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  • Physiological characteristi...
    Mu, Meiqi; Wang, Zicheng; Chen, Zirui; Wu, Yuchen; Nie, Wanting; Zhao, Siwen; Yin, Xiujie; Teng, Xiaohua

    The Science of the total environment, 01/2024, Letnik: 907
    Journal Article

    Trifolium repens L. (T. repens) is considered a potential phytoremediation species due to its large biomass and ability to accumulate and tolerate heavy metals. Lead (Pb) is an important heavy metal pollutant that can affect plant growth, photosynthesis, and enzyme activity. However, response mechanism of microorganisms in three root niches of metal tolerant plants to Pb is not completely understood. Therefore, in this study, a Pb poisoning model of T. repens was established with a Pb gradient (0, 1000 mg/kg, 2000 mg/kg, and 3000 mg/kg), and was used to evaluate growth and physiological responses, as well as enrichment and transport coefficients in T. repens, and explore the characteristics of rhizosphere soil and microbial composition of three root niches. We found that Pb stress caused oxidative injury, and inhibited photosynthesis in T. repens. 16S rDNA sequencing analysis showed that the richness of microbial communities in bulk soil was higher than that in rhizosphere soil both under Pb stress and Pb nonstress conditions. Moreover, Proteobacteria was dominant phylum in bulk and rhizosphere soils, and Proteobacteria and Cyanobacteria were dominant phylum in endophytic bacteria. For the first time, we systematically investigated the response of Pb from bulk soil to plant leaves. The results showed that microbial interaction existed between bulk and rhizosphere soil. Rhizosphere bacterium Haliangium was positively correlated with urease activity and soil nutrients. Endophytic bacterium Pseudomonas was positively correlated with plant biomass and played an important role in Pb tolerance of T. repens. In addition, endophytic bacteria formed complex correlation networks with growth and physiological indexes of both root and shoot, moreover the network in root was more complicated. Taken together, Pb stress dose-dependently inhibited the growth of plants. This study provided a theoretical basis for the further development of microbial cooperation with plant remediation of heavy metal contaminated soil. Display omitted •The richness of microbial communities in bulk soil was higher than that in rhizosphere soil both under Pb stress and Pb non stress conditions.•Proteobacteria and Cyanobacteria were dominant phylum in endophytic bacteria at all Pb levels.•Rhizosphere bacteria Haliangium was positively correlated with urease and soil nutrients under Pb pollution.•Endophytic bacterium Pseudomonas was positively correlated with plant biomass.•Correlation network formed between endophytic bacteria and growth physiological indexes in root was complex than that in shoot.