AI Article Synopsis

  • Gene expression analysis is vital for understanding plant development, and the M2WISH protocol improves this by using microwave treatment for effective mRNA in situ hybridization in Arabidopsis.
  • M2WISH allows for high-quality and uniform hybridization while preserving cellular organization, enabling detailed investigation of gene expression dynamics.
  • The protocol revealed insights into how shoot apical meristems can develop from different root structures based on CLV3 expression patterns, producing valuable data for modeling complex biological systems.

Article Abstract

Gene expression analysis is essential for understanding the mechanisms involved in plant development. Here, we developed M2WISH, a protocol based on MicroWave treatment for Wholemount mRNA In Situ Hybridization in Arabidopsis. By permeabilizing tissues without damaging cellular organization this protocol results in high and homogeneous hybridization yields that enable systematic analysis of gene expression dynamics. Moreover, when combined with cellular histochemical staining, M2WISH successfully provides a cellular resolution of gene expression. Thus, we demonstrate the robustness of M2WISH with 10 genes on roots, aerial meristems, leaves, and embryos in the seed. We applied M2WISH to study the spatial dynamics of WUSCHEL (WUS) and CLAVATA3 (CLV3) expression during in vitro meristematic conversion of roots into shoot apical meristems. Thus, we showed that shoot apical meristems could arise from two different types of root structures that differed by their CLV3 gene expression patterns. We constructed 3D cellular representations of WUS and CLV3 gene co-expression pattern and stressed the variability inherent to meristem conversion. Thus, this protocol generates a large amount of data on the localization of gene expression, which can be used to model complex systems.

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Source
http://dx.doi.org/10.1111/tpj.16792DOI Listing

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