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Extract from the Register of European Patents

EP About this file: EP3359672

EP3359672 - BIOLOGICAL CONTROL OF PLANT VIRUSES [Right-click to bookmark this link]
StatusNo opposition filed within time limit
Status updated on  16.07.2021
Database last updated on 20.09.2024
FormerThe patent has been granted
Status updated on  07.08.2020
FormerGrant of patent is intended
Status updated on  01.04.2020
FormerExamination is in progress
Status updated on  25.01.2019
FormerRequest for examination was made
Status updated on  13.07.2018
FormerThe international publication has been made
Status updated on  18.04.2017
Formerunknown
Status updated on  01.11.2016
Most recent event   Tooltip08.07.2022Lapse of the patent in a contracting state
New state(s): MK
published on 10.08.2022  [2022/32]
Applicant(s)For all designated states
Looije Applications B.V.
Leehove 81
2678 MB De Lier / NL
[2018/33]
Inventor(s)01 / VERMUNT, Adrianus Marinus Wilhelmus
c/o Leehove 81
2678 MB De Lier / NL
 [2018/33]
Representative(s)V.O.
P.O. Box 87930
Carnegieplein 5
2508 DH Den Haag / NL
[2018/33]
Application number, filing date16784990.004.10.2016
[2018/33]
WO2016NL50684
Priority number, dateEP2015018841805.10.2015         Original published format: EP 15188418
[2018/33]
Filing languageEN
Procedural languageEN
PublicationType: A1 Application with search report
No.:WO2017061859
Date:13.04.2017
Language:EN
[2017/15]
Type: A1 Application with search report 
No.:EP3359672
Date:15.08.2018
Language:EN
The application published by WIPO in one of the EPO official languages on 13.04.2017 takes the place of the publication of the European patent application.
[2018/33]
Type: B1 Patent specification 
No.:EP3359672
Date:09.09.2020
Language:EN
[2020/37]
Search report(s)International search report - published on:EP13.04.2017
ClassificationIPC:C12N15/82, C12Q1/68, C12Q1/70, A01H5/00
[2018/33]
CPC:
C12N7/00 (EP,US); A01N63/40 (EP,US); A01N63/60 (EP,US);
C12N15/8283 (EP,US); C12Q1/04 (US); C12N2770/26011 (EP,US);
C12N2770/26021 (EP,US); C12N2770/26031 (US); C12N2770/26062 (EP,US) (-)
C-Set:
A01N63/60, A01N63/40 (EP,US)
Designated contracting statesAL,   AT,   BE,   BG,   CH,   CY,   CZ,   DE,   DK,   EE,   ES,   FI,   FR,   GB,   GR,   HR,   HU,   IE,   IS,   IT,   LI,   LT,   LU,   LV,   MC,   MK,   MT,   NL,   NO,   PL,   PT,   RO,   RS,   SE,   SI,   SK,   SM,   TR [2018/33]
Extension statesBANot yet paid
MENot yet paid
Validation statesMA01.05.2018
TitleGerman:BIOLOGISCHE BEKÄMPFUNG VON PFLANZENKRANKHEITEN[2020/07]
English:BIOLOGICAL CONTROL OF PLANT VIRUSES[2018/33]
French:LUTTE BIOLOGIQUE CONTRE LES MALADIES DES PLANTES[2020/07]
Former [2018/33]BIOLOGISCHE BEKÄMPFUNG VON PFLANZENVIREN
Former [2018/33]LUTTE BIOLOGIQUE CONTRE DES VIRUS DE PLANTES
Entry into regional phase01.05.2018National basic fee paid 
01.05.2018Designation fee(s) paid 
01.05.2018Examination fee paid 
Examination procedure01.05.2018Examination requested  [2018/33]
01.05.2018Date on which the examining division has become responsible
15.11.2018Amendment by applicant (claims and/or description)
24.01.2019Despatch of a communication from the examining division (Time limit: M06)
04.07.2019Reply to a communication from the examining division
31.07.2019Despatch of a communication from the examining division (Time limit: M04)
02.09.2019Reply to a communication from the examining division
19.09.2019Despatch of a communication from the examining division (Time limit: M02)
21.11.2019Reply to a communication from the examining division
02.04.2020Communication of intention to grant the patent
31.07.2020Fee for grant paid
31.07.2020Fee for publishing/printing paid
