School of Biological Sciences, The University of Western Australia, 35 Stirling Highway, Perth, WA, 6009, Australia.
CEFE, Université Montpellier, CNRS, IRD, EPHE, Montpellier, 34000, France.
New Phytol. 2024 Oct;244(1):74-90. doi: 10.1111/nph.20015. Epub 2024 Aug 5.
In severely phosphorus (P)-impoverished environments, plants have evolved to use P very efficiently. Yet, it is unclear how P allocation in leaves contributes to their photosynthetic P-use efficiency (PPUE) and position along the leaf economics spectrum (LES). We address this question in 10 species of Banksia and Hakea, two highly P-efficient Proteaceae genera. We characterised traits in leaves of Banksia and Hakea associated with the LES: leaf mass per area, light-saturated photosynthetic rates, P and nitrogen concentrations, and PPUE. We also determined leaf P partitioning to five biochemical fractions (lipid, nucleic acid, metabolite, inorganic and residual P) and their possible association with the LES. For both genera, PPUE was negatively correlated with fractional allocation of P to lipids, but positively correlated with that to metabolites. For Banksia only, PPUE was negatively correlated with residual P, highlighting a strategy contrasting to that of Hakea. Phosphorus-allocation patterns significantly explained PPUE but were not linked to the resource acquisition vs resource conservation gradient defined by the LES. We conclude that distinct P-allocation patterns enable species from different genera to achieve high PPUE and discuss the implications of different P investments. We surmise that different LES axes representing different ecological strategies coexist in extremely P-impoverished environments.
在严重缺磷 (P) 的环境中,植物已经进化到能够非常有效地利用 P。然而,目前尚不清楚叶片中的 P 分配如何有助于它们的光合 P 利用效率 (PPUE) 和沿叶片经济谱 (LES) 的位置。我们在 Banksia 和 Hakea 这两个高度 P 效率的 Proteaceae 属的 10 种植物中解决了这个问题。我们描述了与 LES 相关的 Banksia 和 Hakea 叶片的特征:叶面积质量、光饱和光合速率、P 和氮浓度以及 PPUE。我们还确定了叶片 P 分配到五个生化部分(脂质、核酸、代谢物、无机和残余 P)及其与 LES 的可能关联。对于这两个属,PPUE 与 P 分配到脂质的分数呈负相关,但与分配到代谢物的分数呈正相关。仅在 Banksia 中,PPUE 与残余 P 呈负相关,这突显了与 Hakea 相反的策略。P 分配模式显着解释了 PPUE,但与 LES 定义的资源获取与资源保护梯度无关。我们得出的结论是,不同的 P 分配模式使来自不同属的物种能够实现高 PPUE,并讨论了不同 P 投资的影响。我们推测,代表不同生态策略的不同 LES 轴在极度缺 P 的环境中并存。