Literature DB >> 30577085

sRNA-FISH: versatile fluorescent in situ detection of small RNAs in plants.

Kun Huang1,2, Patricia Baldrich3, Blake C Meyers1,3,4, Jeffrey L Caplan1,2.   

Abstract

Localization of mRNA and small RNAs (sRNAs) is important for understanding their function. Fluorescent in situ hybridization (FISH) has been used extensively in animal systems to study the localization and expression of sRNAs. However, current methods for fluorescent in situ detection of sRNA in plant tissues are less developed. Here we report a protocol (sRNA-FISH) for efficient fluorescent detection of sRNAs in plants. This protocol is suitable for application in diverse plant species and tissue types. The use of locked nucleic acid probes and antibodies conjugated with different fluorophores allows the detection of two sRNAs in the same sample. Using this method, we have successfully detected the co-localization of miR2275 and a 24-nucleotide phased small interfering RNA in maize anther tapetal and archesporial cells. We describe how to overcome the common problem of the wide range of autofluorescence in embedded plant tissue using linear spectral unmixing on a laser scanning confocal microscope. For highly autofluorescent samples, we show that multi-photon fluorescence excitation microscopy can be used to separate the target sRNA-FISH signal from background autofluorescence. In contrast to colorimetric in situ hybridization, sRNA-FISH signals can be imaged using super-resolution microscopy to examine the subcellular localization of sRNAs. We detected maize miR2275 by super-resolution structured illumination microscopy and direct stochastic optical reconstruction microscopy. In this study, we describe how we overcame the challenges of adapting FISH for imaging in plant tissue and provide a step-by-step sRNA-FISH protocol for studying sRNAs at the cellular and even subcellular level.
© 2018 The Authors The Plant Journal © 2018 John Wiley & Sons Ltd.

Entities:  

Keywords:  zzm321990Litchi chinensiszzm321990; zzm321990Oryza sativazzm321990; zzm321990Zea mayszzm321990; zzm321990sRNAzzm321990; LNA probes; fluorescent in situ hybridization; immunofluorescence; microRNA; multi-photon microscopy; technical advance

Mesh:

Substances:

Year:  2019        PMID: 30577085      PMCID: PMC6465150          DOI: 10.1111/tpj.14210

Source DB:  PubMed          Journal:  Plant J        ISSN: 0960-7412            Impact factor:   6.417


  39 in total

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Journal:  Nature       Date:  2018-01-03       Impact factor: 49.962

5.  Fiji: an open-source platform for biological-image analysis.

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Journal:  Nat Methods       Date:  2012-06-28       Impact factor: 28.547

6.  MicroRNAs prevent precocious gene expression and enable pattern formation during plant embryogenesis.

Authors:  Michael D Nodine; David P Bartel
Journal:  Genes Dev       Date:  2010-12-01       Impact factor: 11.361

7.  Breaking the diffraction barrier: super-resolution imaging of cells.

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8.  Expression of Drosophila virilis retroelements and role of small RNAs in their intrastrain transposition.

Authors:  Nikolay V Rozhkov; Elena S Zelentsova; Natalia G Shostak; Michael B Evgen'ev
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9.  Redistribution of microtubules and pericentriolar material during the development of polarity in mouse blastomeres.

Authors:  E Houliston; S J Pickering; B Maro
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10.  Dual color fluorescence in situ hybridization (FISH) assays for detecting Mycobacterium tuberculosis and Mycobacterium avium complexes and related pathogens in cultures.

Authors:  Jyotsna Shah; Helena Weltman; Patricia Narciso; Christina Murphy; Akhila Poruri; Shrikala Baliga; Leesha Sharon; Mary York; Gail Cunningham; Steve Miller; Luz Caviedes; Robert Gilman; Edward Desmond; Ranjan Ramasamy
Journal:  PLoS One       Date:  2017-04-11       Impact factor: 3.240

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  5 in total

1.  Quantitative, super-resolution localization of small RNAs with sRNA-PAINT.

Authors:  Kun Huang; Feray Demirci; Mona Batish; Wayne Treible; Blake C Meyers; Jeffrey L Caplan
Journal:  Nucleic Acids Res       Date:  2020-09-18       Impact factor: 16.971

Review 2.  Tapetum-Dependent Male Meiosis Progression in Plants: Increasing Evidence Emerges.

Authors:  Xiaoning Lei; Bing Liu
Journal:  Front Plant Sci       Date:  2020-01-16       Impact factor: 5.753

3.  Biogenesis, Trafficking, and Function of Small RNAs in Plants.

Authors:  Yunjia Tang; Xiaoning Yan; Chenxian Gu; Xiaofeng Yuan
Journal:  Front Plant Sci       Date:  2022-02-17       Impact factor: 5.753

4.  Genome-Wide Identification and Characterization of Small Peptides in Maize.

Authors:  Yan Liang; Wanchao Zhu; Sijia Chen; Jia Qian; Lin Li
Journal:  Front Plant Sci       Date:  2021-06-16       Impact factor: 5.753

Review 5.  Research Tools for the Functional Genomics of Plant miRNAs During Zygotic and Somatic Embryogenesis.

Authors:  Anna Maria Wójcik
Journal:  Int J Mol Sci       Date:  2020-07-14       Impact factor: 5.923

  5 in total

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