Efficacy of plant growth-promoting rhizobacteria and novel acidified organic amendment to remediate Cd-contaminated soil by Brassica juncea L

Author:

Ashraf SanaORCID,Ahmad Sajid Rashid,Ali Qasim,Ashraf Sobia,Majid Zahra

Funder

Higher Education Commision, Pakistan

Publisher

Springer Science and Business Media LLC

Reference85 articles.

1. Abbas SZ, Rafatullah M, Ismail N, Lalung J (2014) Isolation, identification, and characterization of cadmium resistant Pseudomonas sp. M3 from industrial wastewater. J Waste Manag 2014:1–6

2. Abdollahi S, Golchin A, Shahryari F, Alamdari P (2020) PGPR inoculation of a contaminated soil affects plant growth and phytoavailability of Cd and Pb. Arch Agron Soil Sci. 68:1–18

3. Ahammed GJ, Li CX, Li X, Liu A, Chen S, Zhou J (2021) Overexpression of tomato RING E3 ubiquitin ligase gene SlRING1 confers cadmium tolerance by attenuating cadmium accumulation and oxidative stress. Physiol Plant 173(1):449–459

4. Ali H, Khan E, Sajad MA (2013) Phytoremediation of heavy metals-concepts and applications. Chemosphere 91(7):869–881

5. Ali B, Gill RA, Yang S, Gill MB, Ali S, Rafiq MT, Zhou W (2014a) Hydrogen sulfide alleviates cadmium-induced morpho-physiological and ultrastructural changes in Brassica napus. Ecotoxicol Environ Saf 110:197–207

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