Patents Assigned to OIL CROPS RESEARCH INSTITUTE, CHINESE ACADEMY...
  • Patent number: 11971403
    Abstract: A time-resolved fluorescence kit for synchronously detecting 4,15-diacetoxyscirpenol, aflatoxin B1 and sterigmatocystin includes an immunochromatography time-resolved fluorescence test strip and a sample reaction bottle containing europium-labeled anti-4,15-diacetoxyscirpenol, anti-aflatoxin B1 and anti-sterigmatocystin monoclonal antibodies, where a water absorption pad, a detection pad and a sample pad are sequentially disposed on one side of the immunochromatography time-resolved fluorescence test strip from top to bottom, adjacent pads are connected in an overlapping manner at a joint, the detection pad uses a nitrocellulose membrane as a base pad, a quality control line and detection lines are transversely arranged on the nitrocellulose membrane from top to bottom, the quality control line is coated with a rabbit antimouse polyclonal antibody, and the three detection lines each are coated with a toxin-protein conjugate.
    Type: Grant
    Filed: November 16, 2020
    Date of Patent: April 30, 2024
    Assignee: OIL CROPS RESEARCH INSTITUTE, CHINESE ACADEMY OF AGRICULTURAL SCIENCES
    Inventors: Peiwu Li, Hui Li, Jun Jiang, Wen Zhang, Qi Zhang
  • Patent number: 11815511
    Abstract: A time-resolved fluorescence kit for synchronously detecting 4,15-diacetoxyscirpenol, deoxynivalenol and T-2 toxin. The kit includes an immunochromatography time-resolved fluorescence test strip and a sample reaction bottle containing freeze-dried products of europium-labeled monoclonal antibodies of toxins, where the immunochromatography time-resolved fluorescence test strip includes a liner, where a water absorption pad, a detection pad and a sample pad are sequentially attached to one side of the liner from top to bottom, adjacent pads are connected in an overlapping manner at a joint, the detection pad uses a nitrocellulose membrane as a base pad, a transverse quality control line and detection lines are arranged on the nitrocellulose membrane from top to bottom, the quality control line is coated with a rabbit antimouse polyclonal antibody, the three detection lines are located below the quality control line, and the detection lines each are coated with a toxin-protein conjugate.
    Type: Grant
    Filed: November 16, 2020
    Date of Patent: November 14, 2023
    Assignee: OIL CROPS RESEARCH INSTITUTE, CHINESE ACADEMY OF AGRICULTURAL SCIENCES
    Inventors: Qi Zhang, Xiaoqian Tang, Yizhen Bai, Wen Zhang, Peiwu Li
  • Publication number: 20230273189
    Abstract: An immunoadsorbent and a composite affinity column for purifying fumonisin B1, anguidin, T-2 toxin, zearalenone, and vomitoxin. The immunoadsorbent includes a solid phase carrier, and a fumonisin B1 monoclonal antibody, an anguidin monoclonal antibody, a T-2 toxin monoclonal antibody, a zearalenone monoclonal antibody and a vomitoxin monoclonal antibody which are coupled to the solid phase carrier, the anguidin monoclonal antibody is a monoclonal antibody secreted by a hybridoma cell strain DAS5G11E7 having an accession number of CCTCCNO:C201881. The affinity column can be used for high performance liquid chromatography-mass spectrometry detection of the fumonisin B1, the anguidin, the T-2 toxin, the zearalenone and the vomitoxin, and has stable performance. Furthermore, an economical, quick, precise and safe detection method is established of the basis of the affinity column, and can be used for purifying and detecting samples of the five toxins without mutual interference and influence.
    Type: Application
    Filed: November 16, 2020
    Publication date: August 31, 2023
    Applicant: OIL CROPS RESEARCH INSTITUTE, CHINESE ACADEMY OF AGRICULTURAL SCIENCES
    Inventors: Qi ZHANG, Yizhen BAI, Nanri YIN, Fei MA, Peiwu LI
  • Patent number: 11635429
    Abstract: An immunochromatography test strip for detecting pollution of diacetoxyscirpenol includes a bottom plate, where a water absorption pad, a detection pad, a gold-labeled pad and a sample pad are sequentially attached to one side of the bottom plate from top to bottom, adjacent pads are connected in an overlapping manner at a joint, the detection pad uses a nitrocellulose membrane as a base pad, a quality control line and a detection line are transversely arranged on the nitrocellulose membrane, the quality control line is coated with a rabbit antimouse polyclonal antibody, the detection line is located below the quality control line, and the detection line is coated with a diacetoxyscirpenol-ovalbumin conjugate; the gold-labeled pad is transversely spray-coated with a nanogold-labeled anti-diacetoxyscirpenol monoclonal antibody; and the anti-diacetoxyscirpenol monoclonal antibody is secreted by a hybridoma cell strain DAS5G11E7 with the preservation number of CCTCC NO.C201881.
