The Theme Code "植物の育種及び培養による繁殖技術" had 23 patent application filings in the most recent period (2023-01-01 to 2023-04-30). This is a significantly decreased of -25 filings (-52.1%) over 48 they had in the same period of the previous year (2022-01-01 to 2022-04-30).
The highest number of filings in 2016 with 251 cases, and their lowest number in 2023 with 38 cases.
The mean of the number of filings over the last 5 years (2019 to 2024, 637 cases in total) is 106, and the median is 123. The coefficient of variation (standard deviation/mean) is 0.6, and there have been relatively large fluctuations in the number of filings from year to year.
Index | Value |
---|---|
Average | 106 patents |
Std Dev | 67.7 |
COV | 0.6 |
Year | Cases | YOY |
---|---|---|
2023 year | 38 cases | -57.8 % |
2022 year | 90 cases | -42.3 % |
2021 year | 156 cases | -11.86 % |
This report provides the latest patent analysis information (the IP landscape, including a patent map) on the patent search results of the JP patent database for 植物の育種及び培養による繁殖技術[2B030] for the period of the last 10 years (2015-01-01 to 2024-12-31). You can compare the information in this report with the trends in your competitors’ patent filings and technologies, and use it to search for important patents.
This service provides, free of charge, a patent analysis report based on the latest patent data (Japanese, U.S., European, and PCT application publications) for use in patent searches, patent analysis, and IP landscaping. The service is offered by "Patent Integration" a firm specializing in patent search/patent analysis.
This report includes basic information to help you understand the IP strategy and management of 植物の育種及び培養による繁殖技術, such as changes in the number of patents/patent applications they have filed, comparisons of the numbers of patents/patent applications filed by their peers and competitors, their top coapplicants (joint research partners, alliance partners), and their most important patents. It can be used in various intellectual property business operations such as IP landscaping, patent search/patent analysis, preparation of intellectual property business evaluation reports, selection of M&A candidates, and selection of alliance partners.
He is a patent attorney at a patent office. He specializes in invention counseling, patent filing, and intellectual property strategies for start-up companies and new businesses in the fields of software, information technology and artificial intelligence. He runs a patent course for beginners on Udemy, an online course provider.
After studying physics at the University of Tokyo as a doctoral student, he was engaged in intellectual property analysis and technology trend research as an in-house patent attorney at a precision equipment manufacturer and at Toyota Central R&D Labs. Inc..
The concept of the "IP landscape" (IPL) has been attracting attention recently.
An IP landscape is not limited to patent information, but also integrates and analyzes business information (e.g., non-patent information such as papers, news releases, stock information, and market information). Intellectual-property-based business management is realized through the analysis of intellectual property information applied to the formulation of management strategies and business strategies. This is a comprehensive approach that includes but not limited to planning of open and closed strategies, selecting M&A candidates, searching for alliance partners, and formulating intellectual property strategies, through the exploitation of intellectual property information.
IP landscaping usually includes patent search and patent analysis. In patent search and patent analysis, it is important to grasp the market position of each company and the overall technological trends and development trends for each technology. More specifically, it is important to understand what intellectual property your own company and other companies hold, what the strengths and weaknesses of other companies are, and how other companies are trying to exploit their intellectual property. In other words, it is important to understand both the business strategy and the intellectual property strategy of each company.
After reading this search report, you may be interested in more detailed patent searches and patent analysis. We offer a service called Patent Integration, which is an integrated patent search and patent analysis service. With reasonable pricing and a simple user interface such that even beginners can quickly search for and analyze patent information by company or technology from a web browser, please consider using it for detailed patent searches, patent analysis, and IP landscaping.
Patent Integration has a patent-landscaping function that can visually represent a set of tens of thousands of patents/patent applications. This allows you to convincingly show the technical positions of your company and its competitors to your management and business strategists in order to formulate management strategies and business strategies.
The changes in the number of patent filings of 植物の育種及び培養による繁殖技術 over the last 20 years (JP) are shown below.
