RU2016129435A - Молекулы нуклеиновой кислоты phkп ii-140, которые придают устойчивость к жестококрылым насекомым-вредителям - Google Patents
Молекулы нуклеиновой кислоты phkп ii-140, которые придают устойчивость к жестококрылым насекомым-вредителям Download PDFInfo
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- C12N15/1137—Non-coding nucleic acids modulating the expression of genes, e.g. antisense oligonucleotides; Antisense DNA or RNA; Triplex- forming oligonucleotides; Catalytic nucleic acids, e.g. ribozymes; Nucleic acids used in co-suppression or gene silencing against enzymes
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- C12N15/8216—Methods for controlling, regulating or enhancing expression of transgenes in plant cells
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- C12N15/79—Vectors or expression systems specially adapted for eukaryotic hosts
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- C12N15/8241—Phenotypically and genetically modified plants via recombinant DNA technology
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- C12N15/8271—Phenotypically and genetically modified plants via recombinant DNA technology with agronomic (input) traits, e.g. crop yield for stress resistance, e.g. heavy metal resistance
- C12N15/8279—Phenotypically and genetically modified plants via recombinant DNA technology with agronomic (input) traits, e.g. crop yield for stress resistance, e.g. heavy metal resistance for biotic stress resistance, pathogen resistance, disease resistance
- C12N15/8286—Phenotypically and genetically modified plants via recombinant DNA technology with agronomic (input) traits, e.g. crop yield for stress resistance, e.g. heavy metal resistance for biotic stress resistance, pathogen resistance, disease resistance for insect resistance
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Claims (33)
1. РНК, содержащая по меньшей мере 15 смежных нуклеотидов, обладающих на всем протяжении по меньшей мере 80% идентичностью с последовательностью ДНК, кодирующей по меньшей мере участок rnapII-140.
2. РНК по п. 1, где РНК содержит стебель и петлю.
3. РНК по п. 1, где нуклеиновая кислота дополнительно содержит последовательность, комплементарную по меньшей мере 15 смежным нуклеотидам.
4. РНК по п. 2, где по меньшей мере участок стебля стебля-петли экспрессируемой РНК образован связыванием по меньшей мере 15 смежных нуклеотидов с последовательностью, комплементарной по меньшей мере 15 смежным нуклеотидам.
5. РНК по п. 1, где РНК представляет собой иРНК
6. РНК по п. 5, где иРНК представляет собой дцРНК, миРНК, мкРНК или вмРНК.
7. РНК по п. 1, где РНК содержит аналог нуклеиновой кислоты.
8. РНК по п. 1, где РНК способна ингибировать экспрессию РНКП II-140 у жесткокрылых насекомых.
9. РНК по п. 8, где ингибирование экспрессии РНКП II-140 происходит в результате посттранскрипционого сайленсинга гена.
10. РНК по п. 1, где rnapII-140 представляет собой rnapII-140 Diabrotica virgifera virgifera.
11. РНК по п. 1, где rnapII-140 кодируется SEQ ID NO:1.
12. РНК по п. 1, где rnapII-140 представляет собой rnapII-140 Meligethes.
13. РНК по п. 1, где rnapII-140 кодируется нуклеиновой кислотой, выбранной из группы, состоящей из SEQ ID NO:73, 75 и 81.
14. РНК по п. 1, где последовательность, кодирующая по меньшей мере участок rnapII-140, выбрана из группы, состоящей из SEQ ID NO:3, 4, 5 и 77.
15. РНК по п. 1, где по меньшей мере 15 смежных нуклеотидов выбраны из группы, состоящей из 19, 21, 25, 29, 30, 40, 50, 70 и 100 смежных нуклеотидов.
16. РНК по п. 1, где по меньшей мере 80% идентичности выбраны из группы, состоящей из 85%, 90%, 95% и 100% идентичности.
17. Растительная клетка, содержащая РНК по п. 1.
18. Растительная клетка по п. 15, где растение выбрано из группы, состоящей из Zea mays, Glycine max, Brassica spp. и семейства Poaceae.
19. Нуклеиновая кислота, кодирующая РНК по п. 1.
