Understanding unique tolerance limits in Hydrocotyle verticillata: From submergence to water deficiency

IF 1.9 4区 生物学 Q2 MARINE & FRESHWATER BIOLOGY Aquatic Botany Pub Date : 2023-10-24 DOI:10.1016/j.aquabot.2023.103725
Liudmyla Kozeko , Yulia Ovcharenko , Sigita Jurkonienė , Elizabeth Kordyum
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Abstract

Hydrocotyle verticillata can tolerate varying degrees of flooding, up to complete submergence, and is at the same time extremely sensitive to drought. Understanding the structural and biochemical principles of these unusual tolerance limits is of particular importance. We analyzed the effect of soil flooding, complete submergence (rooted plants and floating stems), and dehydration on root anatomy, alcohol dehydrogenase (ADH), heat shock proteins 70 (HSP70), hydrogen peroxide, and DNA integrity using light microscopy, biochemical and histological methods. It was shown that anatomical traits of adventitious roots with a triarch stele were similar in the plants growing under different conditions; the single-layered and thin-walled epidermis formed relatively short root hairs; essential air spaces were absent in the cortex parenchyma. Results on ADH clearly showed that anaerobic energetic metabolism in root apices and individual rhizoderma cells of the mature root zone was normal for this species in optimal and suboptimal conditions, while leaves changed metabolism to anaerobic in response to submergence. Alterations in the protein spectrum were accompanied by adequate up-regulation of HSP70 under different levels of flooding and dehydration/rehydration. These results appear to indicate a flooding adaptation strategy for H. verticillata based primarily on metabolic plasticity rather than morphoanatomical adaptations. Most notably, the resistance of this species to long-term submergence has been associated with strong ADH induction in leaves, transient activation of 70 kDa isoform of HSP70 and induction of 66 kDa isoform, as well as a significant delay in the accumulation of hydrogen peroxide and DNA degradation.

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了解黄斑水子叶独特的耐受极限:从淹水到缺水
水子叶可以忍受不同程度的洪水,甚至完全淹没,同时对干旱极其敏感。了解这些不寻常的耐受性极限的结构和生化原理是特别重要的。利用光镜、生化和组织学方法分析了土壤淹水、完全浸没(有根植物和浮茎)和脱水对根系解剖、酒精脱氢酶(ADH)、热休克蛋白70 (HSP70)、过氧化氢和DNA完整性的影响。结果表明,在不同生长条件下,带三柱不定根的解剖特征是相似的;单层薄壁表皮形成较短的根毛;皮层实质中缺少必要的空气空间。ADH结果清楚地表明,在最佳和次优条件下,该物种的根尖和成熟根区单个根皮细胞的厌氧能量代谢是正常的,而叶片对淹没的反应将代谢转变为厌氧。在不同程度的水淹和脱水/再水合作用下,蛋白谱的改变伴随着HSP70的适当上调。这些结果似乎表明,H. verticillata的洪水适应策略主要基于代谢可塑性,而不是形态解剖学适应。最值得注意的是,该物种对长期浸没的抗性与叶片中强烈的ADH诱导、HSP70 70 kDa亚型的瞬时激活和66 kDa亚型的诱导以及过氧化氢积累和DNA降解的显著延迟有关。
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来源期刊
Aquatic Botany
Aquatic Botany 生物-海洋与淡水生物学
CiteScore
3.80
自引率
5.60%
发文量
70
审稿时长
6 months
期刊介绍: Aquatic Botany offers a platform for papers relevant to a broad international readership on fundamental and applied aspects of marine and freshwater macroscopic plants in a context of ecology or environmental biology. This includes molecular, biochemical and physiological aspects of macroscopic aquatic plants as well as the classification, structure, function, dynamics and ecological interactions in plant-dominated aquatic communities and ecosystems. It is an outlet for papers dealing with research on the consequences of disturbance and stressors (e.g. environmental fluctuations and climate change, pollution, grazing and pathogens), use and management of aquatic plants (plant production and decomposition, commercial harvest, plant control) and the conservation of aquatic plant communities (breeding, transplantation and restoration). Specialized publications on certain rare taxa or papers on aquatic macroscopic plants from under-represented regions in the world can also find their place, subject to editor evaluation. Studies on fungi or microalgae will remain outside the scope of Aquatic Botany.
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