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首页> 外文期刊>Ecotoxicology and Environmental Safety >Root endophytic fungus Piriformospora indica affected growth, cadmium partitioning and chlorophyll fluorescence of sunflower under cadmium toxicity
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Root endophytic fungus Piriformospora indica affected growth, cadmium partitioning and chlorophyll fluorescence of sunflower under cadmium toxicity

机译:镉作用下根系内生真菌P梨孢子虫影响向日葵的生长,镉分配和叶绿素荧光

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Cadmium (Cd) pollution in the soil threatens the quality of environmental health, and deleteriously affects physiological activities of crops. Symbiosis of endophytic fungi with various plants is a promising manner to improving numerous plant characteristics and remediating heavy metal-polluted soils. In this pot experiment, the influence of root endophyte fungus Piriformospora indica on growth, physiological parameters and organs Cd accumulation in sunflower cv. Zaria plants under the toxic levels of Cd (0, 40, 80 and 120 mg/kg soil) were studied. Increasing Cd concentration in the soil reduced growth parameters, chlorophyll (Chl) a and Chl b contents, and Fv/Fm and ETR (electron transport rate) values, but increased root, stem and leaf Cd accumulation, and proline content. The presence of P. indica significantly enhanced growth, Chl a, Chl b and proline contents, and Fv/Fm and ETR values. Compared to non-inoculated ones, P. indica-inoculated plants had higher Cd accumulation in root, whereas lower Cd accumulation in stem and leaf. The present study strongly supports the established ability of P. indica to alleviate Cd toxicity by improving the physiological status in sunflower. Furthermore, this endophyte fungus can be useful for Cd phyto-stabilization in sunflower roots in contaminated soils.
机译:土壤中的镉污染威胁着环境健康的质量,并有害地影响了作物的生理活动。内生真菌与各种植物的共生是改善许多植物特性和修复重金属污染土壤的有前途的方式。在这个盆栽试验中,根内生真菌印度iri梨孢子对向日葵cv生长,生理参数和器官Cd积累的影响。研究了在Cd(0、40、80和120 mg / kg土壤)毒性水平下的Zaria植物。土壤中Cd浓度的增加会降低生长参数,叶绿素(Chl)a和Chl b的含量以及Fv / Fm和ETR(电子传输率)值,但会增加根,茎和叶中Cd的积累以及脯氨酸的含量。印第安假单胞菌的存在显着增强了生长,Chl a,Chl b和脯氨酸含量以及Fv / Fm和ETR值。与未接种的相比,接种P的植物的根中Cd积累较高,而茎和叶中的Cd积累较低。本研究强烈支持of稻通过改善向日葵的生理状况减轻镉镉毒性的能力。此外,这种内生真菌可用于稳定受污染土壤中葵花根中的镉的植物稳定性。

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