Taurine decreases arsenic and microplastic toxicity in broccoli (Brassica oleracea L.) through functional and microstructural alterations

IF 3.6 3区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY Biometals Pub Date : 2025-02-18 DOI:10.1007/s10534-025-00667-9
Shahar Yar, Muhammad Arslan Ashraf, Rizwan Rasheed, Umer Farooq, Arslan Hafeez, Shafaqat Ali, Mudassar Shahid, Pallab K. Sarker
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Abstract

Contamination of vegetables with heavy metals and microplastics is a major environmental and human health concern. This study investigated the role of taurine (TAE) in alleviating arsenic (As) and polyvinyl chloride microplastic (MP) toxicity in broccoli plants. The experiment followed a completely randomized design with four replicates per treatment. Plants were grown in soil spiked with MP (200 mg kg‒1), As (42.8 mg kg‒1), and their combination (As + MP) with or without taurine (TAE; 100 mg L‒1) foliar supplementation. Results demonstrated that MP, As, and As + MP toxicity markedly decreased growth, chlorophyll content, photosynthesis, and nutrient uptake in broccoli plants. Exposure to individual or combined MP and As increased oxidative damage, indicated by elevated methylglyoxal (MG), superoxide radical (O2⋅‒), hydrogen peroxide (H2O2), hydroxyl radical (⋅OH), and malondialdehyde (MDA) levels alongside intensified lipoxygenase (LOX) activity and leaf relative membrane permeability (RMP). Histochemical analyses revealed higher lipid peroxidation, membrane damage as well as increased H2O2 and O2•‒ levels in the leaves of stressed plants. Micropalstic and As toxicity deteriorated anatomical structures, with diminished leaf and root epidermal thickness, cortex thickness, and vascular bundle area. However, TAE improved the antioxidant enzyme activities, endogenous ascorbate–glutathione pools, hydrogen sulfide and nitric oxide levels that reduced H2O2, O2⋅‒, ⋅OH, RMP, MDA, and activity of LOX. Taurine elevated osmolyte accumulation that protected membrane integrity, resulting in increased leaf relative water content and plant biomass. Plants supplemented with TAE demonstrated improved anatomical structures, resulting in diminished As uptake and its associated phytotoxicity. These findings highlight that TAE improved redox balance, osmoregulation, ion homeostasis, and anatomical structures, augmenting tolerance to As and MP toxicity in broccoli.

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牛磺酸通过改变花椰菜(Brassica oleracea L.)的功能和微观结构来降低砷和微塑性毒性。
蔬菜被重金属和微塑料污染是一个主要的环境和人类健康问题。本研究探讨了牛磺酸(TAE)对西兰花中砷(As)和聚氯乙烯微塑料(MP)毒性的缓解作用。试验采用完全随机设计,每个处理4个重复。植物在土壤中生长,土壤中添加了MP (200 mg kg-1)、As (42.8 mg kg-1)以及它们的组合(As + MP)和牛磺酸(TAE;100 mg L-1)叶面补充。结果表明,MP、As和As + MP毒性显著降低西兰花植株生长、叶绿素含量、光合作用和养分吸收。单独或联合暴露于MP和As会增加氧化损伤,表现为甲基乙二醛(MG)、超氧自由基(O2⋅-)、过氧化氢(H2O2)、羟基自由基(⋅OH)和丙二醛(MDA)水平升高,同时脂氧合酶(LOX)活性和叶片相对膜透性(RMP)增强。组织化学分析显示,胁迫植物叶片中脂质过氧化、膜损伤以及H2O2和O2•-水平升高。微塑性和砷毒性使解剖结构恶化,叶和根的表皮厚度、皮质厚度和维管束面积减少。然而,TAE提高了抗氧化酶活性、内源性抗坏血酸-谷胱甘肽库、硫化氢和一氧化氮水平,降低了H2O2、O2⋅-、⋅OH、RMP、MDA和LOX活性。牛磺酸增加了保护膜完整性的渗透电解质积累,导致叶片相对含水量和植物生物量增加。补充TAE的植物表现出改善的解剖结构,导致As吸收减少及其相关的植物毒性。这些发现强调TAE改善了氧化还原平衡、渗透调节、离子稳态和解剖结构,增强了西兰花对As和MP毒性的耐受性。
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来源期刊
Biometals
Biometals 生物-生化与分子生物学
CiteScore
5.90
自引率
8.60%
发文量
111
审稿时长
3 months
期刊介绍: BioMetals is the only established journal to feature the important role of metal ions in chemistry, biology, biochemistry, environmental science, and medicine. BioMetals is an international, multidisciplinary journal singularly devoted to the rapid publication of the fundamental advances of both basic and applied research in this field. BioMetals offers a forum for innovative research and clinical results on the structure and function of: - metal ions - metal chelates, - siderophores, - metal-containing proteins - biominerals in all biosystems. - BioMetals rapidly publishes original articles and reviews. BioMetals is a journal for metals researchers who practice in medicine, biochemistry, pharmacology, toxicology, microbiology, cell biology, chemistry, and plant physiology who are based academic, industrial and government laboratories.
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