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1 publications mentioning nta-MIR162b

Open access articles that are associated with the species Nicotiana tabacum and mention the gene name MIR162b. Click the [+] symbols to view sentences that include the gene name, or the word cloud on the right for a summary.

1
[+] score: 16
In our experiment, the levels of miR162 were up regulated, which would suggest that the amount of miR162's target protein Dicer-Like 1 would decrease, consequently decreasing the amount of mature miRNAs that could be produced. [score:4]
The target site of miR162 is the Dicer-Like 1 protein that functions in the biogenesis of miRNAs in plants [5]. [score:3]
Nine miRNAs (miR159, miR162, miR167, miR169, miR395, miR396, miR397, miR398, and miR399) had statistically significant increases in fold change of expression (Figure 3). [score:3]
miR159, miR162, miR167, and miR169 were significantly up regulated with fold changes in the 1% Al [2]O [3] nanoparticle treatment of 5.9, 5.5, 11.4, and 6.0 fold, respectively. [score:2]
Our results show that nine miRNAs were significantly up regulated (miR159, miR162, miR167, miR169, miR395, miR396, miR397, miR398, and miR399) as the concentration of aluminum oxide nanoparticles increased. [score:2]
This implies that miRNA162 may have an alternate role in mediating abiotic stress response to aluminum oxide nanoparticle stress. [score:1]
We chose miR156, miR157, miR159, miR162, miR167, miR169, miR172, miR395, miR396, miR397, miR398, and miR399 because they are well known miRNAs that already have known functions in plants, but our aim was to see if they may have alternative uses in abiotic stress response to aluminum oxide nanoparticles. [score:1]
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