Cicer arietinum |
Enhanced SOD, CAT and POD enzymes activities under Cd stress |
Hayat et al. (2013) |
Eurya emarginata |
Alleviated salt stress by increasing the CAT, POD, and GPX enzymes activities |
Zheng et al. (2015) |
Glycine max |
Enhanced nitrogenase activity under drought stress in bacteroid nodule |
Pedersen et al. (1996) |
Mung bean |
Increased phenolics content under chilling stress |
Posmyk and Janas (2007) |
Alleviated salt stress by enhancement of glutathione rductase (GR), glutathione peroxidase (GPX), ascorbate peroxidase (APX), dehydroascorbate reductase (DHAR), and glutathione S-transferase (GST) activities |
Hossain and Fujita (2010) |
Nicotiana tabacum |
Alleviated salt stress by reducing membrane damage |
Okuma et al. (2004) |
Increased superoxide dismutase, L-proline oxidase and catalase activities in salt stress condition |
Hoque et al. (2007a) |
Nicotiana tabacum cv. Bright Yellow-2 (BY-2) cells |
Enhanced antioxidative enzymes activities (CAT and SOD) under Cd stress |
Islam et al. (2009) |
Olea europaea cv. Chemlali |
Increased SOD, CAT and APX enzymes activities under salt stress |
Ben Ahmed et al. (2010) |
Mitigated Cd stress by improvement of antioxidative enzymes activities such as CAT, SOD, GPX and APX |
Zouari et al. (2016) |
Pancratium maritimum |
Mitigated salt stress by protecting enzymes |
Khedr et al. (2003) |
Phoenix dactylifera |
Enhanced catalase, glutathione peroxidase and superoxide dismutase activities in both leaves and roots under Cd stress |
Zouari et al. (2016) |
Vicia faba |
Increased soluble sugar, hydrolysable sugar and soluble protein contents under salt stress |
Gadallah (1999) |
Zea mays |
Protect 3D structure of enzymes against cold stress |
Schobert (1977); Paleg et al. (1984)
|
L-proline-primed seed increases POD and APX activity while soil watered with 5 μM and 50 μM concentration of Cd |
Karalija and Selovic (2018) |