31.07.2020Receipt of the translation of the claim(s)
Opposition(s)10.06.2021No opposition filed within time limit [2021/33]
Fees paidRenewal fee
25.09.2018Renewal fee patent year 03
24.09.2019Renewal fee patent year 04
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See the Register of the Unified Patent Court for opt-out data
Responsibility for the accuracy, completeness or quality of the data displayed under the link provided lies entirely with the Unified Patent Court.
Lapses during opposition  TooltipAL09.09.2020
CY09.09.2020
CZ09.09.2020
EE09.09.2020
FI09.09.2020
HR09.09.2020
LT09.09.2020
LV09.09.2020
MC09.09.2020
MK09.09.2020
MT09.09.2020
RO09.09.2020
RS09.09.2020
SE09.09.2020
SI09.09.2020
SK09.09.2020
SM09.09.2020
TR09.09.2020
IE04.10.2020
LU04.10.2020
BG09.12.2020
NO09.12.2020
GR10.12.2020
IS09.01.2021
PT11.01.2021
[2022/32]
Former [2022/27]AL09.09.2020
CY09.09.2020
CZ09.09.2020
EE09.09.2020
FI09.09.2020
HR09.09.2020
LT09.09.2020
LV09.09.2020
MC09.09.2020
MT09.09.2020
RO09.09.2020
RS09.09.2020
SE09.09.2020
SI09.09.2020
SK09.09.2020
SM09.09.2020
TR09.09.2020
IE04.10.2020
LU04.10.2020
BG09.12.2020
NO09.12.2020
GR10.12.2020
IS09.01.2021
PT11.01.2021
Former [2021/46]AL09.09.2020
CZ09.09.2020
EE09.09.2020
FI09.09.2020
HR09.09.2020
LT09.09.2020
LV09.09.2020
MC09.09.2020
RO09.09.2020
RS09.09.2020
SE09.09.2020
SI09.09.2020
SK09.09.2020
SM09.09.2020
IE04.10.2020
LU04.10.2020
BG09.12.2020
NO09.12.2020
GR10.12.2020
IS09.01.2021
PT11.01.2021
Former [2021/36]AL09.09.2020
CZ09.09.2020
EE09.09.2020
FI09.09.2020
HR09.09.2020
LT09.09.2020
LV09.09.2020
MC09.09.2020
RO09.09.2020
RS09.09.2020
SE09.09.2020
SI09.09.2020
SK09.09.2020
SM09.09.2020
LU04.10.2020
BG09.12.2020
NO09.12.2020
GR10.12.2020
IS09.01.2021
PT11.01.2021
Former [2021/31]AL09.09.2020
CZ09.09.2020
EE09.09.2020
FI09.09.2020
HR09.09.2020
LT09.09.2020
LV09.09.2020
MC09.09.2020
RO09.09.2020
RS09.09.2020
SE09.09.2020
SK09.09.2020
SM09.09.2020
LU04.10.2020
BG09.12.2020
NO09.12.2020
GR10.12.2020
IS09.01.2021
PT11.01.2021
Former [2021/28]AL09.09.2020
CZ09.09.2020
EE09.09.2020
FI09.09.2020
HR09.09.2020
LT09.09.2020
LV09.09.2020
RO09.09.2020
RS09.09.2020
SE09.09.2020
SK09.09.2020
SM09.09.2020
BG09.12.2020
NO09.12.2020
GR10.12.2020
IS09.01.2021
PT11.01.2021
Former [2021/25]AL09.09.2020
CZ09.09.2020
EE09.09.2020
FI09.09.2020
HR09.09.2020
LT09.09.2020
LV09.09.2020
RO09.09.2020
RS09.09.2020
SE09.09.2020
SM09.09.2020
BG09.12.2020
NO09.12.2020
GR10.12.2020
IS09.01.2021
PT11.01.2021
Former [2021/23]CZ09.09.2020
EE09.09.2020
FI09.09.2020
HR09.09.2020
LT09.09.2020
LV09.09.2020
RO09.09.2020
RS09.09.2020
SE09.09.2020
SM09.09.2020
BG09.12.2020
NO09.12.2020
GR10.12.2020
PT11.01.2021
Former [2021/22]CZ09.09.2020
EE09.09.2020
FI09.09.2020
HR09.09.2020
LT09.09.2020
LV09.09.2020
RO09.09.2020
RS09.09.2020
SE09.09.2020
BG09.12.2020
NO09.12.2020
GR10.12.2020
PT11.01.2021
Former [2021/21]FI09.09.2020
HR09.09.2020
LT09.09.2020
LV09.09.2020
RS09.09.2020
SE09.09.2020
BG09.12.2020
NO09.12.2020
GR10.12.2020
PT11.01.2021
Former [2021/10]FI09.09.2020
HR09.09.2020
LT09.09.2020
LV09.09.2020
RS09.09.2020
SE09.09.2020
BG09.12.2020
NO09.12.2020
GR10.12.2020
Former [2021/09]FI09.09.2020
LT09.09.2020
SE09.09.2020
BG09.12.2020
NO09.12.2020
GR10.12.2020
Former [2021/08]FI09.09.2020
LT09.09.2020
SE09.09.2020
BG09.12.2020
NO09.12.2020
Former [2021/07]FI09.09.2020
LT09.09.2020
NO09.12.2020
Cited inInternational search[Y]  - BEATA HASIW-JAROSZEWSKA ET AL, "Single mutation converts mild pathotype of the Pepino mosaic virus into necrotic one", VIRUS RESEARCH, AMSTERDAM, NL, vol. 159, no. 1, doi:10.1016/J.VIRUSRES.2011.04.008, ISSN 0168-1702, (20110422), pages 57 - 61, (20110422), XP028222904 [Y] 1,2,4-13 * figure 1 *