20. Нуклеиновая кислота по п. 17, где нуклеиновая кислота содержит последовательность, выбранную из группы, состоящей из SEQ ID NO:16, 17, 78 и 79.
21. Нуклеиновая кислота по п. 17, где нуклеиновая кислота является функционально связанной с промотором.
22. Вектор, содержащий нуклеиновую кислоту по п. 17.
23. Растительная клетка, содержащая нуклеиновую кислоту по п. 17.
24. Растительная клетка по п. 21, где растение выбрано из группы, состоящей из Zea mays, Glycine max, Brassica spp. и семества Poaceae.
25. Растительная клетка по п. 21, где нуклеиновую кислоту по п. 17 вводят в геном растительной клетки.
26. Способ борьбы с жесткокрылыми насекомыми, где способ включает экспрессию нуклеиновой кислоты по п. 17 в растении.
27. Способ по п. 24, где жесткокрылое насекомое выбрано из группы, состоящей из Diabrotica virgifera virgifera, Diabrotica barberi, Diabrotica undecimpunctata howardi, Diabrotica virgifera zeae, Diabrotica balteata, Diabrotica undecimpunctata tenella, Diabrotica undecimpunctata undecimpunctata и Meligethes aeneus.
28. Источник пищи для жесткокрылого насекомого, содержащий РНК по п. 1.
29. Способ борьбы с жесткокрылыми насекомыми, где способ включает кормление жесткокрылого насекомого источником пиши по п. 26.
30. Способ по п. 24, дополнительно включающий экспрессию нуклеиновой кислоты, кодирующую инсектицидный белок Bacillus thuringiensis.
31. Способ по п. 28, где белок-токсин Bacillus thuringiensis выбран из группы, состоящей из Cry35Ab1, Cry34/35Ab10, Cry3A, Cry3B, Cry6A и их сочетаний.
32. Способ по п. 24, дополнительно включающий экспрессию нуклеиновой кислоты, кодирующей РНКи, которая ингибирует экспрессию гена жесткокрылого насекомого.
33. Способ по п. 30, где нуклеиновая кислота выбрана из группы, состоящей из Caf1-180, VatpaseC, Rho1, VatpaseH, PPI-87B, RPA7 и RPS6.
Applications Claiming Priority (3)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| US201361919239P | 2013-12-20 | 2013-12-20 | |
| US61/919,239 | 2013-12-20 | ||
| PCT/US2014/071583 WO2015095750A1 (en) | 2013-12-20 | 2014-12-19 | Rnapii-140 nucleic acid molecules that confer resistance to coleopteran pests |
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| Publication Number | Publication Date |
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| RU2016129435A true RU2016129435A (ru) | 2018-01-25 |
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| RU2016129435A RU2016129435A (ru) | 2013-12-20 | 2014-12-19 | Молекулы нуклеиновой кислоты phkп ii-140, которые придают устойчивость к жестококрылым насекомым-вредителям |
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| US (2) | US10676745B2 (ru) |
| EP (1) | EP3082469B1 (ru) |
| JP (1) | JP2017510246A (ru) |
| KR (1) | KR20160093728A (ru) |
| CN (1) | CN106028838A (ru) |
| AP (1) | AP2016009313A0 (ru) |
| AR (1) | AR098917A1 (ru) |
| AU (2) | AU2014369014B9 (ru) |
| CA (1) | CA2933613A1 (ru) |
| CL (1) | CL2016001532A1 (ru) |
| ES (1) | ES2959628T3 (ru) |
| IL (1) | IL246284A0 (ru) |
| MX (1) | MX2016008263A (ru) |
| NZ (1) | NZ721609A (ru) |
| PH (1) | PH12016501170A1 (ru) |
| RU (1) | RU2016129435A (ru) |
| UY (1) | UY35913A (ru) |
| WO (1) | WO2015095750A1 (ru) |
