Contribution of Funneliformis mosseae symbiosis to the regulation of sulfur assimilation, glyoxalase system and ionic homeostasis in Aloysia citriodora Palau under …

KV Saravi, S Saeidi-Sar, MR Ramezanpour, B Roudi - Biologia, 2022 - Springer
Mycorrhizal fungi can reduce cadmium (Cd) uptake and improve plant tolerance to Cd
toxicity. However, the effective role of the sulfur assimilation pathway in this process is not …

Contribution of Funneliformis mosseae symbiosis to the regulation of sulfur assimilation, glyoxalase system and ionic homeostasis in Aloysia citriodora Palau under …

KV Saravi, S Saeidi-Sar, MR Ramezanpour, B Roudi - 2022 - cabidigitallibrary.org
Mycorrhizal fungi can reduce cadmium (Cd) uptake and improve plant tolerance to Cd
toxicity. However, the effective role of the sulfur assimilation pathway in this process is not …

Contribution of Funneliformis mosseae symbiosis to the regulation of sulfur assimilation, glyoxalase system and ionic homeostasis in Aloysia citriodora Palau under …

KV Saravi, S Saeidi-Sar, MR Ramezanpour… - Biologia, 2022 - search.ebscohost.com
Mycorrhizal fungi can reduce cadmium (Cd) uptake and improve plant tolerance to Cd
toxicity. However, the effective role of the sulfur assimilation pathway in this process is not …

[引用][C] Contribution of Funneliformis mosseae symbiosis to the regulation of sulfur assimilation, glyoxalase system and ionic homeostasis in Aloysia citriodora Palau …

KV Saravi, S Saeidi-Sar, MR Ramezanpour… - Biologia, 2022 - ui.adsabs.harvard.edu
Contribution of Funneliformis mosseae symbiosis to the regulation of sulfur assimilation,
glyoxalase system and ionic homeostasis in Aloysia citriodora Palau under cadmium toxicity …