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Massive Analysis of Rice Small RNAs: Mechanistic Implications of Regulated MicroRNAs and Variants for Differential Target RNA Cleavage.

JEONG DH
•
PARK S
•
ZHAI J
altro
DE PAOLI, Emanuele
2011
  • journal article

Periodico
PLANT CELL
Abstract
Small RNAs have a variety of important roles in plant development, stress responses, and other processes. They exert their influence by guiding mRNA cleavage, translational repression, and chromatin modification. To identify previously unknown rice (Oryza sativa) microRNAs (miRNAs) and those regulated by environmental stress, 62 small RNA libraries were constructed from rice plants and used for deep sequencing with Illumina technology. The libraries represent several tissues from control plants and plants subjected to different environmental stress treatments. More than 94 million genome-matched reads were obtained, resulting in more than 16 million distinct small RNA sequences. This allowed an evaluation of similar to 400 annotated miRNAs with current criteria and the finding that among these, similar to 150 had small interfering RNA-like characteristics. Seventy-six new miRNAs were found, and miRNAs regulated in response to water stress, nutrient stress, or temperature stress were identified. Among the new examples of miRNA regulation were members of the same miRNA family that were differentially regulated in different organs and had distinct sequences Some of these distinct family members result in differential target cleavage and provide new insight about how an agriculturally important rice phenotype could be regulated in the panicle. This high-resolution analysis of rice miRNAs should be relevant to plant miRNAs in general, particularly in the Poaceae.
DOI
10.1105/tpc.111.089045
WOS
WOS:000299677700007
Archivio
http://hdl.handle.net/11390/869373
info:eu-repo/semantics/altIdentifier/scopus/2-s2.0-84863012576
http://www.plantcell.org/content/early/2011/12/06/tpc.111.089045.long
Diritti
metadata only access
Scopus© citazioni
252
Data di acquisizione
Jun 14, 2022
Vedi dettagli
Web of Science© citazioni
251
Data di acquisizione
Mar 24, 2024
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