The change in the number of patents/patent applications is the most basic index in patent analysis. By examining the change in the number of patents/patent applications, you can see the status of technological development and R&D focus for each company or technology. It should be noted that since there is a one and a half year lag between the filing and the laying open of patent applications, it is not possible to analyze the situation more recently than one and half years prior to the present.
In this report, you can only see the change in the number of patents/patent applications by company or technology, whereas Patent Integration allows you to quickly compare the number of patent applications with your competitors in each technical field by cross-referencing with other keywords and patent classifications.
Patent landscaping is a visualization of the distribution of patent filings (application focus areas) for each technical keyword. Mountains and islands indicated by heatmap contours represent clusters of patent applications filed, and red areas on the heatmap indicate many patent filings relating to the keyword.
The patent landscape for 植物の育種及び培養による繁殖技術 gives an intuitive understanding of what patent filings they have made and what technical position is to be established. By selecting filing year checkboxes and filtering, you can track their past filing trends (what technical area they have focused on).
By selecting applicant/patent holder checkboxes and filtering, you can visually grasp the technical areas of the filings for each applicant and the partnerships or alliances formed. Please use it as a guide for patent analysis and IP landscaping.
In addition, by visually representing the patent data in this manner, you can convincingly show the technical positions of your company and its competitors to your management and business strategists in order to formulate management strategies and business strategies.
In Patent Integration, you can check the specifics of a patent filing by clicking anywhere on the patent landscape screen. You can also quickly check the position of each applicant for each technical field by cross-referencing with other keywords and patent classifications. You can use it as a guide when considering hypotheses about each company's IP strategy on the IP Landscape. You can also use it for higher-grade intellectual property activities. It has reasonable pricing and a simple user interface that is easy for beginners to handle.
The following is a list of words (characteristic terms) often used in 植物の育種及び培養による繁殖技術 patent applications. Characteristic terms with a higher importance are used in more patents/patent applications.
This patent analysis report was created for a patent search set of 1,556 cases retrieved by applying the following search formula and analysis period to the following patent database. Patent information such as a patent analysis result, a patent map, and a patent landscape can be freely used for patent searches, analysis, and work on intellectual property strategies, including IP landscaping.
The patent information of the higher applicant in the technical theme 植物の育種及び培養による繁殖技術 is shown below. By comparing the number of patents of each company, you can check the research and development status of each company's past and present technical themes and the position of each company in the technical theme.
Comparing the number of applications of each company, 国立研究開発法人農業・食品産業技術総合研究機構 has the highest number of joint applications in the last in the last 3 years (2023 to 2025) with 8 cases, followed by 国立研究開発法人産業技術総合研究所 with 2 cases.
Name | Cases |
---|---|
国立研究開発法人農業・食品産業技術総合研究機構 | 8 cases |
国立研究開発法人産業技術総合研究所 | 2 cases |
国立研究開発法人理化学研究所 | 1 cases |
Comparing the number of applications of each company, 国立研究開発法人農業・食品産業技術総合研究機構 has the highest number of joint applications in the last for the target period (2015 to 2025) with 101 cases, followed by モンサントテクノロジーエルエルシー with 94 cases.
Name | Cases |
---|---|
国立研究開発法人農業・食品産業技術総合研究機構 | 101 cases |
モンサントテクノロジーエルエルシー | 94 cases |
コルテバアグリサイエンスエルエルシー | 80 cases |
サントリーホールディングス株式会社 | 27 cases |
国立研究開発法人産業技術総合研究所 | 25 cases |
国立研究開発法人理化学研究所 | 23 cases |
日本たばこ産業株式会社 | 17 cases |
トヨタ自動車株式会社 | 15 cases |
Below is a patent map showing changes in the number of applications for JP patents of 11 companies in the same industry over the past 20 years.
The patent information of the higher applicant in the technical theme 植物の育種及び培養による繁殖技術 is shown below. By comparing the number of patents of each company, you can check the research and development status of each company's past and present technical themes and the position of each company in the technical theme.
among the top coapplicants, 国立研究開発法人農業・食品産業技術総合研究機構 has the highest number of joint applications in the last in the last 3 years (2023 to 2025) with 8 cases, followed by 国立研究開発法人理化学研究所 with 1 cases.
