Spatially resolved transcriptomic analysis of the germinating barley grain

Author:

Peirats-Llobet Marta1ORCID,Yi Changyu1ORCID,Liew Lim Chee1ORCID,Berkowitz Oliver12ORCID,Narsai Reena1,Lewsey Mathew G12,Whelan James123ORCID

Affiliation:

1. Department of Animal, Plant and Soil Science, La Trobe Institute for Sustainable Agriculture and Food, School of Agriculture, Biomedical and Environmental Sciences, La Trobe University , Bundoora , Victoria  3086, Australia

2. Australian Research Council Research Hub for Medicinal Agriculture, AgriBio Building, La Trobe University , Bundoora , VIC  3086 , Australia

3. Research Centre for Engineering Biology, College of Life Science, Zhejiang University , 718 East Haizhou Road , Haining , Jiaxing , Zhejiang  314400, China

Abstract

AbstractSeeds are a vital source of calories for humans and a unique stage in the life cycle of flowering plants. During seed germination, the embryo undergoes major developmental transitions to become a seedling. Studying gene expression in individual seed cell types has been challenging due to the lack of spatial information or low throughput of existing methods. To overcome these limitations, a spatial transcriptomics workflow was developed for germinating barley grain. This approach enabled high-throughput analysis of spatial gene expression, revealing specific spatial expression patterns of various functional gene categories at a sub-tissue level. This study revealed over 14 000 genes differentially regulated during the first 24 h after imbibition. Individual genes, such as the aquaporin gene family, starch degradation, cell wall modification, transport processes, ribosomal proteins and transcription factors, were found to have specific spatial expression patterns over time. Using spatial autocorrelation algorithms, we identified auxin transport genes that had increasingly focused expression within subdomains of the embryo over time, suggesting their role in establishing the embryo axis. Overall, our study provides an unprecedented spatially resolved cellular map for barley germination and identifies specific functional genomics targets to better understand cellular restricted processes during germination. The data can be viewed at https://spatial.latrobe.edu.au/.

Funder

Australian Research Council

ARC

Zhejiang Provincial government

Publisher

Oxford University Press (OUP)

Subject

Genetics

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