DOI:   http://dx.doi.org/10.1016/j.virusres.2011.04.008
 [Y]  - I. M. HANSSEN ET AL, "Pepino mosaic virus isolates and differential symptomatology in tomato", PLANT PATHOLOGY, GB, (20090218), vol. 58, no. 3, doi:10.1111/j.1365-3059.2008.02018.x, ISSN 0032-0862, pages 450 - 460, XP055257124 [Y] 1,2,4-13 * page 457, column l; table 4 *

DOI:   http://dx.doi.org/10.1111/j.1365-3059.2008.02018.x
 [Y]  - Godwill Mih Chewachong, "ENGINEERING PLANT VIRUS "VACCINES" USING PEPINO MOSAIC VIRUS AS A MODEL", Ph. D. thesis, (2013), pages i-xviii, 1 - 102, URL: https://etd.ohiolink.edu/rws_etd/document/get/osu1384203201/inline, (20160309), XP055256861 [Y] 1,2,4-13 * page 40 - page 46 * * page 60 - page 83 *
 [Y]  - MARTIJN F SCHENK ET AL, "The use of attenuated isolates of Pepino mosaic virus for cross-protection", EUROPEAN JOURNAL OF PLANT PATHOLOGY, KLUWER ACADEMIC PUBLISHERS, DO, (20100301), vol. 127, no. 2, ISSN 1573-8469, pages 249 - 261, XP019788747 [Y] 1,2,4-13 * figure 3; tables 1-3 *
 [A]  - GODWILL M. CHEWACHONG ET AL, "Generation of an Attenuated, Cross-Protective Pepino mosaic virus Variant Through Alignment-Guided Mutagenesis of the Viral Capsid Protein", PHYTOPATHOLOGY, US, (201501), vol. 105, no. 1, doi:10.1094/PHYTO-01-14-0018-R, ISSN 0031-949X, pages 126 - 134, XP055256854 [A] 1,2,4-13 * figures 1,3,4 *

DOI:   http://dx.doi.org/10.1094/PHYTO-01-14-0018-R
 [A]  - BEATA HASIÓW-JAROSZEWSKA ET AL, "Ratio of mutated versus wild-type coat protein sequences in Pepino mosaic virus determines the nature and severity of yellowing symptoms on tomato plants", MOLECULAR PLANT PATHOLOGY, GB, (20130715), vol. 14, no. 9, doi:10.1111/mpp.12059, ISSN 1464-6722, pages 923 - 933, XP055257155 [A] 1,2,4-13 * figure 4; table 2 *

DOI:   http://dx.doi.org/10.1111/mpp.12059
 [A]  - BEATA HASIÓW-JAROSZEWSKA ET AL, "A new method for detection and discrimination of Pepino mosaic virus isolates using high resolution melting analysis of the triple gene block 3", JOURNAL OF VIROLOGICAL METHODS, NL, (20130513), vol. 193, no. 1, doi:10.1016/j.jviromet.2013.04.022, ISSN 0166-0934, pages 1 - 5, XP055256910 [A] 1,2,4-13 * the whole document *

DOI:   http://dx.doi.org/10.1016/j.jviromet.2013.04.022
 [A]  - INGE M. HANSSEN ET AL, "Pepino mosaic virus : a successful pathogen that rapidly evolved from emerging to endemic in tomato crops", MOLECULAR PLANT PATHOLOGY, GB, (20091112), vol. 11, no. 2, doi:10.1111/j.1364-3703.2009.00600.x, ISSN 1464-6722, pages 179 - 189, XP055257352 [A] 1,2,4-13 * the whole document *

DOI:   http://dx.doi.org/10.1111/j.1364-3703.2009.00600.x
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