序号 专利名 申请号 申请日 公开(公告)号 公开(公告)日 发明人
21 新杀虫蛋白质和菌株 CN95195349.4 1995-09-27 CN1160420A 1997-09-24 G·W·沃伦; M·G·科泽尔; M·A·默林斯; G·J·奈; B·卡尔; N·M·德塞; K·科斯蒂克卡; N·B·达克; J·J·埃斯特鲁克
发明涉及杀虫菌株和蛋白质。本发明提供了能够在营养生长期间产生杀虫蛋白质和辅助蛋白质的芽孢杆菌属菌株。本发明也提供了纯化的蛋白质,编码这些蛋白质的核苷酸序列以及使用这些菌株、蛋白质和基因防治害虫的方法。
22 具有改进杀虫性能的苏金芽孢杆菌的制备方法 CN85108207 1985-10-09 CN1017722B 1992-08-05 丹尼斯·霍勒斯·伯吉斯; 保罗·贾勒特
发明涉及一种苏金芽孢杆菌GC91(其样品已经寄存,寄存号为NCTC11821),或者是对鳞翅目害虫具有杀虫活性的该菌株衍生物或突变体。本发明还涉及一个通过质粒转移将两种有关起始菌株的不同杀虫特性结合到单独一个菌株中来生产具有改进杀虫特性的苏云金芽孢杆菌菌株的方法。这样所产生的新菌株用于杀虫组合物。
23 BACTERIAL STRAINS AND THEIR USE FOR CONTROLLING PLANT DISEASE PCT/US2016048969 2016-08-26 WO2017040273A3 2017-04-13 HAMMER PHILIP E; ROBERTS MARK A; TWIZEYIMANA MATHIAS; RONYAK STEVE
Compositions and methods for treating or preventing plant disease are provided. Such compositions and methods comprise a bacterial strain that control one or more pathogens that cause plant disease or improve at least one agronomic trait of interest in a plant. The bacterial strain can be used as an inoculant for plants. Therefore, methods for growing a plant susceptible to a plant disease and methods for controlling plant disease on a plant susceptible to the plant disease are provided.
24 PROCESS FOR CONTROLLING SCARAB PESTS WITH (BACILLUS THURINGIENSIS) ISOLATES PCT/US9300966 1993-02-01 WO9315206A3 1994-01-06 MICHAELS TRACY E; FONCERRADA LOUIS; NARVA KENNETH E
Certain isolates of Bacillus thuringiensis (B.t.) have been found to have activity against scarab pests. These isolates are designated B.t. PS86B1, B.t. PS43F and B.t. PS50C. These isolates, or transformed hosts containing the gene expressing a scarab-active toxin obtained from the isolates, can be used to control scarab-active pests, e.g., masked chafer, Cyclocephala sp., June bettle, Cotinis sp., northern masked chafer, Cyclocephala borealis, Japanese beetle, Popillia japonica, and Pasadena masked chafer, Cyclocephala pasadenae, in various environments.
25 벤질리덴아세톤 유도체를 이용한 식물 병해충 방제 조성물 및 방제 방법 KR1020120062310 2012-06-11 KR1020130138596A 2013-12-19 서삼열; 김용균
The present invention relates to a composition for controlling plant pests and a method for controlling plant pests and, particularly, to a composition for controlling plant pests using a benzylidene acetone derivative. The purpose of the present invention is to select and provide the benzylidene acetone derivative which maintains efficacy of benzylidene acetone and lowers damage from benzylidene acetone. The present invention provides the composition for controlling plant pests, which contains a benzylidene acetone derivative, as an active component, selected from trans-cinnamic acid (CIA), trans-3-hydroxycinnamic acid (HCA), p-coumaric acid (PCA), 3-phenylpropionic acid (PPA) and 4-hydroxyphenylacetic acid (HPA), and a method for controlling plant pests which applies the composition for controlling plant pests, and the derivative on plants. The composition for controlling plant pests of the present invention prevents damages from agricultural chemicals which are problems of existing BZA by containing a BZA derivative with high resolution and low damages from agricultural chemicals while maintaining immunosuppressant activity on insects and antibacterial activity on plant pathogenic fungi, thereby being used as effective agricultural pesticides.
26 균핵병 및 잿빛곰팡이병 방제를 위한 새로운 미생물 균주와 이를 이용한 미생물 제제 및 방제방법 KR1020110086035 2011-08-26 KR1020130022349A 2013-03-06 김경수; 이민경; 임종철; 신명수; 정경현
PURPOSE: A novel microorganism for preventing sclerotium disease and gray mold, and a microorganism preparation are provided to be used as an agent for preventing the sclerotium disease and gray mold by replacing agrochemicals. CONSTITUTION: A novel microorganism for preventing sclerotium disease and gray mold contains Bacillus thuringiensis JC154(KCTC 18216P) with antibacterial activity against the sclerotium disease and gray mold. A microorganism preparation for preventing the sclerotium disease and gray mold contains the Bacillus thuringiensis JC154, a culture medium of the strains, or an extract of the culture medium extract as an active ingredient. The microorganism preparation contains an excipient.
