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首页> 外文期刊>Progress in Artificial Intelligence >Serratia marcescens BM1 Enhances Cadmium Stress Tolerance and Phytoremediation Potential of Soybean Through Modulation of Osmolytes, Leaf Gas Exchange, Antioxidant Machinery, and Stress-Responsive Genes Expression
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Serratia marcescens BM1 Enhances Cadmium Stress Tolerance and Phytoremediation Potential of Soybean Through Modulation of Osmolytes, Leaf Gas Exchange, Antioxidant Machinery, and Stress-Responsive Genes Expression

机译:Serratia Marcescens BM1通过调节渗透性,叶片气体交换,抗氧化机械和应力响应基因表达,增强大豆胁迫耐受性和大豆的植物修复潜力

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摘要

The heavy metal contamination in plant-soil environment has increased manifold recently. In order to reduce the harmful effects of metal stress in plants, the application of beneficial soil microbes is gaining much attention. In the present research, the role of Serratia marcescens BM1 in enhancing cadmium (Cd) stress tolerance and phytoremediation potential of soybean plants, was investigated. Exposure of soybean plants to two Cd doses (150 and 300 mu M) significantly reduced plant growth, biomass, gas exchange attributes, nutrients uptake, antioxidant capacity, and the contents of chlorophyll, total phenolics, flavonoids, soluble sugars, and proteins. Additionally, Cd induced the stress levels of Cd, proline, glycine betaine, hydrogen peroxide, malondialdehyde, antioxidant enzymes (i.e., catalase, CAT; ascorbate peroxidase, APX; superoxide dismutase, SOD; peroxidise, POD), and the expression of stress-related genes (i.e., APX, CAT, Fe-SOD, POD, CHI, CHS, PHD2, VSO, NR, and P5CS) in soybean leaves. On the other hand, inoculation of Cd-stressed soybean plants with Serratia marcescens BM1 significantly enhanced the plant growth, biomass, gas exchange attributes, nutrients uptake, antioxidant capacity, and the contents of chlorophyll, total phenolics, flavonoids, soluble sugars, and proteins. Moreover, Serratia marcescens BM1 inoculation reduced the levels of cadmium and oxidative stress markers, but significantly induced the activities of antioxidant enzymes and the levels of osmolytes and stress-related genes expression in Cd-stressed plants. The application of 300 mu M CdCl2 and Serratia marcescens triggered the highest expression levels of stress-related genes. Overall, this study suggests that inoculation of soybean plants with Serratia marcescens BM1 promotes phytoremediation potential and Cd stress tolerance by modulating the photosynthetic attributes, osmolytes biosynthesis, antioxidants machinery, and the expression of stress-related genes.
机译:植物土环境中的重金属污染最近有多样性。为了减少植物中金属应激的有害影响,有益土壤微生物的应用越来越多。在本研究中,研究了Serratia Marcescens BM1在增强镉(CD)胁迫性和植物植物的植物修复潜力中的作用。大豆植物暴露于两种CD剂量(150和300μm)显着降低了植物生长,生物质,气体交换属性,营养吸收,抗氧化能力和叶绿素,总酚类,黄酮类化合物,可溶性糖和蛋白质的含量。另外,Cd诱导CD,脯氨酸,甘氨酸甜菜碱,过氧化氢,丙二醛,抗氧化酶(即,过缩酶,猫;抗坏血酸过氧化物酶,APX;超氧化物歧化酶,SOD;过氧化物,POD)以及应力的表达和应力的表达。在大豆叶中的相关基因(即APX,猫,Fe-SOD,POD,Chi,CHS,PHD2,VSO,NR和P5Cs)。另一方面,用Serratia marcescens BM1接种CD胁迫大豆植物显着增强了植物生长,生物质,气体交换属性,营养吸收,抗氧化能力和叶绿素,总酚类,黄酮类化合物,可溶性糖和蛋白质的含量。此外,Serratia Marcescens BM1接种降低了镉和氧化应激标记的水平,但显着诱导了抗氧化酶的活性和渗透性植物中的渗透性和应激相关基因的水平。 300μmcdcl2和serratia marcescens的应用引发了应激相关基因的最高表达水平。总体而言,该研究表明,通过调节光合属性,渗透性生物合成,抗氧化机械和应力相关基因的表达,通过调节植物修复潜力和CD胁迫耐受性促进植物修复潜力和CD胁迫耐受性。

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