Jack of many trades: The multifaceted role of miR528 in monocots.
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[1] Songnian Hu,et al. Fine-Tuning of MiR528 Accumulation Modulates Flowering Time in Rice. , 2019, Molecular plant.
[2] Jianguo Wu,et al. Transcriptional Regulation of miR528 by OsSPL9 Orchestrates Antiviral Response in Rice. , 2019, Molecular plant.
[3] Hong Zhu,et al. Banana sRNAome and degradome identify microRNAs functioning in differential responses to temperature stress , 2019, BMC Genomics.
[4] C. Fu,et al. MicroRNA528 Affects Lodging Resistance of Maize by Regulating Lignin Biosynthesis under Nitrogen-Luxury Conditions. , 2018, Molecular plant.
[5] M. Pilon. The copper microRNAs. , 2017, The New phytologist.
[6] Y. Qi,et al. ROS accumulation and antiviral defence control by microRNA528 in rice , 2017, Nature Plants.
[7] Dayong Li,et al. Constitutive Expression of Rice MicroRNA528 Alters Plant Development and Enhances Tolerance to Salinity Stress and Nitrogen Starvation in Creeping Bentgrass1[OPEN] , 2015, Plant Physiology.
[8] Y. Qi,et al. Viral-inducible Argonaute18 confers broad-spectrum virus resistance in rice by sequestering a host microRNA , 2015, eLife.
[9] Josh T. Cuperus,et al. Evolution and Functional Diversification of MIRNA Genes , 2011, Plant Cell.
[10] Xiaofeng Cao,et al. Degradome sequencing reveals endogenous small RNA targets in rice (Oryza sativa L. ssp. indica) , 2010, Frontiers in Biology.
[11] Detlef Weigel,et al. Highly Specific Gene Silencing by Artificial miRNAs in Rice , 2008, PloS one.
[12] L. Xiong,et al. Genomic Organization, Differential Expression, and Interaction of SQUAMOSA Promoter-Binding-Like Transcription Factors and microRNA156 in Rice1[W] , 2006, Plant Physiology.
[13] B. Liu,et al. Loss of Function of OsDCL1 Affects MicroRNA Accumulation and Causes Developmental Defects in Rice1[w] , 2005, Plant Physiology.