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薄荷树通过在极低磷有效性条件下增加蒸腾作用,沿着植物有效磷的强烈梯度改变其磷获取策略。

Peppermint trees shift their phosphorus-acquisition strategy along a strong gradient of plant-available phosphorus by increasing their transpiration at very low phosphorus availability.

作者信息

Huang Gang, Hayes Patrick E, Ryan Megan H, Pang Jiayin, Lambers Hans

机构信息

State Key Laboratory of Desert and Oasis Ecology, Xinjiang Institute of Ecology and Geography, Chinese Academy of Sciences, Urumqi, 830011, China.

School of Biological Sciences and Institute of Agriculture, University of Western Australia, Crawley, Perth, WA, 6009, Australia.

出版信息

Oecologia. 2017 Nov;185(3):387-400. doi: 10.1007/s00442-017-3961-x. Epub 2017 Sep 18.

Abstract

Some plant species use different strategies to acquire phosphorus (P) dependent on environmental conditions, but studies investigating the relative significance of P-acquisition strategies with changing P availability are rare. We combined a natural P availability gradient and a glasshouse study with 10 levels of P supplies to investigate the roles of rhizosphere carboxylates and transpiration-driven mass flow in P acquisition by Agonis flexuosa. Leaf P concentrations of A. flexuosa decreased and leaf manganese (Mn) concentrations increased with decreasing soil P concentration along a dune chronosequence. In the glasshouse, in response to decreasing P supply, shoot growth and root length decreased, leaf P and Mn concentrations decreased, rhizosphere carboxylates decreased, transpiration rate and transpiration ratio increased and the percentage of root length colonized by arbuscular mycorrhizal fungi was unchanged. Although it was proved leaf Mn concentration was a good proxy for rhizosphere carboxylate amounts in the glasshouse study, the enhanced plant P acquisition at low P supply was related to transpiration-induced mass flow rather than carboxylates. We deduced that the higher leaf Mn concentrations in low soil P availability of the field were likely a result of increased mass flow. In summary, as soil P availability declined, A. flexuosa can shift its P-acquisition strategy away from a mycorrhizal mode towards one involving increased mass flow.

摘要

一些植物物种会根据环境条件采用不同策略获取磷(P),但探究随着磷有效性变化,磷获取策略的相对重要性的研究却很少见。我们结合了自然磷有效性梯度和一项温室研究(设置10个磷供应水平),来调查根际羧酸盐和蒸腾作用驱动的质量流在弯曲银叶树获取磷过程中的作用。沿着沙丘时间序列,随着土壤磷浓度降低,弯曲银叶树的叶片磷浓度降低,叶片锰(Mn)浓度升高。在温室中,随着磷供应减少,地上部生长和根长降低,叶片磷和锰浓度降低,根际羧酸盐减少,蒸腾速率和蒸腾比率升高,丛枝菌根真菌定殖的根长百分比未变。尽管在温室研究中已证明叶片锰浓度是根际羧酸盐含量的良好指标,但在低磷供应条件下植物对磷获取的增强与蒸腾作用诱导的质量流有关,而非羧酸盐。我们推断,田间土壤磷有效性低时叶片锰浓度较高可能是质量流增加的结果。总之,随着土壤磷有效性下降,弯曲银叶树可以将其磷获取策略从菌根模式转变为涉及增加质量流的模式。

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