Clayton Jessica, Lemanski Kathleen, Solbach Marcel Dominik, Temperton Vicky M, Bonkowski Michael
Terrestrial Ecology, Institute of Zoology, Cluster of Excellence on Plant Sciences (CEPLAS), University of Cologne, Cologne, Germany.
Institute of Ecology, Faculty of Sustainability, Leuphana University Lüneburg, Lüneburg, Germany.
Front Plant Sci. 2024 Mar 5;15:1346729. doi: 10.3389/fpls.2024.1346729. eCollection 2024.
In a pot experiment, we investigated synergistic interaction of N and P fertilisation on barley biomass () on both shoot and root level with the aim to determine whether N-P interaction would be the same for all levels of N and P fertilisation. We further aimed to determine whether there was a critical level of N and/or P fertilisation rate, above which, a decrease in resource allocation to roots (as nutrient availability increased) could be demonstrated. Barley plants were grown from seed on a nutrient poor substrate and subjected to a two-way NxP fertilisation gradient using a modified Hoagland fertilisation solution. We observed N-P interactions in shoot and root biomass, and N and P use-efficiencies. A synergistic response in biomass was observed only above a critical level of P fertilisation when P was not limiting growth. Furthermore, we found that the same incremental increase in N:P ratio of applied fertiliser elicited different responses in shoot and root biomass depending on P treatment and concluded that barley plants were less able to cope with increasing stoichiometric imbalance when P was deficient. We provide, for the first time, stoichiometric evidence that critical levels for synergistic interactions between N-P may exist in crop plants.
在一项盆栽试验中,我们研究了氮(N)和磷(P)施肥对大麦地上部和根部生物量的协同作用,目的是确定氮磷相互作用在所有氮磷施肥水平下是否相同。我们还旨在确定是否存在氮和/或磷施肥率的临界水平,超过该水平后,随着养分有效性的增加,可证明根系的资源分配会减少。大麦种子在营养贫瘠的基质上生长,并使用改良的霍格兰营养液进行双向氮×磷施肥梯度处理。我们观察了地上部和根部生物量中的氮磷相互作用以及氮和磷的利用效率。仅当磷不限制生长时,在高于临界磷施肥水平时才观察到生物量的协同响应。此外,我们发现,根据磷处理情况,施用肥料的氮磷比相同的增量增加会引起地上部和根部生物量的不同响应,并得出结论,当磷缺乏时,大麦植株应对化学计量失衡增加的能力较弱。我们首次提供了化学计量学证据,表明作物中可能存在氮磷协同相互作用的临界水平。