27 곤충병원세균으로부터 분리한 새로운 살충활성 물질 및 이의 용도 KR1020100058250 2010-06-18 KR1020110138110A 2011-12-26 김용균; 홍용표; 이성홍; 서삼열
PURPOSE: A novel insecticidal material isolated from entomopathognic bacteria using proline-tyrosine or mixture thereof is provided. CONSTITUTION: An insecticidal material which suppresses insect immunity through phospholipase A2(PLA2) contains cyclo proline-tyrosine(cPY) as an active ingredient. An insecticidal composition for eliminating insects such as moths contains cPY and Bt as an active ingredient. The cPY is isolated from culture liquid of Xenorhabdus nematophila.
28 제노랍두스 네마토필라 유래 아이코사노이드 생합성 억제물질 유도체와 이의 해충 방제 적용방법 KR1020090109957 2009-11-13 KR1020110053130A 2011-05-19 김용균
PURPOSE: A bacteria-derived peptide derivative is provided to be used as a insecticide and to improve insecticidal activity. CONSTITUTION: An insecticide contains AY of chemical formula 1 as an active ingredient. An insect immodepressant suppresses biosynthesis of eicosanoid. An insecticide contains FGV of chemical formula 2 as an active ingredient. An insecticide contains the AY of chemical formula 1 or FGV of chemical formula 2 as an active ingredient to improve insecticidal activity of bismaleimide triazine(Bt).
29 신규한 유전자를 동정하는 방법 KR1020097003567 2007-07-20 KR1020090054965A 2009-06-01 어베드,안드레,알.; 동,후아; 로,수잔,비.; 맥커천,빌리,에프.; 쉬,지아오메이
Methods and compositions for identifying novel genes that share regions of homology with known genes from target groups of genes of interest are provided. The methods comprise systematically designing oligonucleotide primers that are specific for regions of homology within the nucleotide sequences of a target group of known genes and performing successive rounds of PCR amplification of nucleic acid material from an organism of interest. The PCR steps are intended to identify and amplify nucleic acids comprising both known and novel genes. Nucleic acid molecules comprising known genes are detected and eliminated from further consideration by dot blot analysis using oligonucleotide probes specific for the known genes in the target group. Potentially novel genes are subjected to further sequence analysis to confirm novelty and assayed for biological activity. Compositions of the present invention include novel polynucleotides, and variants and fragments thereof, that comprise novel genes and the polypeptides encoded thereby.
30 제노랍두스 네마토필러스를 이용한 살충방법 및 생물농약조성물 KR1020000068944 2000-11-20 KR1020020039055A 2002-05-25 김용균; 이영근; 한상찬
PURPOSE: A method for killing insects by using Xenorhabdus nematophilus(Xn) is provided. By the use of Bacillus thuringiensis, together with the Xn, a strong insecticidal activity against insects showing low insecticide susceptibility to conventional insecticides is increased. CONSTITUTION: The method for killing insects by using Xenorhabdus nematophilus(Xn) is characterized by using a biopesticide for damaging a cell and tissue of insects instead of Steinernema carpocapsae of Xn as a carrier for transporting the Xn to the inside of an insect, in particular Bacillus thuringiensis. After application of the biopesticide to insects or plant to be controlled, the Xn is successively and continuously applied.
31 제노랍두스 네마토필러스 미생물제제의 마이크로캡슐화방법 및 그 제제와 이를 이용한 생물농약 조성물 KR1020010002028 2001-01-13 KR1020010035200A 2001-05-07 정종상; 문선주; 황창일; 김용욱; 이정숙; 이수희; 김판경; 장희수; 김용균
PURPOSE: A method for microencapsulating Xenorhabdus nematophilus(Xn) by microencapsulating it with various polymers under specific conditions is provided, which improves storage stability of biotic pesticide. A mixture composition with Bacillus thuringinesis preparations exhibits synergestic insecticidal effect against insects having low sensitivity to conventional biotic pesticides. CONSTITUTION: This process comprises the steps of: mixing 100 parts by weight of 10 to 50% polymeric aqueous solution with 1 to 30 parts by weight of Xenorhabdus nematophilus(Xn), emulsifying and dispersing; preparing microcapsule slurry by surface reaction or in situ polymerization of the mixture solution; powderizing the slurry by spraying under the condition of a nozzle temperature of 50 to 100deg.C and a spray speed of a nozzle of 1 to 30ml/min.
32 고수율의 델타 엔도톡신을 생성하는 바실루스 투린지엔시스의 돌연변이체 또는 변이체 KR1019920701171 1990-11-16 KR100157065B1 1998-10-15 한네게르틀러; 아네테쇼우스보피테르센
본 발명은 많은 양의 활성 델타-엔도톡신을 생성하는 바실루스 투린지엔시스(Bacillus thuringiensis)의 돌연변이체 또는 변이체에 관한 것이다. 돌연변이체 또는 변이체 바실루스 투린지엔시스에 의해 생성된 델타-엔도톡신은 그것의 모 바실루스 투린지엔시스 델타-엔도톡신과 같은 해충들에 대한, 예를들면 인시류(B. thuringiensis subsp. kurstaki 또는 subsp. aizawai로부터의 돌연변이체), 쌍시류(B. thuringiensis subsp. israelensis로부터의 돌연변이체) 또는 갑충류 해충(B. thuringiensis subsp. tenebrionis로부터의 돌연변이체)에 대한 활성을 가질 것이다.
