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Characteristics of metal-tolerant plant growth-promoting yeast (Cryptococcus sp NSE1) and its influence on Cd hyperaccumulator Sedum plumbizincicola

机译:耐金属促进植物生长的酵母(Cryptococcus sp NSE1)的特征及其对镉超富集景天景天的影响

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Plant growth-promoting yeasts are often over looked as a mechanism to improve phytoremediation of heavy metals. In this study, Cryptococcus sp. NSE1, a Cd-tolerant yeast with plant growth capabilities, was isolated from the rhizosphere of the heavy metal hyperaccumulator Sedum plumbizincicola. The yeast exhibited strong tolerance to a range of heavy metals including Cd, Cu, and Zn on plate assays. The adsorption rate Cd, Cu, Zn by NSE1 was 26.1, 13.2, and 25.2 %, respectively. Irregular spines were formed on the surface of NSE1 when grown in MSM medium supplemented with 200 mg L-1 Cd. NSE1 was capable of utilizing 1-aminocyclopropane-1-carboxylate (ACC) as a sole nitrogen source and was capable of solubilization of inorganic phosphate at rates of 195.2 mg L-1. Field experiments demonstrated that NSE1 increased phytoremediation by increasing the biomass of Cd hyperaccumulator S. plumbizincicola (46 %, p < 0.05) during phytoremediation. Overall, Cd accumulation by S. plumbizincicola was increased from 19.6 to 31.1 mg m(-2) though no difference in the concentration of Cd in the shoot biomass was observed between NSE1 and control. A Cd accumulation ratio of 38.0 % for NSE1 and 17.2 % for control was observed. The HCl-extractable Cd and CaCl2-extractable Cd concentration in the soil of the NSE1 treatment were reduced by 39.2 and 29.5 %, respectively. Community-level physiology profiling, assessed using Biolog Eco plates, indicated functional changes to the rhizosphere community inoculated with NSE1 by average well color development (AWCD) and measurement of richness (diversity). Values of Shannon-Weiner index, Simpson index, and McIntosh index showed a slight but no significant increases. These results indicate that inoculation of NSE1 could increase the shoot biomass of S. plumbizincicola, enhance the Cd accumulation in S. plumbizincicola, and decrease the available heavy metal content in soils significantly without overall significant changes to the microbial community.
机译:促进植物生长的酵母通常被视为改善重金属植物修复的机制。在这项研究中,隐球菌属。 NSE1是一种具有Cd耐受性的植物生长能力的酵母,是从重金属超富集植物Sedum plumbizincicola的根际中分离出来的。在平板测定中,酵母对多种重金属(包括Cd,Cu和Zn)表现出较强的耐受性。 NSE1的吸附率Cd,Cu,Zn分别为26.1%,13.2%和25.2%。当在补充200 mg L-1 Cd的MSM培养基中生长时,NSE1的表面会形成不规则的棘。 NSE1能够利用1-氨基环丙烷-1-羧酸盐(ACC)作为唯一的氮源,并且能够以195.2 mg L-1的速率溶解无机磷酸盐。田间试验表明,NSE1通过在植物修复过程中增加Cd超蓄积李子链球菌的生物量(46%,p <0.05)来增加植物修复。总体而言,尽管NSE1和对照之间未观察到枝条生物量中Cd的浓度差异,但S. plumbizincicola的Cd累积量从19.6增加到31.1 mg m(-2)。 NSE1的Cd积累率为38.0%,对照的Cd积累率为17.2%。 NSE1处理的土壤中可提取HCl的Cd和可提取CaCl2的Cd浓度分别降低了39.2%和29.5%。使用Biolog Eco平板评估的社区一级生理学资料表明,通过平均孔颜色发展(AWCD)和富度(多样性)测量,接种NSE1的根际社区的功能发生了变化。 Shannon-Weiner指数,Simpson指数和McIntosh指数的值略有增加,但无明显增加。这些结果表明,接种NSE1可以显着提高李白链球菌的茎生物量,增加李白链球菌中Cd的积累,并显着降低土壤中的有效重金属含量,而不会对微生物群落产生总体影响。

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