Name | Cases |
---|---|
国立研究開発法人農業・食品産業技術総合研究機構 | 8 cases |
国立研究開発法人理化学研究所 | 1 cases |
among the top coapplicants, 国立研究開発法人農業・食品産業技術総合研究機構 has the highest number of joint applications in the last for the target period (2015 to 2025) with 101 cases, followed by モンサントテクノロジーエルエルシー with 94 cases.
Name | Cases |
---|---|
国立研究開発法人農業・食品産業技術総合研究機構 | 101 cases |
モンサントテクノロジーエルエルシー | 94 cases |
コルテバアグリサイエンスエルエルシー | 80 cases |
国立研究開発法人理化学研究所 | 23 cases |
Below is a ranking of the number of JP patent applications by 植物の育種及び培養による繁殖技術’s top 7 coapplicants over the last 20 years.
Below is a patent map showing the changes in the numbers of JP patent filings by 植物の育種及び培養による繁殖技術’s top 7 coapplicants over the last 20 years.
植物の育種及び培養による繁殖技術 filed 101 joint applications with 国立研究開発法人農業・食品産業技術総合研究機構 for the analysis period (2015 to 2025).
The mean of the number of filings over the last 5 years (2019 to 2024, 61 cases in total) is 10.2, and the median is 10.0. The coefficient of variation (standard deviation/mean) is 0.6, and there have been relatively large fluctuations in the number of filings from year to year.
The highest number of filings in 2021 with 19 cases, and their lowest number in 2019 with 4 cases.
Index | Value |
---|---|
Average | 10.2 patents |
Std Dev | 6.4 |
COV | 0.6 |
Year | Cases | YOY |
---|---|---|
2023 year | 6 cases | -62.5 % |
2022 year | 16 cases | -15.79 % |
2021 year | 19 cases | +35.7 % |
植物の育種及び培養による繁殖技術 filed 80 joint applications with コルテバアグリサイエンスエルエルシー for the analysis period (2015 to 2025).
The mean of the number of filings over the last 5 years (2019 to 2024, 5 cases in total) is 0.8, and the median is 0.5. The coefficient of variation (standard deviation/mean) is 1.3, and there have been very big fluctuations in the number of filings from year to year.
The highest number of filings in 2015 with 31 cases, and their lowest number in 2023 with 0 cases.
Index | Value |
---|---|
Average | 0.8 patents |
Std Dev | 1.1 |
COV | 1.3 |
Year | Cases | YOY |
---|---|---|
2021 year | 1 cases | 0 |
2020 year | 1 cases | -66.7 % |
2019 year | 3 cases | +50.0 % |
植物の育種及び培養による繁殖技術 filed 94 joint applications with モンサントテクノロジーエルエルシー for the analysis period (2015 to 2025).
The mean of the number of filings over the last 5 years (2019 to 2024, 25 cases in total) is 4.2, and the median is 3.0. The coefficient of variation (standard deviation/mean) is 1.0, and there have been very big fluctuations in the number of filings from year to year.
The number of filings has been decreasing for the last 3 years (2021 to 2024). The highest number of filings in 2016 with 19 cases, and their lowest number in 2023 with 0 cases.
Index | Value |
---|---|
Average | 4.2 patents |
Std Dev | 4.3 |
COV | 1.0 |
Year | Cases | YOY |
---|---|---|
2022 year | 2 cases | -50.0 % |
2021 year | 4 cases | -42.9 % |
2020 year | 7 cases | -41.7 % |
植物の育種及び培養による繁殖技術 filed 23 joint applications with 国立研究開発法人理化学研究所 for the analysis period (2015 to 2025).
The mean of the number of filings over the last 5 years (2019 to 2024, 12 cases in total) is 2.0, and the median is 2.0. The coefficient of variation (standard deviation/mean) is 0.7, and there have been relatively large fluctuations in the number of filings from year to year.
The number of filings has been decreasing for the last 3 years (2021 to 2024). The highest number of filings in 2017 with 5 cases, and their lowest number in 2023 with 1 cases.
