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首页> 外文期刊>Journal of Plant Growth Regulation >Arbuscular Mycorrhizal Fungi and Rhizobacteria Promote Growth of Russian Knapweed (Acroptilon repens L.) in a Cd-Contaminated Soil
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Arbuscular Mycorrhizal Fungi and Rhizobacteria Promote Growth of Russian Knapweed (Acroptilon repens L.) in a Cd-Contaminated Soil

机译:丛枝菌根真菌和根瘤菌在CD污染的土壤中促进俄罗斯Knapweed(Acroptilon Repens L.)的增长

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摘要

Improving soil microbial activity and using microbial synergistic relations, such as arbuscular mycorrhizal fungi (AMF) and plant growth-promoting rhizobacteria (PGPR), are of major importance for plant growth in contaminated soils with heavy metals. In this study, growth of Russian knapweed (Acroptilon repens L.) inoculated with either AMF or PGPR was studied in a soil spiked with 0, 10, 30, 100 mg kg(- 1) cadmium (Cd). AMF colonization rate in roots significantly declined by an average of 63.6% as soil Cd level increased. Similarly, shoot dry weight significantly declined as soil Cd level increased, but inoculation with either AMF or PGPR showed a promoting effect on shoot biomass compared with the non-inoculated plants. Cd concentrations in the shoots were higher in the PGPR-treated plants compared with control plants, whereas Cd concentrations in the roots were higher in the AMF-treated plants. The highest amount of Cd extraction was observed for PGPR-inoculated plants, followed by AMF-inoculated plants, and control plants. Elevated Cd level in the soil decreased the photosynthetic pigments chlorophyll a, chlorophyll b, and carotenoids, but AMF- and PGPR-treated plants alleviated this effect compared with control plants. Similarly, relative water content (RWC) of Russian knapweed plants decreased with elevated Cd level in the soil, but RWC was higher in the inoculated plants in all Cd levels in the soil. Inoculation of Russian knapweed plants with AMF and PGPR may effectively contribute to restoration of Cd-contaminated soils and can promote phytoremediation processes. Further research could focus on the effectiveness of Russian knapweed plant inoculation with AMF and PGPR in alleviating heavy metal toxicity in different soil types.
机译:改善土壤微生物活性和使用微生物协同关系,如丛枝菌根真菌(AMF)和植物生长促进的relizobacteria(PGPR),对植物生长的污染土壤具有重金属的植物生长具有重要意义。在这项研究中,在用0,10,30,100mg kg( - 1)镉(Cd)的土壤中,研究了俄罗斯Knapweed(Acroptilon Repens L.)的生长。随着土壤CD水平的增加,ROOT的含量在根部的定植率明显下降63.6%。类似地,随着土壤CD水平的增加,芽干重显着下降,但与非接种植物相比,用AMF或PGPR接种对芽生物质的促进作用。与对照植物相比,PGPR处理的植物中芽中的CD浓度较高,而在AMF处理的植物中,根部中的CD浓度较高。对于PGPR接种的植物,观察到最高量的CD提取,其次是AMF接种植物和对照植物。土壤中升高的CD水平降低了光合色素叶绿素A,叶绿素B和类胡萝卜素,但与对照植物相比,AMF和PGPR处理的植物缓解了这种效果。类似地,俄罗斯Knapweed植物的相对含水量(RWC)降低土壤中的CD水平升高,但土壤中的所有CD水平的接种植物中的RWC均高。用AMF和PGPR接种俄罗斯Knapweed植物可以有效地有助于恢复CD污染的土壤,并可以促进植物修复过程。进一步的研究可以专注于俄罗斯Knapweed植物接种与AMF和PGPR在不同土壤类型中的重金属毒性中接种的效果。

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