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Biogenically engineered nanoparticles inhibit causing soft-rot of ginger. | LitMetric

Biogenically engineered nanoparticles inhibit causing soft-rot of ginger.

IET Nanobiotechnol

Department of Biotechnology, Nanobiotechnology Laboratory, SGB Amravati University, Amravati, Maharashtra, India.

Published: December 2018

Soft-rot of ginger () is the most important disease usually caused by () leading to significant yield loss. In this study, chitosan, copper and sulphur nanoparticles synthesised from leaf extract of selected plants were screened against two isolates of recovered from the infected rhizome of ginger and soil samples. Moreover, among these, sulphur nanoparticles showed maximum inhibition of isolated from soil samples (ZOI = 12.33 mm) followed by copper (ZOI = >12 mm) and chitosan nanoparticles (ZOI = >9 mm). Similarly, in the case of isolated from infected ginger, sulphur nanoparticles showed maximum inhibition (ZOI = 13.33) as compared to copper (ZOI = >11 mm) and chitosan nanoparticles (ZOI = >9 mm). Considering the high efficacy, sulphur nanoparticles were further evaluated in combination with commercial fungicides, viz., bavistin, ridomil gold, sunflex and streptocycline. The combination of sulphur nanoparticles with bavistin demonstrated maximum inhibition (ZOI = 45.16 mm, MIC -20 µg/ml), whereas the minimum inhibition was shown by its combination with ridomil gold (ZOI = 10.5 mm, MIC -40 µg/ml). Therefore, it can be concluded that the combination of sulphur nanoparticles with bavistin can be used for effective and eco-friendly management of causing soft-rot of ginger.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8676519PMC
http://dx.doi.org/10.1049/iet-nbt.2018.5086DOI Listing

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