Mitigating gadolinium toxicity in guar (Cyamopsis tetragonoloba L.) through the symbiotic associations with arbuscular mycorrhizal fungi: physiological and biochemical insights.

IF 4.3 2区 生物学 Q1 PLANT SCIENCES BMC Plant Biology Pub Date : 2024-09-23 DOI:10.1186/s12870-024-05552-0
Hamada AbdElgawad, Carmine Crecchio, Mousa Nhs, Mostafa A Abdel-Maksoud, Abdul Malik, Mohamed S Sheteiwy, Yousef Alhaj Hamoud, Saad Sulieman, Hiba Shaghaleh, Mohammed Alyafei, Mohammad Yaghoubi Khanghahi
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Abstract

Background: Gadolinium (Gd) is an increasingly found lanthanide element in soil; thus, understanding its impact on plant physiology, biochemistry, and molecular responses is crucial. Here, we aimed to provide a comprehensive understanding of Gd (150 mg kg- 1) impacts on guar (Cyamopsis tetragonoloba L.) plant yield and metabolism and whether the symbiotic relationship with arbuscular mycorrhizal fungi (AMF) can mitigate Gd toxicity of soil contamination.

Results: AMF treatment improved mineral nutrient uptake and seed yield by 38-41% under Gd stress compared to non-inoculated stressed plants. Metabolic analysis unveiled the defense mechanisms adopted by AMF-treated plants, revealing carbon and nitrogen metabolism adaptations to withstand Gd contamination. This included an increase in the synthesis of primary metabolites, such as total sugar (+ 39% compared to control), soluble sugars (+ 29%), starch (+ 30%), and some main amino acids like proline (+ 57%) and phenylalanine (+ 87%) in the seeds of AMF-treated plants grown under Gd contamination. Furthermore, fatty acid and organic acid profile changes were accompanied by the production of secondary metabolites, including tocopherols, polyamines, phenolic acids, flavones, and anthocyanins.

Conclusions: Overall, the coordinated synthesis of these compounds underscores the intricate regulatory mechanisms underlying plant-AMF interactions and highlights the potential of AMF to modulate plant secondary metabolism for enhanced Gd stress tolerance.

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通过与丛枝菌根真菌的共生关系减轻瓜尔豆(Cyamopsis tetragonoloba L.)的钆毒性:生理和生化见解。
背景:钆(Gd)是一种在土壤中发现越来越多的镧系元素;因此,了解其对植物生理、生物化学和分子反应的影响至关重要。在此,我们旨在全面了解钆(150 mg kg- 1)对瓜尔豆(Cyamopsis tetragonoloba L.)植物产量和代谢的影响,以及与丛枝菌根真菌(AMF)的共生关系能否减轻土壤污染的钆毒性:结果:在钆胁迫下,与未接种胁迫植物相比,AMF处理提高了矿物养分吸收率和种子产量38-41%。代谢分析揭示了经 AMF 处理的植物所采用的防御机制,揭示了碳和氮代谢适应性以抵御 Gd 污染。这包括在 Gd 污染下生长的经 AMF 处理的植物种子中初级代谢物合成的增加,如总糖(与对照相比增加 39%)、可溶性糖(增加 29%)、淀粉(增加 30%)以及一些主要氨基酸,如脯氨酸(增加 57%)和苯丙氨酸(增加 87%)。此外,脂肪酸和有机酸谱的变化伴随着次生代谢物的产生,包括生育酚、多胺、酚酸、黄酮和花青素:总之,这些化合物的协调合成强调了植物与 AMF 相互作用的复杂调控机制,并凸显了 AMF 调节植物次生代谢以增强镉胁迫耐受性的潜力。
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来源期刊
BMC Plant Biology
BMC Plant Biology 生物-植物科学
CiteScore
8.40
自引率
3.80%
发文量
539
审稿时长
3.8 months
期刊介绍: BMC Plant Biology is an open access, peer-reviewed journal that considers articles on all aspects of plant biology, including molecular, cellular, tissue, organ and whole organism research.
期刊最新文献
Comprehensive comparative analysis and development of molecular markers for Lasianthus species based on complete chloroplast genome sequences Mitigating gadolinium toxicity in guar (Cyamopsis tetragonoloba L.) through the symbiotic associations with arbuscular mycorrhizal fungi: physiological and biochemical insights. Genome-wide gene network uncover temporal and spatial changes of genes in auxin homeostasis during fruit development in strawberry (F. × ananassa). Homologous mapping yielded a comprehensive predicted protein-protein interaction network for peanut (Arachis hypogaea L.). Transcriptomics and metabolomics analyses of Rosa hybrida to identify heat stress response genes and metabolite pathways.
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