Repositorium

What is a repositorium?

The repositorium is a searchable database that provides data on relevant articles from journals, company web pages and web pages of governmental agencies about studies/applications of genome-editing in model plants and agricultural crops in the period January 1996 to May 2018. Search options are article type, technique, plant, traits or free text. The repositorium is based on the systematic map of Dominik Modrzejewski et al., published in the journal environmental evidence. (Download article PDF).

CRISPR/Cas9 and TALENs generate heritable mutations for genes involved in small RNA processing of Glycine max and Medicago truncatula


Typ / Jahr

Journal Article / 2018

Autoren

Curtin, Shaun J.; Xiong, Yer; Michno, Jean-Michel; Campbell, Benjamin W.; Stec, Adrian O.; Čermák, Tomas; Starker, Colby; Voytas, Daniel F.; Eamens, Andrew L.; Stupar, Robert M.

Abstract

Processing of double-stranded RNA precursors into small RNAs is an essential regulator of gene expression in plant development and stress response. Small RNA processing requires the combined activity of a functionally diverse group of molecular components. However, in most of the plant species, there are insufficient mutant resources to functionally characterize each encoding gene. Here, mutations in loci encoding protein machinery involved in small RNA processing in soya bean and Medicago truncatula were generated using the CRISPR/Cas9 and TAL-effector nuclease (TALEN) mutagenesis platforms. An efficient CRISPR/Cas9 reagent was used to create a bi-allelic double mutant for the two soya bean paralogous Double-stranded RNA-binding2 (GmDrb2a and GmDrb2b) genes. These mutations, along with a CRISPR/Cas9-generated mutation of the M. truncatula Hua enhancer1 (MtHen1) gene, were determined to be germ-line transmissible. Furthermore, TALENs were used to generate a mutation within the soya bean Dicer-like2 gene. CRISPR/Cas9 mutagenesis of the soya bean Dicer-like3 gene and the GmHen1a gene was observed in the T0 generation, but these mutations failed to transmit to the T1 generation. The irregular transmission of induced mutations and the corresponding transgenes was investigated by whole-genome sequencing to reveal a spectrum of non-germ-line-targeted mutations and multiple transgene insertion events. Finally, a suite of combinatorial mutant plants were generated by combining the previously reported Gmdcl1a, Gmdcl1b and Gmdcl4b mutants with the Gmdrb2ab double mutant. Altogether, this study demonstrates the synergistic use of different genome engineering platforms to generate a collection of useful mutant plant lines for future study of small RNA processing in legume crops.

Keywords
CRISPR/Cas9; Drb2.; Medicago; mutagenesis; Small RNA; soya bean
Periodical
Plant biotechnology journal
Periodical Number
6
Page range
1125–1137
Volume
16
DOI
10.1111/pbi.12857

Techniques

ID Corresponding Author
Country
Plant Species GE Technique
Sequence Identifier
Trait
Type of Alteration
Progress in Research
Key Topic
955 Curtin, Shaun J.; Stupar, Robert M.
USA
Medicago truncatula CRISPR/Cas9
Hen1
No information
SDN1
Basic research
Basic research
956 Curtin, Shaun J.; Stupar, Robert M.
USA
Glycine max CRISPR/Cas9
GLYMA06G06061
enhanced sensitivity to drought stress
SDN1
Basic research
Basic research
957 Curtin, Shaun J.; Stupar, Robert M.
USA
Glycine max CRISPR/Cas9
GLYMA11G20530
enhanced sensitivity to drought stress
SDN1
Basic research
Basic research
958 Curtin, Shaun J.; Stupar, Robert M.
USA
Glycine max CRISPR/Cas9
Hen1a/b
No information
SDN1
Basic research
Basic research
959 Curtin, Shaun J.; Stupar, Robert M.
USA
Glycine max TALENs
Dcl2b
No information
SDN1
Basic research
Basic research