ABSTRACT. Infection of Pinus radiata D.Don with Agrobacterium rhizogenes strains A4 and. R1601 was demonstrated through greenhouse inoculation of seedlings filexlib. by Agrobacterium rhizogenes strain ARqua1 with a transformation efficiency of 78.51%. The ARqua1 strain harboring both Ri plasmid and binary GUS: β-Glucuronidase LB broth: Luria–Bertani broth MS media: Murashige and Skoog media PCR: Polymerase chain reaction
A. rhizogenes differs from A. tumefaciens in that it contains native bacterial rol genes, which are often co-transformed with genes of
This study aimed at optimizing an Agrobacterium rhizogenes-mediated transformation protocol for the generation of composite lentil plantlets, comprised of
A. rhizogenes, the causative agent of hairy root syndrome, is a common soil organism capable hairy root formation is the transfer of several bacterial.
We first established a rapid and efficient transformation system for the study of gene function in hairy roots of litchi using A. rhizogenes
An efficient protocol for hairy root induction in Berberis aristata DC. was established using two different strains of Agrobacterium rhizogenes,
This study aimed to investigate the response of C. annuum seedlings (sweet variety) to the formation transformed hairy roots induced by A. Development of hairy root cultures: Hairy roots were developed at the inoculation sites after 10 days. Young hairy roots were enu
rhizogenes-mediated hairy root transformation system that enables the rapid characterization of gene function and gene editing in soybean. This
However, several species of agrobacteria cause neoplastic diseases in plants, including Agrobacter- ium rhizogenes (hairy root disease), Agrobacterium rubi.
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