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5 publications mentioning csi-MIR169l

Open access articles that are associated with the species Citrus sinensis and mention the gene name MIR169l. Click the [+] symbols to view sentences that include the gene name, or the word cloud on the right for a summary.

[+] score: 14
In Arabidopsis, the expression of miR169 was inhibited by N-deficiency, while the expression levels of its target genes [i. e., NFYA2 (Nuclear Factor Y, subunit A2), NFYA3, NFYA5 and NFYA8] were increased [10, 13, 27, 29]. [score:9]
Transgenic Arabidopsis plants over -expressing miR169a had less accumulation of N and NFYA family members, and were more sensitive to N stress than the wild type, demonstrating a role for miR169 in the adaptation of plants to N-deficiency [29]. [score:3]
It is worth noting that some N-deficiency-responsive miRNAs (e. g., miR169, miR172, miR394, miR395, miR397, miR398, miR399, miR827, miR408 and miR857) are also responsive to other nutrient stresses (i. e., B, P, Fe, S and Cu deficiencies) in plants [8, 10], indicating the involvement of miRNA -mediated crosstalk among N, B, P, Fe, S and Cu under N-deficiency. [score:1]
In addition, many other P-deficiency-responsive miRNAs (i. e., miR1510, miR156, miR159, miR166, miR169, miR2109, miR395, miR397, miR398, miR408, miR447 and miR482) have been isolated from various plant species [15– 21]. [score:1]
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[+] score: 11
In Arabidopsis, miR169 was greatly repressed and its target genes, NFYA (Nuclear Factor Y, subunit A) family members, were greatly up-regulated by N-deficiency. [score:6]
Transgenic Arabidopsis plants over -expressing miR169a had lower N level, and displayed less tolerance to N-deficiency than the wild type, indicating the possible roles of miR169 in helping plants to deal with N-starvation (Zhao et al., 2011). [score:3]
Also, many other miRNAs such as miR156, miR159, miR166, miR169, miR395, miR397, miR398, miR408, miR447, miR482, miR1510 and miR2109 are involved in plant response to P-limitation (Valdés-López et al., 2010; Hackenberg et al., 2013; Zhao et al., 2013; Paul et al., 2015). [score:1]
Involvement of miR169 in the nitrogen-starvation responses in Arabidopsis. [score:1]
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[+] score: 4
N-deficiency -induced down-regulation of miR169 has been demonstrated to be an adaptive strategy of plants to N-starvation via N-uptake and remobilization [24, 30]. [score:4]
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[+] score: 3
3, csi-miR4414.1, csi-miR391b, csi-miR1432a, the csi-miR169 family and the csi-miR171 family, were expressed in leaf and flower but were not detected in fruit. [score:3]
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[+] score: 3
NF-YA transcripts are also regulated at post-transcriptional level by the action of microRNA169 (miR169) that binds to the 3’-UTR and promotes their cleavage by the slicing protein Argonaute 1 [4, 8]. [score:2]
Involvement of miR169 in the nitrogen-starvation responses in Arabidopsis. [score:1]
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