| Literature DB >> 30092808 |
Jing Xi1,2, Minesh Patel1,3, Shujie Dong4, Qiudeng Que4, Rongda Qu5.
Abstract
BACKGROUND: Large T-DNA fragment transfer has long been a problem for Agrobacterium-mediated transformation. Although vector systems, such as the BIBAC series, were successfully developed for the purpose, low transformation efficiencies were consistently observed.Entities:
Keywords: Agrobacterium; BIBAC; Immuno-precipitation; Large T-DNA; Monocot transformation
Mesh:
Substances:
Year: 2018 PMID: 30092808 PMCID: PMC6085696 DOI: 10.1186/s12896-018-0459-5
Source DB: PubMed Journal: BMC Biotechnol ISSN: 1472-6750 Impact factor: 2.563
Fig. 1Plasmid constructs used in this study. a The scheme of the T-DNA regions of the BIBAC2 vector and BIBAC2 test constructs containing a 5-kb Arabidopsis genomic DNA fragment (pB5) or a 50-kb yeast genomic DNA fragment (pB50); b The scheme of the T-DNA regions of pCAMBIA1301 vector and pCAMBIA1301 test construct containing a 5-kb Arabidopsis genomic DNA fragment (pC5). “qPCR” indicates the locations of gene fragments of GUS/HYG that are amplified for qPCR assays
Fig. 2T-strand-immunoprecipitation and qPCR assay in Agrobacterium cells after AS induction. a Immunoblot analysis to examine the antibody against VirD2. The GST-VirD2, but not GST, can be detected by the antibody against VirD2. GST-VirD2 bands are indicated by the red arrow. Increased amount of GST-VirD2 (2.5 ng and 10 ng) is indicated by the black triangle. b Immunoblot analysis of VirD2 expression level (upper panel) in Agrobacterium cells after various hours of AS induction. Total protein is detected with Coomassie brilliant blue (CBB) staining (lower panel). c Comparison of the fold change of immunoprecipitated (IPed) T-strands between B5 and B50 tested with the left border marker. d Comparison of the fold change of IPed T-strands between B5 and B50 tested with the right border marker. e Comparison of the fold change of IPed T-strands between C5 and B5 tested with the left border marker. f Comparison of the fold change of IPed T-strands between pC5 and pB5 tested with the right border marker. Data represent means and standard errors (n = 3). ***p < 0.001, **p < 0.01, *p < 0.05 show significance level in Student’s t test
Fig. 3The effect of AS induction time on GUS transcript level in B50 infected rice calli. The real-time qPCR analysis shows that the AS induction time (3, 9 and 24 h) affects the GUS transcript level in infected rice calli. Rice transformation was performed as described above. Samples of infected rice calli were collected after 3 days of co-cultivation. Total RNA was extracted and qRT-PCR was performed for transient GUS transcripts. The relative fold change of GUS expression level is calculated against the GUS expression level with 3-h AS induction before transformation. Data represent means and standard errors (n = 3). The p values in Student’s t tests are shown