 increased total P content, but had little or no effect on P concentration. At a given age, P inflow was stimulated by elevated CO2, but when root length was taken into account the CO2 effect disappeared. It is concluded that there is no evidence for a direct effect of elevated CO2 on mycorrhizal functioning, because both internal mycorrhizal colonization and P inflow are unaffected.
机译:在环境(360μmolmol-1)和升高的(610μmolmol-1)大气CO2条件下,四个月内生长了十种草类(草,草和牧草)。用丛枝菌根(AM)真菌Glomus mosseae接种植物,并供给磷(P),但植物无法立即获得磷。为了确定CO 2升高对菌根定植和磷流入的影响是否独立于其对植物生长的影响,进行了多次收获。在二氧化碳升高的情况下,所有物种的生长速度都更快,并且碳分配发生了变化,通常有利于芽。所有物种对二氧化碳升高的反应相似。 CO 2浓度升高并不影响AM真菌定殖的根长百分比,但由于植物较大,定植的根长总量增加了。升高的CO2增加了总磷含量,但对磷浓度影响很小或没有影响。在给定的年龄,CO升高会刺激P的流入,但是当考虑根长时,CO2的作用就会消失。结论是,没有证据表明CO2升高对菌根功能有直接影响,因为内部菌根定植和P流入均不受影响。

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