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G begin et al. BMC Plant Biology 2012, 12:18 http://www.biomedcentral.com/1471-2229/12/18 RESEARCH ARTICLE Open Access Identification of novel microRNA in Have brasiliensis and computational prediction
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How to fill out identification of novel microRNAs:

01
Start by collecting relevant biological samples or datasets that contain potential novel microRNAs. This could include tissue samples, cell cultures, or high-throughput sequencing data.
02
Use bioinformatics tools and algorithms to preprocess and analyze the collected data. This may involve quality control checks, trimming adapter sequences, filtering out low-quality reads, and aligning the sequences to a reference genome or transcriptome.
03
Explore the processed data to identify potential novel microRNAs. This can be done by searching for sequences that do not match any known microRNAs or by using specific criteria like hairpin structure prediction, conservation analysis, and expression profiling.
04
Validate the candidate novel microRNAs using experimental approaches. This can include techniques such as quantitative PCR, microarray analysis, or deep sequencing.
05
Once validated, annotate and characterize the novel microRNAs. Assign unique identifiers or names to each novel microRNA and provide detailed information about their genomic location, hairpin structure, expression patterns, and potential target genes.

Who needs identification of novel microRNAs:

01
Researchers studying small non-coding RNAs: Identifying novel microRNAs is crucial for understanding their role in gene regulation and disease processes. Researchers in fields like molecular biology, genetics, and bioinformatics often rely on accurate identification of novel microRNAs for their studies.
02
Pharmaceutical companies: Novel microRNAs have the potential to be targeted for therapeutic purposes. Pharmaceutical companies may be interested in identifying and characterizing novel microRNAs as potential drug targets or for the development of innovative gene therapies.
03
Crop scientists: MicroRNAs play important roles in plant growth, development, and stress responses. Identifying novel microRNAs in crops can provide insights into their regulatory mechanisms and could be used for crop improvement and genetic engineering.
04
Diagnostic laboratories: MicroRNAs are being investigated as biomarkers for various diseases, including cancer. Identification of novel microRNAs can aid in the development of diagnostic tests for early disease detection and personalized medicine.
05
Biotechnology companies: Novel microRNAs may have applications in biotechnology and genetic engineering. Biotech companies may be interested in identifying and utilizing novel microRNAs for the production of biofuels, bioplastics, and other valuable biochemicals.
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Identification of novel micrornas is the process of discovering and documenting new microRNAs that have not been previously identified.
Researchers, scientists, and organizations studying microRNAs are typically required to file identification of novel microRNAs.
To fill out identification of novel microRNAs, researchers must follow specific protocols and guidelines established by relevant regulatory bodies.
The purpose of identification of novel microRNAs is to expand our knowledge of microRNA diversity and functionality in biological processes.
The information reported on identification of novel microRNAs typically includes details on the sequence, expression levels, and potential target genes of the newly identified microRNAs.
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