Restoration of Heavy Metal-Contaminated Environs Through Ectomycorrhizal Symbiosis
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Publisher
Springer International Publishing
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http://link.springer.com/content/pdf/10.1007/978-3-030-48690-7_15
Reference104 articles.
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3. Adriaensen K, Vangronsveld J, Colpaert JV (2006) Zinc tolerant Suillus bovinus improves growth of Zn exposed Pinus sylvestris seedlings. Mycorrhiza 16:553–558
4. Agerer R (2012) Ectotrophic and ectendotrophic mycorrhizae, genetics cell biology and physiology systematics and comparative morphology ecology and vegetation science. In: Progress in botany, vol 60. Springer, Berlin/Heidelberg, p 471
5. Ahemad M (2014) Remediation of metalliferous soils through the heavy metal resistant plant growth promoting bacteria: paradigms and prospects. Arab J Chem. https://doi.org/10.1016/j.arabjc.2014.11.020
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1. Ectomycorrhizal Fungi Shape Endorhizal Bacterial Community Structure Associated With Pinus Taiwanensis Roots While Simultaneously Regulating Soil Heavy Metals;2023
2. Water Relations, Gas Exchange, Chlorophyll Fluorescence and Electrolyte Leakage of Ectomycorrhizal Pinus halepensis Seedlings in Response to Multi-Heavy Metal Stresses (Pb, Zn, Cd);Microorganisms;2021-12-28
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