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硅改变叶片营养组,并改善缺磷和感染条件下橡树幼苗的生长。

Silicon modifies leaf nutriome and improves growth of oak seedlings exposed to phosphorus deficiency and infection.

作者信息

Kostic Igor, Nikolic Nina, Milanovic Slobodan, Milenkovic Ivan, Pavlovic Jelena, Paravinja Ana, Nikolic Miroslav

机构信息

Laboratory of Plant Nutrition, Institute for Multidisciplinary Research, University of Belgrade, Belgrade, Serbia.

Faculty of Forestry, University of Belgrade, Belgrade, Serbia.

出版信息

Front Plant Sci. 2023 Aug 29;14:1265782. doi: 10.3389/fpls.2023.1265782. eCollection 2023.

Abstract

Beneficial effects of silicon (Si) on plants have primarily been studied in crop species under single stress. Moreover, nutrient acquisition-based responses to combination of biotic and abiotic stresses (a common situation in natural habitats) have rarely been reported, in particular in conjunction with soil amendments with Si. Pedunculate oak ( L.), one of the ecologically and economically most important tree species in Europe, is facing a severe decline due to combined stresses, but also problems in assisted regeneration in nurseries. Here, we studied the effect of Si supply on the leaf nutriome, root traits and overall growth of 12-weeks-old oak seedlings exposed to abiotic stress [low phosphorus (P) supply], biotic stress ( root infection), and their combination. The application of Si had the strongest ameliorative effect on growth, root health and root phenome under the most severe stress conditions (i.e., combination of P deficiency and root infection), where it differentially affected the uptake and leaf accumulation in 11 out of 13 analysed nutrients. Silicon supply tended to reverse the pattern of change of some, but not all, leaf nutrients affected by stresses: P, boron (B) and magnesium (Mg) under P deficiency, and P, B and sulphur (S) under pathogen attack, but also nickel (Ni) and molybdenum (Mo) under all three stresses. Surprisingly, Si affected some nutrients that were not changed by a particular stress itself and decreased leaf Mg levels under all the stresses. On the other hand, pathogen attack increased leaf accumulation of Si. This exploratory work presents the complexity of nutrient crosstalk under three stresses, and opens more questions about genetic networks that control plant physiological responses. Practically, we show a potential of Si application to improve P status and root health in oak seedlings, particularly in nurseries.

摘要

硅(Si)对植物的有益影响主要是在单一胁迫下对作物品种进行研究的。此外,基于养分获取对生物和非生物胁迫组合(自然栖息地中的常见情况)的响应鲜有报道,特别是与硅对土壤的改良作用相结合的情况。欧洲生态和经济上最重要的树种之一——无梗花栎(Quercus robur L.),正由于多种胁迫而面临严重衰退,同时在苗圃中的辅助再生也存在问题。在此,我们研究了硅供应对暴露于非生物胁迫(低磷供应)、生物胁迫(根部感染)及其组合下的12周龄栎树幼苗的叶片营养组、根系性状和整体生长的影响。在最严重的胁迫条件下(即磷缺乏和根部感染的组合),硅的施用对生长、根系健康和根系表型具有最强的改善作用,在此条件下,硅对13种分析营养素中的11种的吸收和叶片积累有不同影响。硅供应倾向于逆转一些但不是所有受胁迫影响的叶片养分的变化模式:缺磷时的磷、硼(B)和镁(Mg),病原体攻击时的磷、B和硫(S),以及在所有三种胁迫下的镍(Ni)和钼(Mo)。令人惊讶的是,硅影响了一些未受特定胁迫本身改变的营养素,并在所有胁迫下降低了叶片镁水平。另一方面,病原体攻击增加了叶片硅的积累。这项探索性工作揭示了三种胁迫下养分相互作用的复杂性,并引发了更多关于控制植物生理反应的基因网络的问题。实际上,我们展示了施用硅改善栎树幼苗磷状况和根系健康的潜力,特别是在苗圃中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fc8f/10495579/7d08089ef85b/fpls-14-1265782-g001.jpg

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