KWS SAAT SE & CO KGAA has a total of 373 patent applications. It increased the IP activity by 165.0%. Its first patent ever was published in 2000. It filed its patents most often in EPO (European Patent Office), WIPO (World Intellectual Property Organization) and United States. Its main competitors in its focus markets biotechnology, foods and drinks and environmental technology are SHANDONG SHUNFENG BIOTECHNOLOGY CO LTD, ANHUI ACADEMY AGRICULTURAL SCIENCES and NONG WOO BIO CO LTD.
# | Country | Total Patents | |
---|---|---|---|
#1 | EPO (European Patent Office) | 89 | |
#2 | WIPO (World Intellectual Property Organization) | 60 | |
#3 | United States | 47 | |
#4 | Canada | 39 | |
#5 | China | 28 | |
#6 | Brazil | 26 | |
#7 | Australia | 19 | |
#8 | Argentina | 18 | |
#9 | Chile | 13 | |
#10 | Germany | 8 | |
#11 | Mexico | 4 | |
#12 | Ukraine | 4 | |
#13 | Hungary | 3 | |
#14 | Serbia | 3 | |
#15 | Uruguay | 3 | |
#16 | EAPO (Eurasian Patent Organization) | 2 | |
#17 | Republic of Korea | 2 | |
#18 | Cuba | 1 | |
#19 | Morocco | 1 | |
#20 | Peru | 1 | |
#21 | Philippines | 1 | |
#22 | Poland | 1 |
# | Industry | |
---|---|---|
#1 | Biotechnology | |
#2 | Foods and drinks | |
#3 | Environmental technology | |
#4 | Measurement | |
#5 | Agriculture |
# | Technology | |
---|---|---|
#1 | Microorganisms | |
#2 | New plants | |
#3 | Peptides | |
#4 | Measuring microorganism processes | |
#5 | Enzymes | |
#6 | Analysing materials | |
#7 | Climate change adaptation technologies | |
#8 | Reduction of greenhouse gas emissions | |
#9 | Horticulture | |
#10 | Fermentation |
# | Name | Total Patents |
---|---|---|
#1 | Ouzunova Milena | 68 |
#2 | Niessen Markus | 45 |
#3 | Hummel Aaron | 45 |
#4 | Kloiber-Maitz Monika | 39 |
#5 | Borchardt Dietrich | 34 |
#6 | Bolduan Christof | 34 |
#7 | Mechelke Wolfgang | 29 |
#8 | Scheuermann Daniela | 27 |
#9 | Schulz Britta | 26 |
#10 | Wieckhorst Silke | 25 |
Publication | Filing date | Title |
---|---|---|
WO2021078934A1 | (be-)curtovirus replicon-mediated genome editing in plants | |
WO2021074367A1 | Enhanced disease resistance of crops by downregulation of repressor genes | |
WO2021074191A1 | Mad7 nuclease in plants and expanding its pam recognition capability | |
UY38714A | HAPLOID INDUCTION ENHANCER | |
UY38693A | DROUGHT TOLERANCE IN CORN | |
WO2020089489A1 | Targeted mutagenesis using base editors | |
EP3798301A1 | Promoter repression | |
EP3772542A1 | Modifying genetic variation in crops by modulating the pachytene checkpoint protein 2 | |
EP3757219A1 | Enhanced plant regeneration and transformation by using grf1 booster gene | |
EP3757530A1 | System and method for phenotyping of organisms | |
BR112020025349A2 | METHODS FOR IMPROVING GENOME ENGINEERING AND REGENERATION IN PLANT | |
BR112020025284A2 | METHODS FOR IMPROVING THE EFFICIENCY OF GENOMIC ENGINEERING | |
AU2019285085A1 | Methods for improving genome engineering and regeneration in plant II | |
WO2019234129A1 | Haploid induction with modified dna-repair | |
WO2019234132A1 | Base editing in polymerase theta deficient plants | |
US2019297824A1 | Inbred corn line KW7P1144 | |
US2020296913A1 | Inbred corn line kw4m1223 | |
EP3708651A1 | Improving plant regeneration | |
EP3702464A1 | Pathogen resistance in crop plants | |
EP3696188A1 | Gene for resistance to plant disease |