Index | Value |
---|---|
Average | 2.0 patents |
Std Dev | 1.4 |
COV | 0.7 |
Year | Cases | YOY |
---|---|---|
2023 year | 1 cases | 0 |
2022 year | 1 cases | -66.7 % |
2021 year | 3 cases | -25.00 % |
The following shows JP patents held by 植物の育種及び培養による繁殖技術 that have had an invalidation trial against them demanded or an opposition filed against them by a third party, and 植物の育種及び培養による繁殖技術’s JP patents/patent applications of high importance cited by Examiners in patent examination processes.
By noting the most important patents, you can obtain knowledge of the competitive business environment in which 植物の育種及び培養による繁殖技術 is placed (e.g., whether it is a fiercely competitive environment or an oligopolistic market and the like). In general, it can be understood that a company with a large number of demands for invalidation trials is developing their business in a business environment where IP disputes are common.
If you want to search for more detailed information, you can use Patent Integration to retrieve and download by company cited patents/patent applications or patents undergoing invalidation trials. You can quickly extract important patents from a patent set that includes multiple competitors by cross-referencing with other keywords and patent classifications. Please consider using it for searches for important patents/patent applications.
In the last 3 years (2022-01-01 ~ 2024-12-31), there were 2 patents Invalidation Trial from third parties. The average number of Invalidation Trial is 1.5 times. The most recently Invalidation Trial patent is 特許6300215 "植物の特性を増強する方法" (Invalidation Trial day 2023-02-03) , next is 特許6203879 "配列操作のための系、方法および最適化ガイド組成物のエンジニアリング" (Invalidation Trial day 2022-09-30) .
- | No. | Title | Invalidation Trial days |
---|---|---|---|
1 | 特許6300215 | 植物の特性を増強する方法 | 2023-02-03 |
2 | 特許6203879 | 配列操作のための系、方法および最適化ガイド組成物のエンジニアリング | 2022-09-30 |
Of the patent applications filed in the last 10 years (2015-01-01 to 2024-12-31), 2 patents/patent applications were invalidation trial more than once in the examination process of other patent applications. The mean of the number of invalidation trial is 1.5. The most invalidation trial patent is 特許6300215 "植物の特性を増強する方法" (2 times) , and the next most invalidation trial patent is 特許6203879 "配列操作のための系、方法および最適化ガイド組成物のエンジニアリング" (1 times) .
- | No. | Title | |
---|---|---|---|
1 | 特許6300215 | 植物の特性を増強する方法 | 2 times |
2 | 特許6203879 | 配列操作のための系、方法および最適化ガイド組成物のエンジニアリング | 1 times |
In the last 3 years (2022-01-01 ~ 2024-12-31), there were 3 patents Opposition from third parties. The average number of Opposition is 1.0 times. The most recently Opposition patent is 特許7357173 "すすかび病抵抗性トマト植物" (Opposition day 2024-04-01) , next is 特許7301332 "DNAが編集された真核細胞を製造する方法、および当該方法に用いられるキット" (Opposition day 2024-01-04) .
- | No. | Title | Opposition days |
---|---|---|---|
1 | 特許7357173 | すすかび病抵抗性トマト植物 | 2024-04-01 |
2 | 特許7301332 | DNAが編集された真核細胞を製造する方法、および当該方法に用いられるキット | 2024-01-04 |
3 | 特許7094681 | Xanthomonas抵抗性のBrassica oleracea植物 | 2022-12-28 |
In the last 3 years (2022-01-01 ~ 2024-12-31), there were 11 patents Protest from third parties. The average number of Protest is 1.3 times. The most recently Protest patent is 特開2023-032890 "細胞質雄性不稔性遺伝子、雄性不稔回復植物、ナス科植物の細胞質雄性不稔の稔性を回復する方法、雄性不稔回復植物の製造方法、雄性不稔性植物、及び雄性不稔性植物の製造方法" (Protest day 2024-11-29) , next is 特開2021-185857 "高温耐性スジアオノリ及びその生産方法" (Protest day 2024-09-27) .
