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    • 1. 发明授权
    • Resistance to auxinic herbicides
    • 对生长素除草剂的抗性
    • US08071847B2
    • 2011-12-06
    • US12875987
    • 2010-09-03
    • Terence A. WalshGlenn HicksMary HonmaJohn P. Davies
    • Terence A. WalshGlenn HicksMary HonmaJohn P. Davies
    • A01H1/00A01H5/00C12N15/82
    • C12N15/8274C07K14/415
    • The invention provides methods of identifying herbicidal auxins. The invention further provides auxin-herbicide-resistant plants and genes conferring auxin-herbicide resistance. This invention also provides a method of identifying other proteins that bind picolinate auxins from additional plant species. The invention further provides a method to identify the molecular binding site for picolinate auxins. The invention also includes the use of the picolinate herbicidal auxin target site proteins, and methods of discovering new compounds with herbicidal or plant growth regulatory activity. The invention also includes methods for producing plants that are resistant to picolinate herbicidal auxins. Specific examples of novel proteins associated with herbicide binding include AFB5, AFB4, and SGT1b.
    • 本发明提供了鉴定除草生长素的方法。 本发明还提供了生长素 - 除草剂抗性植物和赋予生长素 - 除草剂抗性的基因。 本发明还提供了鉴定从其它植物物种结合吡啶甲酸生长素的其它蛋白质的方法。 本发明还提供了鉴定吡啶甲酸生长素的分子结合位点的方法。 本发明还包括使用吡啶甲酸盐除草生长因子靶位点蛋白,以及发现具有除草或植物生长调节活性的新化合物的方法。 本发明还包括用于生产耐吡虫啉除草生长素的植物的方法。 与除草剂结合相关的新蛋白质的具体实例包括AFB5,AFB4和SGT1b。
    • 3. 发明授权
    • Resistance to auxinic herbicides
    • 对生长素除草剂的抗性
    • US08603755B2
    • 2013-12-10
    • US13304193
    • 2011-11-23
    • Terence A. WalshGlenn HicksMary HonmaJohn P. Davies
    • Terence A. WalshGlenn HicksMary HonmaJohn P. Davies
    • G01N33/53C07K14/415
    • C12N15/8274C07K14/415
    • The invention provides methods of identifying herbicidal auxins. The invention further provides auxin-herbicide-resistant plants and genes conferring auxin-herbicide resistance. This invention also provides a method of identifying other proteins that bind picolinate auxins from additional plant species. The invention further provides a method to identify the molecular binding site for picolinate auxins. The invention also includes the use of the picolinate herbicidal auxin target site proteins, and methods of discovering new compounds with herbicidal or plant growth regulatory activity. The invention also includes methods for producing plants that are resistant to picolinate herbicidal auxins. Specific examples of novel proteins associated with herbicide binding include AFB5, AFB4, and SGT1b.
    • 本发明提供了鉴定除草生长素的方法。 本发明还提供了生长素 - 除草剂抗性植物和赋予生长素 - 除草剂抗性的基因。 本发明还提供了鉴定从其它植物物种结合吡啶甲酸生长素的其它蛋白质的方法。 本发明还提供了鉴定吡啶甲酸生长素的分子结合位点的方法。 本发明还包括使用吡啶甲酸盐除草生长因子靶位点蛋白,以及发现具有除草或植物生长调节活性的新化合物的方法。 本发明还包括用于生产耐吡虫啉除草生长素的植物的方法。 与除草剂结合相关的新蛋白质的具体实例包括AFB5,AFB4和SGT1b。
    • 5. 发明申请
    • RESISTANCE TO AUXINIC HERBICIDES
    • 抵抗辅助除草剂
    • US20120064540A1
    • 2012-03-15
    • US13304193
    • 2011-11-23
    • Terence A. WalshGlenn HicksMary HonmaJohn P. Davies
    • Terence A. WalshGlenn HicksMary HonmaJohn P. Davies
    • G01N33/566
    • C12N15/8274C07K14/415
    • The invention provides methods of identifying herbicidal auxins. The invention further provides auxin-herbicide-resistant plants and genes conferring auxin-herbicide resistance. This invention also provides a method of identifying other proteins that bind picolinate auxins from additional plant species. The invention further provides a method to identify the molecular binding site for picolinate auxins. The invention also includes the use of the picolinate herbicidal auxin target site proteins, and methods of discovering new compounds with herbicidal or plant growth regulatory activity. The invention also includes methods for producing plants that are resistant to picolinate herbicidal auxins. Specific examples of novel proteins associated with herbicide binding include AFB5, AFB4, and SGT1b.
