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16 results on '"Shrivastava AK"'

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1. Cadmium-mediated morphological, biochemical and physiological tuning in three different Anabaena species.

2. Decoding the role of hypothetical protein All3255 of Anabaena PCC7120 in heavy metal stress management in Escherichia coli.

3. In silico characterization and transcriptomic analysis of nif family genes from Anabaena sp. PCC7120.

4. Alr2954 of Anabaena sp. PCC 7120 with ADP-ribose pyrophosphatase activity bestows abiotic stress tolerance in Escherichia coli.

5. Overexpression of AhpC enhances stress tolerance and N2-fixation in Anabaena by upregulating stress responsive genes.

6. Comparative proteomics of wild type, An+ahpC and An∆ahpC strains of Anabaena sp. PCC7120 demonstrates AhpC mediated augmentation of photosynthesis, N2-fixation and modulation of regulatory network of antioxidative proteins.

7. In silico and wet-lab study revealed cadmium is the potent inhibitor of HupL in Anabaena sp. PC C 7120.

8. UV-B stress induced metabolic rearrangements explored with comparative proteomics in three Anabaena species.

9. Cadmium toxicity in diazotrophic Anabaena spp. adjudged by hasty up-accumulation of transporter and signaling and severe down-accumulation of nitrogen metabolism proteins.

10. A novel alkyl hydroperoxidase (AhpD) of Anabaena PCC7120 confers abiotic stress tolerance in Escherichia coli.

11. Arsenic and cadmium are inhibitors of cyanobacterial dinitrogenase reductase (nifH1) gene.

12. Comparative proteomics unveils cross species variations in Anabaena under salt stress.

13. Molecular characterization of Alr1105 a novel arsenate reductase of the diazotrophic cyanobacterium Anabaena sp. PCC7120 and decoding its role in abiotic stress management in Escherichia coli.

14. Salt and UV-B induced changes in Anabaena PCC 7120: physiological, proteomic and bioinformatic perspectives.

15. A new arsenate reductase involved in arsenic detoxification in Anabaena sp. PCC7120.

16. alr0882 encoding a hypothetical protein of Anabaena PCC7120 protects Escherichia coli from nutrient starvation and abiotic stresses.

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