- | No. | Title | Protest days |
---|---|---|---|
1 | 特開2023-032890 | 細胞質雄性不稔性遺伝子、雄性不稔回復植物、ナス科植物の細胞質雄性不稔の稔性を回復する方法、雄性不稔回復植物の製造方法、雄性不稔性植物、及び雄性不稔性植物の製造方法 | 2024-11-29 |
2 | 特開2021-185857 | 高温耐性スジアオノリ及びその生産方法 | 2024-09-27 |
3 | 特開2021-010365 | カンパニュラ植物、カンパニュラ植物の製造方法、カンパニュラ植物のスクリーニング方法、およびカンパニュラ植物における抽だい日長の変更方法 | 2024-09-17 |
4 | 特許7527665 | トルコギキョウ植物を判別する方法、作出する方法、及びトルコギキョウ植物 | 2024-05-15 |
5 | 特開2024-012200 | レタス植物 | 2024-05-08 |
6 | 特許7264832 | ウイルス抵抗性植物及びその作出方法 | 2023-01-12 |
7 | 特許7545985 | 天然miRNAのゲノム編集による標的遺伝子発現の抑制 | 2022-10-03 |
8 | 特許7351592 | メロンにおけるウドンコ病抵抗性のQTL | 2022-04-11 |
9 | 特許7386150 | 自家和合性ブラシカ・オレラセア植物およびその育成方法 | 2022-04-06 |
10 | 特許7370333 | TBRFV抵抗性トマト植物 | 2022-01-11 |
11 | 特開2019-180392 | 青汁用の飲食用組成物 | 2022-01-06 |
Of the patent applications filed in the last 10 years (2015-01-01 to 2024-12-31), 24 patents/patent applications were protest more than once in the examination process of other patent applications. The mean of the number of protest is 1.4. The most protest patent is 特許6718659 "極晩抽性アブラナ科植物を生産するための親系統のスクリーニング方法、およびそれを用いた極晩抽性アブラナ科植物の製造方法" (3 times) , and the next most protest patent is 特許6815075 "新規ホウレンソウ及びその生産方法" (3 times) .
- | No. | Title | |
---|---|---|---|
1 | 特許6718659 | 極晩抽性アブラナ科植物を生産するための親系統のスクリーニング方法、およびそれを用いた極晩抽性アブラナ科植物の製造方法 | 3 times |
2 | 特許6815075 | 新規ホウレンソウ及びその生産方法 | 3 times |
3 | 特開2021-185857 | 高温耐性スジアオノリ及びその生産方法 | 2 times |
4 | 特許6872307 | ホウレンソウにおけるペロノスポラ耐性のための組成物及び方法 | 2 times |
5 | 特許7527665 | トルコギキョウ植物を判別する方法、作出する方法、及びトルコギキョウ植物 | 2 times |
In the last 3 years (2022-01-01 ~ 2024-12-31), there were 23 patents Inspection from third parties. The average number of Inspection is 1.8 times. The most recently Inspection patent is 特開2021-010365 "カンパニュラ植物、カンパニュラ植物の製造方法、カンパニュラ植物のスクリーニング方法、およびカンパニュラ植物における抽だい日長の変更方法" (Inspection day 2024-11-01) , next is 特開2021-185857 "高温耐性スジアオノリ及びその生産方法" (Inspection day 2024-10-02) .