    • 本发明提供了鉴定除草生长素的方法。 本发明还提供了生长素 - 除草剂抗性植物和赋予生长素 - 除草剂抗性的基因。 本发明还提供了鉴定从其它植物物种结合吡啶甲酸生长素的其它蛋白质的方法。 本发明还提供了鉴定吡啶甲酸生长素的分子结合位点的方法。 本发明还包括使用吡啶甲酸盐除草生长因子靶位点蛋白,以及发现具有除草或植物生长调节活性的新化合物的方法。 本发明还包括用于生产耐吡虫啉除草生长素的植物的方法。 与除草剂结合相关的新蛋白质的具体实例包括AFB5,AFB4和SGT1b。
    • 6. 发明申请
    • BIOMETRIC SENSOR FOR HUMAN PRESENCE DETECTION AND ASSOCIATED METHODS
    • 用于人类存在检测的生物传感器及相关方法
    • US20110202994A1
    • 2011-08-18
    • US12704757
    • 2010-02-12
    • Glenn HicksRichard AlburyJames W. Neil
    • Glenn HicksRichard AlburyJames W. Neil
    • G06F21/00
    • G06F21/32G06F21/316G06F2221/2133H04L63/0861
    • An electronic device may include a communications interface, a user prompting device, a biometric sensor, and a controller. The controller may perform biometric spoof detection with the biometric sensor, and receive a request for human presence verification from a remote device via the communications interface. The controller may also prompt the user for a verification action using the sensor based upon receiving the request, and determine that the user has completed the verification action in response to the prompting and based upon the biometric spoof detection. The controller may further send a response to the remote device via the communications interface and based upon determining that the user has completed the verification action. The controller may send a notification to the remote device that there is a biometric sensor.
    • 电子设备可以包括通信接口,用户提示设备,生物测定传感器和控制器。 控制器可以使用生物特征传感器执行生物特征欺骗检测,并且经由通信接口从远程设备接收对人类存在验证的请求。 控制器还可以基于接收到请求来提示用户使用传感器的验证动作,并且基于生物特征欺骗检测确定用户已经完成了验证动作以响应提示。 控制器还可以经由通信接口并基于确定用户已经完成了验证动作来向远程设备发送响应。 控制器可以向远程设备发送有一个生物识别传感器的通知。
    • 8. 发明申请
    • RESISTANCE TO AUXINIC HERBICIDES
    • 抵抗辅助除草剂
    • US20110016590A1
    • 2011-01-20
    • US12875946
    • 2010-09-03
    • Terence A. WalshGlenn HicksMary HonmaJohn P. Davies
    • Terence A. WalshGlenn HicksMary HonmaJohn P. Davies
    • A01H5/00C12N15/63C07H21/00A01N43/40A01H5/10C12N9/00G01N33/566A01P13/00
    • C12N15/8274C07K14/415
    • The invention provides methods of identifying herbicidal auxins. The invention further provides auxin-herbicide-resistant plants and genes conferring auxin-herbicide resistance. This invention also provides a method of identifying other proteins that bind picolinate auxins from additional plant species. The invention further provides a method to identify the molecular binding site for picolinate auxins. The invention also includes the use of the picolinate herbicidal auxin target site proteins, and methods of discovering new compounds with herbicidal or plant growth regulatory activity. The invention also includes methods for producing plants that are resistant to picolinate herbicidal auxins. Specific examples of novel proteins associated with herbicide binding include AFB5, AFB4, and SGT1b.
    • 本发明提供了鉴定除草生长素的方法。 本发明还提供了生长素 - 除草剂抗性植物和赋予生长素 - 除草剂抗性的基因。 本发明还提供了鉴定从其它植物物种结合吡啶甲酸生长素的其它蛋白质的方法。 本发明还提供了鉴定吡啶甲酸生长素的分子结合位点的方法。 本发明还包括使用吡啶甲酸盐除草生长因子靶位点蛋白,以及发现具有除草或植物生长调节活性的新化合物的方法。 本发明还包括用于生产耐吡虫啉除草生长素的植物的方法。 与除草剂结合相关的新蛋白质的具体实例包括AFB5,AFB4和SGT1b。
    • 9. 发明授权
    • Pull trailer dump truck
    • 拉拖车自卸车
    • US5193968A
    • 1993-03-16
    • US480226
    • 1990-02-15
    • W. Glenn Hicks
    • W. Glenn Hicks
    • B60P1/64
    • B60P1/6427
    • A pull trailer dump truck assembly (10) is disclosed which uses a dump truck (12), a trailer (18) and an improved locking mechanism (24). The locking mechanism (24) includes at least one pair of cooperating locking wedges (54, 56) mounted on the trailer body (22) and the trailer frame (20) which move into wedging engagement when the trailer body is moved into the secured, traveling position on the trailer frame. A self-locking pintle hook (60) can be mounted on the frame to automatically lock with a pintle eye (58) as the wedge members move into wedging engagement to secure the trailer body (22) on the trailer frame (20). A power cylinder (66) can also be provided to move a locking wedge member (64) on the trailer frame and a locking wedge member (62) on the trailer body into locking wedged engagement.
    • 公开了使用自卸车(12),拖车(18)和改进的锁定机构(24)的牵引式拖车自卸车组件(10)。 锁定机构(24)包括安装在拖车主体(22)上的至少一对配合的锁定楔(54,56)和拖车框架(20),当拖车主体移动到固定的, 拖车架上的行驶位置。 当楔形构件移动成楔入接合以将拖车主体(22)固定在拖车框架(20)上时,自锁枢栓钩(60)可以安装在框架上以自动锁定眼睛(58)。 还可以设置动力缸(66)以将拖车框架上的锁定楔形构件(64)和拖车主体上的锁定楔形构件(62)移动成锁定楔形接合。