| Literature DB >> 21479829 |
Suxian Zhu1, Ying Li, Jack H Vossen, Richard G F Visser, Evert Jacobsen.
Abstract
Functional stacking of broad spectrum resistance (R) genes could potentially be an effective strategy for more durable disease resistance, for example, to potato late blight caused by Phytophthora infestans (Pi). For this reason, three broad spectrum potato R genes (Rpi), Rpi-sto1 (Solanum stoloniferum), Rpi-vnt1.1 (S. venturii) and Rpi-blb3 (S. bulbocastanum) were selected, combined into a single binary vector pBINPLUS and transformed into the susceptible cultivar Desiree. Among the 550 kanamycin resistant regenerants, 28 were further investigated by gene specific PCRs. All regenerants were positive for the nptII gene and 23 of them contained the three Rpi genes, referred to as triple Rpi gene transformants. Detached leaf assay and agro-infiltration of avirulence (Avr) genes showed that the 23 triple Rpi gene transformants were resistant to the selected isolates and showed HR with the three Avr effectors indicating functional stacking of all the three Rpi genes. It is concluded that Avr genes, corresponding to the R genes to be stacked, must be available in order to assay for functionality of each stack component. No indications were found for silencing or any other negative effects affecting the function of the inserted Rpi genes. The resistance spectrum of these 23 triple Rpi gene transformants was, as expected, a sum of the spectra from the three individual Rpi genes. This is the first example of a one-step approach for the simultaneous domestication of three natural R genes against a single disease by genetic transformation.Entities:
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Year: 2011 PMID: 21479829 PMCID: PMC3264857 DOI: 10.1007/s11248-011-9510-1
Source DB: PubMed Journal: Transgenic Res ISSN: 0962-8819 Impact factor: 2.788
DLA on transgenic Desiree plants harboring single Rpi genes using 44 isolates
| Isolate Plant | IPO-0 | Pic99177 | Pic99189 | Pic99183 | EC1 | USA618 | NL00228 | VK98014 | F95573 | 89148-09 | NO01096 | IPO-C | Set 1 | Set 2 | Set 3 | Set 4 |
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| Desiree: | S | S | SQ | SQ | R | R | R | R | R | R | R | Q | 4 R | 10 R | 12 R | 6 R |
| Desiree: | R | Q | S | R | R | S | Q | RQ | R | R | R | S | 4 R | 9 R;1S | 12 R | 3 R; 3 S |
| Desiree: | R | S | R | S | S | S | R | RQ | S | R | Q | S | 4 S | 10 S | 12 S | 6 S |
| Desiree: | R | R | R | R | S | R | R | R | R | R | R | R | 4 R | 10 R | 12 R | 6 R |
| Desiree | S | S | S | S | S | S | S | S | SQ | S | S | S | S | S | S | S |
Set 1 In house isolates 88069, H3PO4, 90128 and 428-2 gave the same resistance patterns for these four, different Rpi gene containing, transformants
Set 2 Ten isolates from province Inner Mongolia of China
Set 3 Eight isolates from province Hei Longjiang and four isolates from province Fu Jian of China
Set 4 Six isolates from province Yunnan of China
R all of the 8 inoculated spots on each leaf showed resistance
RQ 6–7 out of 8 spots on each leaf showed resistance
Q 3–5 out of 8 spots on each leaf showed resistance
SQ 1–2 out of 8 spots on each leaf showed resistance
S all of the 8 spots on each leaf showed susceptibility
aDesiree:Rpi-xxx: cv. Desiree transformant harbouring Rpi-xxx
bPart of the data of Rpi-vnt1.1 was adopted from Pel (2010)
Fig. 1Graphical view of binary vector pBINPLUS:Rpi-blb3:Rpi-vnt1.1:Rpi-sto1. Restriction enzyme cleavage sites, used for cloning of the Rpi genes into pBINPLUS have been indicated
Fig. 2Agro-infiltration of Avr effectors in triple Rpi gene regenerant A14 Z-22 using different densities of inoculum. Clear HR reactions were observed at all densities for Avr2, IpiO1 and Avrvnt1. Co-infiltration of R3a/Avr3a, and vnt1.1/Avrvnt-1 served as a positive controls. Empty vector pGRAB, and Agrobacterium strain AGL1 were negative controls. a Showed the infiltration with Avr2 and IpiO1. b Showed the infiltration with Avrvnt1
Presence and activity of Rpi genes in transgenic Desiree plants
| l (# of) plant | PCR |
| Effector agro-infiltration | ||||||
|---|---|---|---|---|---|---|---|---|---|
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| EC1 | Pic99189 |
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| 23 | + | + | + | + | R | R | HR | HR | HR |
| 5 | + | − | − | − | S | S | − | − | − |
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| Desiree: | + | + | − | − | R | S | HR | − | − |
| Desiree: | + | − | + | − | S | R | − | HR | − |
| Desiree: | + | − | − | + | R | S | − | − | HR |
| Desiree | − | − | − | − | S | S | − | − | − |
The presence of the Rpi genes was determined by PCR. Biological activity of the Rpi genes was determined by Pi inoculation in detached leaf assays or by agro-infiltration using Avr effectors matching the introduced Rpi genes
HR Hypersensitive response
R Resistant
S Susceptible
“−” in PCR means no PCR product using gene specific primer pairs, and “−” in agro-infiltration means no HR symptom
aDesiree:Rpi-sto1 stands for one cv. Desiree transformant harbouring Rpi-sto1