Back to Search Start Over

GC-rich coding sequences reduce transposon-like, small RNA-mediated transgene silencing

Authors :
Lyudmila Sidorenko
Woosley Aaron T
Tzuu-fen Lee
Glancy Todd P
P. Ann Owens Merlo
William Moskal
Scott Bevan
Po-Hao Wang
Xiujuan Wang
Terence A. Walsh
Blake C. Meyers
Xiaozeng Yang
Staci A. Weaver
Shreedharan Sriram
Source :
Nature plants. 3(11)
Publication Year :
2015

Abstract

The molecular basis of transgene susceptibility to silencing is poorly characterized in plants; thus, we evaluated several transgene design parameters as means to reduce heritable transgene silencing. Analyses of Arabidopsis plants with transgenes encoding a microalgal polyunsaturated fatty acid (PUFA) synthase revealed that small RNA (sRNA)-mediated silencing, combined with the use of repetitive regulatory elements, led to aggressive transposon-like silencing of canola-biased PUFA synthase transgenes. Diversifying regulatory sequences and using native microalgal coding sequences (CDSs) with higher GC content improved transgene expression and resulted in a remarkable trans-generational stability via reduced accumulation of sRNAs and DNA methylation. Further experiments in maize with transgenes individually expressing three crystal (Cry) proteins from Bacillus thuringiensis (Bt) tested the impact of CDS recoding using different codon bias tables. Transgenes with higher GC content exhibited increased transcript and protein accumulation. These results demonstrate that the sequence composition of transgene CDSs can directly impact silencing, providing design strategies for increasing transgene expression levels and reducing risks of heritable loss of transgene expression.

Details

ISSN :
20550278
Volume :
3
Issue :
11
Database :
OpenAIRE
Journal :
Nature plants
Accession number :
edsair.doi.dedup.....813790dbc3e72eb4cfc4d5fa7c7e76b7