rhizobium rhizogenes
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Author(s):  
Siel Desmet ◽  
Emmy Dhooghe ◽  
Ellen De Keyser ◽  
Johan Van Huylenbroeck ◽  
Danny Geelen

Cells ◽  
2021 ◽  
Vol 10 (5) ◽  
pp. 1242
Author(s):  
Tomasz Kowalczyk ◽  
Anna Merecz-Sadowska ◽  
Patricia Rijo ◽  
Vera M. S. Isca ◽  
Laurent Picot ◽  
...  

According to the present knowledge, this is the first report on establishing transformed root cultures of Leonotis nepetifolia after Rhizobium rhizogenes-mediated transformation. The preliminary phytochemical analysis showed differences in the content of phenols and flavonoids in transformed and nontransformed roots. The dominant compounds in the analyzed extracts were (+)-catechin (5464 and 6808 µg/g DW), p-coumaric acid (2549 and 4907 µg/g DW), m-coumaric acid (1508 and 2048 µg/g DW) and rosmarinic acid (1844 and 2643 µg/g DW) for nontransformed (LNNR) and transformed (LNTR4) roots, respectively. Initial biological studies carried out on LNNR, and LNTR4 extracts showed a cytotoxic effect on the A549 lung, HCC1937 breast and leukemia NALM-6 cell lines, antioxidants, as well as repair and protection against DNA damage induced by H2O2 in HUVEC cells. Due to the stronger effect of the LNTR4 root extract, which can be a relatively efficient and cheap source of bioactive secondary metabolites, further biological analyses are needed to discover in detail their potentially valuable biological properties.


2021 ◽  
Vol 17 (3) ◽  
Author(s):  
Shigeki Moriya ◽  
Hiroshi Iwanami ◽  
Takashi Haji ◽  
Kazuma Okada ◽  
Taku Shimizu ◽  
...  

Author(s):  
Marjolein Hooykaas ◽  
Paul Hooykaas

We report here the complete genome sequence of the Rhizobium rhizogenes (formerly Agrobacterium rhizogenes) strain LBA9402 (NCPPB1855rifR), a pathogenic strain causing hairy root disease. In order to assemble a complete genome we obtained short-reads from Illumina sequencing as well as long-reads from Oxford Nanopore Technology sequencing. The genome consists of a 3,958,212 bp chromosome, a 2,005,144 bp chromid (secondary chromosome) and a 252,168 bp Ri plasmid (pRi1855), respectively. The primary chromosome was very similar to that of the avirulent biocontrol strain K84, but the chromid showed a 724 kbp deletion accompanied by a large 1.8 Mbp inversion revealing the dynamic nature of these secondary chromosomes. The sequence of the agropine Ri plasmid was compared to other types of Ri and Ti plasmids. Thus we identified the genes responsible for agropine catabolism, but also a unique segment adjacent to the TL-region that has the signature of a new opine catabolic gene cluster including the three genes that together encode an opine dehydrogenase. Our sequence analysis also revealed a novel gene at the very right end of the TL-DNA, which is unique for the agropine Ri plasmid. The protein encoded by this gene was most related to the succinamopine synthases of chrysopine and agropine Ti plasmids and thus may be involved in synthesis of the unknown opine that can be degraded by the adjacent catabolic cluster. The available sequence will facilitate the use of R. rhizogenes and especially LBA9402 in both the laboratory and for biotechnological purposes.


2021 ◽  
pp. 341-382
Author(s):  
Marta Libik-Konieczny ◽  
Żaneta Michalec-Warzecha ◽  
Ireneusz Ślesak ◽  
Laura Pistelli

Euphytica ◽  
2020 ◽  
Vol 216 (12) ◽  
Author(s):  
Sophia Schiermacher Stavnstrup ◽  
Jaime Pérez Molina ◽  
Henrik Lütken ◽  
Renate Müller ◽  
Josefine Nymark Hegelund

Agronomy ◽  
2020 ◽  
Vol 10 (8) ◽  
pp. 1126
Author(s):  
Allen Kerr ◽  
Gary Bullard

The biocontrol of crown gall has been practised in Australia for 48 years. Control is so efficient that it is difficult to find a galled stone fruit tree, when previously, crown gall had been a major problem. This paper explains how it works and why only pathogens are inhibited. A commercial biopesticide is available in Australia, Canada, Chile, New Zealand, Turkey, the USA, South Africa and Japan. The challenges of commercialising a biopesticide are outlined. Rigid regulations are preventing the wider use of biocontrol organisms.


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