Arabidopsis and maize terminator strength is determined by GC content, polyadenylation motifs and cleavage probability

Author:

Gorjifard SayehORCID,Jores TobiasORCID,Tonnies JacksonORCID,Mueth Nicholas A.,Bubb Kerry,Wrightsman Travis,Buckler Edward S.ORCID,Fields StanleyORCID,Cuperus Josh T.ORCID,Queitsch ChristineORCID

Abstract

AbstractThe 3’ end of a gene, often called a terminator, modulates mRNA stability, localization, translation, and polyadenylation. Here, we adapted Plant STARR-seq, a massively parallel reporter assay, to measure the activity of over 50,000 terminators from the plants Arabidopsis thaliana and Zea mays. We characterize thousands of plant terminators, including many that outperform bacterial terminators commonly used in plants. Terminator activity is species-specific, differing in tobacco leaf and maize protoplast assays. While recapitulating known biology, our results reveal the relative contributions of polyadenylation motifs to terminator strength. We built a computational model to predict terminator strength and used it to conduct in silico evolution that generated optimized synthetic terminators. Additionally, we discover alternative polyadenylation sites across tens of thousands of terminators; however, the strongest terminators tend to have a dominant cleavage site. Our results establish features of plant terminator function and identify strong naturally occurring and synthetic terminators.

Funder

National Science Foundation

U.S. Department of Health & Human Services | National Institutes of Health

United States Department of Agriculture | National Institute of Food and Agriculture

Publisher

Springer Science and Business Media LLC

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