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Analysis of different leaves from transgenic plants over expressing microRNA miR156. Time-dependent gene expression is essential for developmental timing control. MiR156 was characterized as a time-dependent expressed microRNA during leaf development. The level of miR156 is positive correlated to de...
ORGANISM(S): Oryza sativa Japonica Group 
Alfalfa is the most produced perennial forage crop in Canada. Drought stress is a major form of abiotic stress, affecting its productivity and annual yield. A small RNA, miR156, plays a major role in drought tolerance by downregulating downstream SPL genes, but its effects at the proteome level are ...
ORGANISM(S): Medicago sativa (Alfalfa) 
2023-10-19 | PXD028329 | Pride
The highly conserved plant microRNA, miR156, is an essential regulator for plant development. We found miR156 changed gradually during leaf development. To find how miR156 regulated genes temporally, we analyzed the transcriptome of old and young leaves from miR156-overexpressed and wild type plants...
ORGANISM(S): Oryza sativa Oryza sativa Japonica Group 
2010-10-26 | GSE14692 | GEO
The grain yield modulator miR156 regulates seed dormancy through the gibberellin pathway in rice
Chromatin remodeler SPLAYED maintains the balance of miR156 dependent developmental pathways in Arabidopsis
Heat stress and extreme temperatures negatively affect plant development by disrupting regular cellular and biochemical functions, ultimately leading to reduced crop production. Recently, our group has shown through physiological experiments that miR156 overexpression resulted in an improved alfalfa...
ORGANISM(S): Medicago sativa (Alfalfa) 
2020-10-16 | PXD019560 | Pride
Microarray analysis was performed to determine downstream gene expression effects of miR156 overexpression. Three tillers were collected from each plot, resulting in four biological replicates for each of the four transgenic and ‘Alamo’ nontransgenic control lines.
ORGANISM(S): Panicum virgatum 
The widespread agricultural problem of pre-harvest sprouting (PHS) could potentially be overcome by improving seed dormancy. Here, we report that miR156, an important grain yield regulator, also controls seed dormancy in rice. We found that mutations in one MIR156 subfamily enhance seed dormancy and...
ORGANISM(S): Oryza sativa 
2019-09-03 | GSE131243 | GEO
In plants, micro RNAs and chromatin remodeling are both known to regulate plant development and reproduction, however evidences for molecular links between these pathways have remained sparse. The antagonistic activities of miR156 and its target mRNAs, encoding several SQUAMOSA PROMOTER BINDING PROT...
ORGANISM(S): Arabidopsis thaliana 
2020-10-12 | GSE104665 | GEO
Microarray analysis of wild type plants and plants with reduced (ago1-27 and se-1) or increased miR156 levels (se-1 p35S:MIR156). Shoot apices were dissected from 20-day-old, short-day grown plants.
ORGANISM(S): Arabidopsis thaliana 
2009-06-12 | GSE16061 | GEO
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