    Type: Grant
    Filed: November 16, 2020
    Date of Patent: April 25, 2023
    Assignee: OIL CROPS RESEARCH INSTITUTE, CHINESE ACADEMY OF AGRICULTURAL SCIENCES
    Inventors: Xiaoqian Tang, Du Wang, Jun Jiang, Qi Zhang, Peiwu Li
  • Patent number: 11622560
    Abstract: The invention belongs to the field of microbes and specifically relates to a myroides odoratimimus biocontrol strain for efficiently degrading aflatoxin and an application thereof. A myroides odoratimimus biocontrol strain 3J2MO is preserved at the China Center for Type Culture Collection (referred to as CCTCC) on Jun. 13, 2017 with preservation number CCTCC No. M 2017329. The myroides odoratimimus biocontrol strain of the invention can effectively degrade aflatoxin and may be configured to degrade aflatoxin and treat aflatoxin pollution of food crops.
    Type: Grant
    Filed: May 29, 2020
    Date of Patent: April 11, 2023
    Assignee: OIL CROPS RESEARCH INSTITUTE, CHINESE ACADEMY OF AGRICULTURAL SCIENCES
    Inventors: Qi Zhang, Peiwu Li, Tong Wang, Xiaoxia Ding
  • Publication number: 20220412966
    Abstract: A time-resolved fluorescence kit for synchronously detecting 4,15-diacetoxyscirpenol, aflatoxin B1 and sterigmatocystin includes an immunochromatography time-resolved fluorescence test strip and a sample reaction bottle containing europium-labeled anti-4,15-diacetoxyscirpenol, anti-aflatoxin B1 and anti-sterigmatocystin monoclonal antibodies, where a water absorption pad, a detection pad and a sample pad are sequentially disposed on one side of the immunochromatography time-resolved fluorescence test strip from top to bottom, adjacent pads are connected in an overlapping manner at a joint, the detection pad uses a nitrocellulose membrane as a base pad, a quality control line and detection lines are transversely arranged on the nitrocellulose membrane from top to bottom, the quality control line is coated with a rabbit antimouse polyclonal antibody, and the three detection lines each are coated with a toxin-protein conjugate.
    Type: Application
    Filed: November 16, 2020
    Publication date: December 29, 2022
    Applicant: OIL CROPS RESEARCH INSTITUTE, CHINESE ACADEMY OF AGRICULTURAL SCIENCES
    Inventors: Peiwu LI, Hui LI, Jun JIANG, Wen ZHANG, Qi ZHANG
  • Publication number: 20220412965
    Abstract: A time-resolved fluorescence kit for synchronously detecting 4,15-diacetoxyscirpenol, deoxynivalenol and T-2 toxin. The kit includes an immunochromatography time-resolved fluorescence test strip and a sample reaction bottle containing freeze-dried products of europium-labeled monoclonal antibodies of toxins, where the immunochromatography time-resolved fluorescence test strip includes a liner, where a water absorption pad, a detection pad and a sample pad are sequentially attached to one side of the liner from top to bottom, adjacent pads are connected in an overlapping manner at a joint, the detection pad uses a nitrocellulose membrane as a base pad, a transverse quality control line and detection lines are arranged on the nitrocellulose membrane from top to bottom, the quality control line is coated with a rabbit antimouse polyclonal antibody, the three detection lines are located below the quality control line, and the detection lines each are coated with a toxin-protein conjugate.
    Type: Application
    Filed: November 16, 2020
    Publication date: December 29, 2022
    Applicant: OIL CROPS RESEARCH INSTITUTE, CHINESE ACADEMY OF AGRICULTURAL SCIENCES
    Inventors: Qi ZHANG, Xiaoqian TANG, Yizhen BAI, Wen ZHANG, Peiwu LI
  • Publication number: 20220404352
    Abstract: An immunochromatography test strip for detecting pollution of diacetoxyscirpenol includes a bottom plate, where a water absorption pad, a detection pad, a gold-labeled pad and a sample pad are sequentially attached to one side of the bottom plate from top to bottom, adjacent pads are connected in an overlapping manner at a joint, the detection pad uses a nitrocellulose membrane as a base pad, a quality control line and a detection line are transversely arranged on the nitrocellulose membrane, the quality control line is coated with a rabbit antimouse polyclonal antibody, the detection line is located below the quality control line, and the detection line is coated with a diacetoxyscirpenol-ovalbumin conjugate; the gold-labeled pad is transversely spray-coated with a nanogold-labeled anti-diacetoxyscirpenol monoclonal antibody; and the anti-diacetoxyscirpenol monoclonal antibody is secreted by a hybridoma cell strain DAS5G11E7 with the preservation number of CCTCC NO.C201881.