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| EP3067424A1 (en) | 2015-03-13 | 2016-09-14 | Dow AgroSciences LLC | Rna polymerase i1 nucleic acid molecules to control insect pests |
| CA3013328A1 (en) * | 2016-02-03 | 2017-08-10 | Dow Agrosciences Llc | Gawky (gw) nucleic acid molecules to control insect pests |
| EP3960863B1 (en) | 2016-05-04 | 2024-11-13 | Pioneer Hi-Bred International, Inc. | Insecticidal proteins and methods for their use |
| EP3342780A1 (en) | 2016-12-30 | 2018-07-04 | Dow AgroSciences LLC | Pre-mrna processing factor 8 (prp8) nucleic acid molecules to control insect pests |
| CA3091431A1 (en) * | 2018-02-26 | 2019-08-29 | Devgen Nv | Control of insect pests using rna molecules |
| CN113359759B (zh) * | 2021-06-24 | 2023-05-09 | 中国第一汽车股份有限公司 | 基于自动驾驶的泊车控制方法、系统、车辆及存储介质 |
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-
2014
- 2014-12-19 NZ NZ721609A patent/NZ721609A/en not_active IP Right Cessation
- 2014-12-19 KR KR1020167019585A patent/KR20160093728A/ko not_active Withdrawn
- 2014-12-19 US US14/577,854 patent/US10676745B2/en active Active
- 2014-12-19 EP EP14870967.8A patent/EP3082469B1/en active Active
- 2014-12-19 CA CA2933613A patent/CA2933613A1/en not_active Abandoned
- 2014-12-19 WO PCT/US2014/071583 patent/WO2015095750A1/en not_active Ceased
- 2014-12-19 CN CN201480075839.XA patent/CN106028838A/zh active Pending
- 2014-12-19 MX MX2016008263A patent/MX2016008263A/es unknown
- 2014-12-19 RU RU2016129435A patent/RU2016129435A/ru unknown
- 2014-12-19 AP AP2016009313A patent/AP2016009313A0/en unknown
- 2014-12-19 ES ES14870967T patent/ES2959628T3/es active Active
- 2014-12-19 JP JP2016541347A patent/JP2017510246A/ja not_active Withdrawn
- 2014-12-19 AU AU2014369014A patent/AU2014369014B9/en not_active Ceased
- 2014-12-22 AR ARP140104861A patent/AR098917A1/es unknown
- 2014-12-22 UY UY0001035913A patent/UY35913A/es not_active Application Discontinuation
-
2016
- 2016-06-16 IL IL246284A patent/IL246284A0/en unknown
- 2016-06-16 PH PH12016501170A patent/PH12016501170A1/en unknown
- 2016-06-16 CL CL2016001532A patent/CL2016001532A1/es unknown
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2017
- 2017-12-21 AU AU2017279721A patent/AU2017279721A1/en not_active Abandoned
-
2020
- 2020-06-09 US US16/896,501 patent/US20200299699A1/en not_active Abandoned
Also Published As
| Publication number | Publication date |
|---|---|
| EP3082469B1 (en) | 2023-09-06 |
| JP2017510246A (ja) | 2017-04-13 |
| US10676745B2 (en) | 2020-06-09 |
| CL2016001532A1 (es) | 2016-10-28 |
| CN106028838A (zh) | 2016-10-12 |
| ES2959628T3 (es) | 2024-02-27 |
| PH12016501170A1 (en) | 2016-07-18 |
| CA2933613A1 (en) | 2015-06-25 |
| EP3082469A1 (en) | 2016-10-26 |
| AU2014369014B2 (en) | 2018-01-25 |
| US20200299699A1 (en) | 2020-09-24 |
| EP3082469C0 (en) | 2023-09-06 |
| AP2016009313A0 (en) | 2016-07-31 |
| UY35913A (es) | 2015-07-31 |
| MX2016008263A (es) | 2017-05-09 |
| WO2015095750A1 (en) | 2015-06-25 |
| KR20160093728A (ko) | 2016-08-08 |
| AU2017279721A1 (en) | 2018-01-25 |
| US20150176009A1 (en) | 2015-06-25 |
| AU2014369014B9 (en) | 2018-02-01 |
| AR098917A1 (es) | 2016-06-22 |
| IL246284A0 (en) | 2016-07-31 |
| EP3082469A4 (en) | 2017-11-22 |
| AU2014369014A1 (en) | 2016-07-07 |
| NZ721609A (en) | 2017-12-22 |
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