- | No. | Title | Inspection days |
---|---|---|---|
1 | 特開2021-010365 | カンパニュラ植物、カンパニュラ植物の製造方法、カンパニュラ植物のスクリーニング方法、およびカンパニュラ植物における抽だい日長の変更方法 | 2024-11-01 |
2 | 特開2021-185857 | 高温耐性スジアオノリ及びその生産方法 | 2024-10-02 |
3 | 特開2020-036609 | ホウレンソウにおけるPERONOSPORA耐性のための方法及び組成物 | 2024-09-30 |
4 | 特許7301332 | DNAが編集された真核細胞を製造する方法、および当該方法に用いられるキット | 2024-08-28 |
5 | 特許7357173 | すすかび病抵抗性トマト植物 | 2024-01-05 |
6 | 特許7372657 | コロラドハムシに対する抵抗性が高められた植物、及びその製造方法、並びに植物におけるコロラドハムシに対する抵抗性の判定方法 | 2023-12-22 |
7 | 特許7527665 | トルコギキョウ植物を判別する方法、作出する方法、及びトルコギキョウ植物 | 2023-11-16 |
8 | 特許7256557 | 遺伝子組換えイネ、並びに当該遺伝子組換えイネに由来するコメ、食品組成物、繁殖材料、種子および細胞 | 2023-09-20 |
9 | 特開2023-110292 | 新規菌株及びそれを含む組成物並びにイネ科植物の細菌性病害を防除する方法 | 2023-09-13 |
10 | 特表2023-523531 | 向上した線虫耐性を有する植物 | 2023-04-18 |
11 | 特許7264832 | ウイルス抵抗性植物及びその作出方法 | 2023-02-09 |
12 | 特許7545985 | 天然miRNAのゲノム編集による標的遺伝子発現の抑制 | 2022-10-26 |
13 | 特開2016-165307 | 配列操作のための系、方法および最適化ガイド組成物のエンジニアリング | 2022-05-24 |
14 | 特許6723094 | 遺伝子産物の発現を変更するためのCRISPR−Cas系および方法 | 2022-05-24 |
15 | 特許6545621 | 遺伝子産物の発現を変更するためのCRISPR−Cas系および方法 | 2022-05-24 |
16 | 特許7351592 | メロンにおけるウドンコ病抵抗性のQTL | 2022-05-18 |
17 | 特許6517143 | 標的DNAに特異的なガイドRNAおよびCASタンパク質コード核酸またはCASタンパク質を含む、標的DNAを切断するための組成物、ならびにその使用 | 2022-05-16 |
18 | 特許6203879 | 配列操作のための系、方法および最適化ガイド組成物のエンジニアリング | 2022-05-09 |
19 | 特許7386150 | 自家和合性ブラシカ・オレラセア植物およびその育成方法 | 2022-04-27 |
20 | 特表2018-518184 | リポキシゲナーゼ活性を減退させたコムギ | 2022-04-04 |
Of the patent applications filed in the last 10 years (2015-01-01 to 2024-12-31), 49 patents/patent applications were inspection more than once in the examination process of other patent applications. The mean of the number of inspection is 1.7. The most inspection patent is 特開2016-144451 "より新規形態の干渉RNA分子" (7 times) , and the next most inspection patent is 特許6815075 "新規ホウレンソウ及びその生産方法" (6 times) .
- | No. | Title | |
---|---|---|---|
1 | 特開2016-144451 | より新規形態の干渉RNA分子 | 7 times |
2 | 特許6815075 | 新規ホウレンソウ及びその生産方法 | 6 times |
3 | 特許6718659 | 極晩抽性アブラナ科植物を生産するための親系統のスクリーニング方法、およびそれを用いた極晩抽性アブラナ科植物の製造方法 | 4 times |
4 | 特許7094681 | Xanthomonas抵抗性のBrassica oleracea植物 | 4 times |
5 | 特許6300215 | 植物の特性を増強する方法 | 4 times |
Of the patent applications filed in the last 10 years (2015-01-01 to 2024-12-31), 221 patents/patent applications were cited more than once in the examination process of other patent applications. The mean of the number of cited is 2.1. The most cited patent is 特許6395765 "配列操作のための改善された系、方法および酵素組成物のエンジニアリングおよび最適化" (36 times) , and the next most cited patent is 特許6203879 "配列操作のための系、方法および最適化ガイド組成物のエンジニアリング" (27 times) .
- | No. | Title | |
---|---|---|---|
1 | 特許6395765 | 配列操作のための改善された系、方法および酵素組成物のエンジニアリングおよび最適化 | 36 times |
2 | 特許6203879 | 配列操作のための系、方法および最適化ガイド組成物のエンジニアリング | 27 times |
3 | 特許6898865 | 新規CRISPR酵素及び系 | 17 times |
4 | 特開2017-012137 | 受粉方法及び受粉システム | 8 times |
5 | 特許6218340 | 動植物成長促進方法 | 8 times |
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