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Soluble Protein and Acid Phosphatase Exuded by Ectomycorrhizal Fungi and Seedlings in Response to Excessive Cu and Cd

机译:愈合过度Cu和Cd的愈合菌毒性真菌和幼苗渗出可溶性蛋白质和酸性磷酸酶

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Fungi and their symbionts can alleviate heavy metal stress by exuding soluble proteins and enzymes.This study examined the role of soluble protein and acid phosphatase (APase) exuded by Xerocomus chrysenteron,an ectomycorrhizal fungus,and the seedlings of its symbiont,Chinese pine (Pinus tabulaeformis),under conditions of excessive Cu and Cd.The growth growing type showed that this less-studied ectomycorrhizal fungus was capable of tolerating high concentrations of Cu,and may be useful in phytoremediation.X.chrysenteron grew well at 80 mg/L Cu,and the EC50 for Cd was 17.82 mg/L.X.chrysenteron showed enhanced exudation of soluble protein in both isolated and inoculated cultivation under the influence of Cu and Cd.However,soluble protein exudation differed under Cu and Cd stress in isolates.In medium with Cu,soluble protein exudation increased with concentration,but in medium with Cd,the content of soluble protein increased to a comparable level at all concentrations.We demonstrated that soluble protein was related to heavy metal tolerance,but the different ions played different roles.APase activity in exudates of fungi and seedlings decreased in both Cu and Cd stress compared to control,but in seedlings the activity was maintained by inoculation.Thus,X.chrysenteron helped the plant to maintain a normal nutrient uptake to protect it from heavy metal toxicity.
机译:真菌和他们的共生可以通过渗出可溶性蛋白质和酶来缓解重金属应力。本研究检测了由Xerocomus chrysenteron,Eccocrogrizal真菌和Symbiont,Chinese Pine(Pinus)的植物菌株和幼苗渗出的可溶性蛋白质和酸性磷酸酶(Apase)的作用在过量的Cu和Cd的条件下,生长生长型的蛋白质是表明这种较少研究的突出菌毒性真菌能够耐受高浓度的Cu,并且可用于植物胺化.X.chrysenteron在80 mg / L Cu的井中生长良好和Cd的EC50为17.82mg / Lxchrysenteron,在Cu和Cd的影响下,在分离和接种的培养中表现出可溶性蛋白质的增强渗透。但是,在分离物中,可溶性蛋白质渗出在Cu和Cd胁迫下不同。培养基,可溶性蛋白质渗出随浓度而增加,但在培养基中,可溶性蛋白质的含量增加到所有浓度的可比水平。我们证明了这一点可溶性蛋白质与重金属耐受性有关,但不同的离子在Cu和Cd胁迫下,与对照相比,在Cu和Cd胁迫下,在真菌和幼苗的渗出物中发挥了不同的作用。在幼苗中,通过接种来维持活性。 Chrysenteron帮助该植物保持正常的营养吸收,以保护其免受重金属毒性。

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