[低锌钙质土壤增锌微生物的分离、筛选及其应用]。

Q3 Environmental Science 应用生态学报 Pub Date : 2024-10-01 DOI:10.13287/j.1001-9332.202410.010
Yan-Lin Li, Juan Chen, Li-Li Chu, Peng-Chao Zhu, Yi-Rui Fu, Dong-Lin Huang, Da-Bin Zhang, Ya-Jun Gao, Zhao-Hui Wang
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引用次数: 0

摘要

在低锌有效度土壤中接种增锌微生物是提高锌植物有效度的一种很有前途的方法。本研究从绿肥作物根际中筛选了6株ZSMs,包括真菌(Talaromyces purpureogenus)、嗜pinophilus (Talaromyces pinophilus)和amestolkiae(青霉属)3株,细菌(cellulosimicroum funkei)、黄瓜Isptericola (Isptericola葫芦)和canus链霉菌(Streptomyces canus) 3株。通过盆栽试验,分析了不同zsm对白菜茎、根锌含量的影响,并比较了zsm对白菜锌的增溶作用。结果表明,接种ZSMs处理后,白菜根部和叶片Zn含量分别提高15% ~ 44%和27% ~ 62%,土壤DTPA-Zn浓度提高52% ~ 359%。以接种葡萄球菌处理效果最好。zsm通过将中等速效锌(与氧化锰结合、与有机质结合较强)转化为有效锌(可交换部分、与碳酸盐结合、与松散有机质结合)来调动土壤锌,从而提高了土壤锌的DTPA-Zn含量,显著提高了根系对锌的吸收量和叶面锌含量。经筛选的锌动员真菌平均提高土壤锌植物有效性和叶片锌含量240%和46%,表现出比筛选的细菌更强的动员能力。amestolkiae能显著提高土壤和植物的锌含量,是一种很有潜力的生物增肥剂。
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[Isolation, screening of zinc solubilizing microorganisms and its application in low zinc calcareous soil].

Inoculating zinc solubilizing microorganisms (ZSMs) is considered as a promising strategy for increasing Zn phytoavailability in soils with low Zn availability. In present study, we screened six strains of ZSMs from rhizosphere of green manure crop, including three strains of fungi, Talaromyces purpureogenus, Talaromyces pinophilus, and Penicillium amestolkiae, and three strains of bacteria, Cellulosimicrobium funkei, Isptericola cucumis and Streptomyces canus. We conducted a pot experiment of Bok choy inoculated with different ZSMs to analyze the Zn content in shoots and roots, and compared the Zn solubilizing effect of ZSMs. The results showed that Zn content in the roots and leaves of Bok choy of treatments inoculated with ZSMs were increased by 15%-44% and 27%-62%, respectively, and that soil DTPA-Zn concentration were increased by 52%-359%. The treatment inoculated with P. amestolkiae had the best effect. ZSMs significantly enhanced root uptake of Zn and foliar Zn content through increa-sing DTPA-Zn by mobilizing soil Zn by transformation of moderately available Zn (Zn bounded with manganese oxide and Zn strongly bounded with organic matter) to available Zn (exchangeable fraction, Zn bounded with carbonate, and Zn bounded with loose organic matter). The screened Zn mobilizing fungi averagely enhanced soil Zn phytoavailability and leaf Zn content by 240% and 46%, showing superior mobilizing ability than screened bacteria. P. amestolkiae significantly increased Zn content of soil and plant, thus it could be a promising potential microorganism as biofotification agent.

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来源期刊
应用生态学报
应用生态学报 Environmental Science-Ecology
CiteScore
2.50
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11393
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