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叶片碳氮组成通过部分钠替代钾来缓解桉树物种的干旱胁迫。

Leaf C and N composition shedding light on easing drought stress through partial K substitution by Na in eucalyptus species.

机构信息

Center for Nuclear Energy in Agriculture, University of São Paulo, Avenida Centenario, 303. CP 96, Piracicaba, CEP, 13416-000, Brazil.

College of Agriculture Luiz de Queiroz, University of São Paulo, Piracicaba, 13418-900, Brazil.

出版信息

Sci Rep. 2021 Oct 11;11(1):20158. doi: 10.1038/s41598-021-99710-1.

Abstract

This work aimed to investigate the partial K-replacement by Na supply to alleviate drought-induced stress in Eucalyptus species. Plant growth, leaf gas exchange parameters, water relations, oxidative stress (HO and MDA content), chlorophyll concentration, carbon (C) and nitrogen (N) isotopic leaf composition (δC and δN) were analyzed. Drought tolerant E. urophylla and E. camaldulensis showed positive responses to the partial K substitution by Na, with similar dry mass yields, stomatal density and total stomatal pore area relative to the well K-supplied plants under both water conditions, suggesting that 50% of the K requirements is pressing for physiological functions that is poorly substituted by Na. Furthermore, E. urophylla and E. camaldulensis up-regulated leaf gas exchanges, leading to enhanced long-term water use efficiency (WUE). Moreover, the partial K substitution by Na had no effects on plants HO, MDA, δC and δN, confirming that Na, to a certain extent, can effectively replace K in plants metabolism. Otherwise, the drought-sensitive E. saligna species was negatively affected by partial K replacement by Na, decreasing plants dry mass, even with up-regulated leaf gas exchange parameters. The exclusive Na-supplied plants showed K-deficient symptoms and lower growth, WUE, and δC, besides higher Na accumulation, δN, HO and MDA content.

摘要

本研究旨在探讨用钠供应替代部分钾缓解桉树物种干旱胁迫。分析了植物生长、叶片气体交换参数、水分关系、氧化应激(HO 和 MDA 含量)、叶绿素浓度、碳(C)和氮(N)同位素叶片组成(δC 和 δN)。耐旱性较强的尾叶桉和赤桉对部分钾被钠替代表现出积极响应,在两种水分条件下,与钾供应良好的植株相比,其干质量产量、气孔密度和总气孔孔径相似,表明 50%的钾需求对生理功能至关重要,而这些功能很难被钠替代。此外,尾叶桉和赤桉上调了叶片气体交换,从而提高了长期水分利用效率(WUE)。此外,部分钾被钠替代对植物 HO、MDA、δC 和 δN 没有影响,这证实了钠在一定程度上可以有效地替代植物代谢中的钾。然而,对干旱敏感的银荆树物种则受到部分钾被钠替代的负面影响,降低了植物的干质量,即使叶片气体交换参数上调也是如此。仅供应钠的植物表现出缺钾症状和生长、WUE 和 δC 下降,以及更高的钠积累、δN、HO 和 MDA 含量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bee4/8505639/08401bafce8b/41598_2021_99710_Fig1_HTML.jpg

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