33 植物の病気を制御するための細菌株およびその使用 JP2018510730 2016-08-26 JP2018525420A 2018-09-06 ハマー, フィリップ イー.; ロバーツ, マーク エー.; トゥイゼイマナ, マティアス; ロンヤク, スティーブ
植物の病気を処理または防止するための組成物および方法が提供される。このような組成物および方法は、植物において植物の病気を引き起こす1種もしくはこれより多くの病原体を制御するかまたは少なくとも1つの目的の農学上の形質を改善する細菌株を含む。上記細菌株は、植物用の接種物として使用され得る。従って、植物の病気に感受性である植物を生長させるための方法および植物の病気に感受性である植物上でその植物の病気を制御するための方法が提供される。
34 フェニルアルキルコハク酸アミド化合物の製造法 JP2010545753 2010-01-08 JP5758127B2 2015-08-05 北村 亨; 副島 洋; 上西 寛司; 杉山 民二
35 New insecticide composition and Bacillus thuringiensis strain JP52419395 1995-03-14 JP3720360B2 2005-11-24 スターンズ,ロバート・エル; マクマラン,アニタ・エム; マンカー,デニーズ・シー; ラフバロウ,パトリシア・エイ; リユ,チーリー
36 A method for controlling a lepidopteran insect pests JP50551093 1992-09-11 JP3464217B2 2003-11-05 ウィエダ,ケンドリック,アキラ; ブラドフィッシュ,グレゴリー,エイ.
The subject disclosure concerns Bacillus thuringiensis strains which can be used to control lepidopteran pests. The strains were previously known to control coleopteran pests. The discovery of lepidopteran activity was totally unexpected. These B.t. strains can be formulated using standard lepidopteran formulation procedures. Means of administration are also standard. The genes encoding lepidopteran-active toxins can be isolated from the B.t. isolates and used to transform other microbes or plants for use to control lepidopteran pests.
37 Plant pathogen suppression JP54117998 1998-04-02 JP2001524817A 2001-12-04 ウォーレン,グレゴリー・ウェイン; エストゥルチ,フアン・ホセ; コジール,マイケル・ジーン; デサイ,ナリニ・マノイ; ナイ,ゴードン・ジェイムズ; ユ,カオ−グオ
(57)【要約】 本発明は、タンパク質の新規クラスおよびそれらのレセプターを記載する。 新規方法、アッセイおよび植物病原体の抑制法が提供される。
38 Bacillus thuringiensis toxin JP53989098 1998-03-13 JP2001522233A 2001-11-13 エイチ.アーネスト シュネフ; ケネス イー. ナーバ; ジュディー ミュラー−コーン
(57)【要約】 本発明は、新規の殺虫性毒素と、これらの毒素をコードする遺伝子とに関する。 害虫に有効な毒素をコードする遺伝子を同定するための新規ヌクレオチドプライマーも開示する。 本発明のプライマーは、これらの毒素をコードする遺伝子の特徴を示す遺伝子断片を作製するPCR技術に有用である。
39 Production of proteins using Bacillus that can not be sporulation JP50542697 1996-07-04 JPH11509096A 1999-08-17 ジョージャンセン,パー,リナ; タンジェニー,マーティン; ディダーシェン,ボージュ; プリースト,ファーガス,ジー.; フレミング,アラステア,ビー.
(57)【要約】 本発明は、親株を真に非胞子生殖性に変異するために、B. サブチリスからの情報を用いることにより、胞子形成することができないB. サブチリス以外のバチルス属のバクテリアを得る方法を提供する。 前記株は、有用な代謝物、特に酵素のようなポリペプチドの生産のために用いられる。
40 Novel pesticide compositions and Bacillus Thuringiensis Ltd. JP52778896 1996-03-12 JPH11502107A 1999-02-23 スターンズ,ロバート・エル; マクミユラン,アニタ・エム; マンカー,デニース・シー; リユー,チー−リー; ルフブロウ,パトリシア・エイ
(57)【要約】 本発明は、菌株の実質的に全ての農薬活性が菌株の発酵上清にある新規な Bacillus thuringiensis菌株に関する。 該菌株は、鞘翅目病害昆虫に対する活性を有し、バチルス関連農薬の農薬活性を高める物質を産生する。 本発明はさらに、該物質と農薬用担体、あるいは該物質とバチルス関連農薬、化学農薬および/または農薬的性質を有するウィルスを含有する農薬組成物、ならびに該農薬組成物を用いて病害生物を抑制する方法に関するものでもある。
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