    Type: Application
    Filed: November 16, 2020
    Publication date: December 22, 2022
    Applicant: OIL CROPS RESEARCH INSTITUTE, CHINESE ACADEMY OF AGRICULTURAL SCIENCES
    Inventors: Xiaoqian TANG, Du WANG, Jun JIANG, Qi ZHANG, Peiwu LI
  • Publication number: 20220380796
    Abstract: The present invention provides methods and compositions for identifying, selecting, and/or producing a soybean plant or germplasm resistant to Asian soybean rust using markers, genes and chromosomal intervals derived from Glycine max strain SX6907. Asian soybean rust resistant soybean seeds, plants, and germplasms are also provided.
    Type: Application
    Filed: July 1, 2020
    Publication date: December 1, 2022
    Applicants: OIL CROPS RESEARCH INSTITUTE, CHINESE ACADEMY..., SYNGENTA CROP PROTECTION AG, SYNGENTA BIOTECHNOLOGY CHINA CO, LTD
    Inventors: Zhihui SHAN, Qingnan HAO, Haifeng CHEN, Yanyan YANG, Chanjuan ZHANG, Limiao CHEN, Songli YUAN, Dong CAO, Wei GUO, Xiaojuan ZHANG, Shuilian CHEN, Zhonglu YANG, Dezhen QIU, Xinan ZHOU, Qingli LIU, Becky Welsh BREITINGER, Shujie DONG
  • Publication number: 20220120722
    Abstract: The present invention relates to an early warning method before the occurrence of aflatoxin contamination.
    Type: Application
    Filed: October 15, 2021
    Publication date: April 21, 2022
    Applicant: OIL CROPS RESEARCH INSTITUTE, CHINESE ACADEMY OF AGRICULTURAL SCIENCES
    Inventors: Qi ZHANG, Peiwu LI, Huali XIE, Xiupin WANG, Xiaofeng YUE, Wen ZHANG
  • Publication number: 20220120725
    Abstract: The present invention relates to an aflatoxin contamination risk warning molecule and use thereof. The steps are as follows: weighing a quantitative sample, extracting the aflatoxin contamination risk warning molecule to obtain a sample extract, and detecting and analyzing the sample extract to obtain a quantitative result of the aflatoxin contamination risk warning molecule; performing modeling with a chemometrics method using the content of one or more of the aflatoxin contamination risk warning molecules as a variable to obtain a classification prediction model, and performing risk assessment on aflatoxin contamination risk of the sample based on the classification prediction model, wherein a warning molecule of an aflatoxin toxigenic strain is one or a combination of more than one of versiconol (VOH), versicolorin B (Ver B), and 5-methoxysterigmatocystin (5-MST).
    Type: Application
    Filed: October 15, 2021
    Publication date: April 21, 2022
    Applicant: OIL CROPS RESEARCH INSTITUTE, CHINESE ACADEMY OF AGRICULTURAL SCIENCES
    Inventors: Peiwu LI, Qi ZHANG, Huali XIE, Xiupin WANG, Xiaofeng YUE, Yizhen BAI
  • Publication number: 20220079160
    Abstract: A green method and application for inhibiting toxin-producing Aspergillus flavus are provided. After a ?-Fe2O3 nanorod nanomaterial is brought into contact with spores of toxin-producing Aspergillus flavus without germination or after germination for irradiation, under irradiation of a light source, inhibiting growth of the toxin-producing Aspergillus flavus to lower a content of aflatoxin. In the disclosure, the growth of hyphae and the germination of spores of the Aspergillus flavus may be effectively inhibited, the growth of the toxin-producing Aspergillus flavus may be inhibited, the pollution of agricultural products such as peanuts by the Aspergillus flavus may be effectively prevented, and the content of aflatoxin may be reduced, so that the disclosure has broad application prospects.
    Type: Application
    Filed: September 15, 2021
    Publication date: March 17, 2022
    Applicant: OIL CROPS RESEARCH INSTITUTE, CHINESE ACADEMY OF AGRICULTURAL SCIENCES
    Inventors: Jin MAO, Peiwu LI, Di SUN, Qi ZHANG, Wen ZHANG, Liangxiao ZHANG
  • Patent number: 11098278
    Abstract: The invention belongs to the field of chemical analysis and detection, and specifically relates to a pretreatment method for LC-MS detecting metabolomics of Aspergillus flavus. The method includes: culturing a strain of Aspergillus flavus; quenching the Aspergillus flavus; disrupting the cell membrane of Aspergillus flavus, and extracting a metabolome. The invention adopts a cold glycerol buffer solution combined with a rapid filtration method for quenching, and a MeOH/DCM/ACN/EA/HCOOH mixture is used as an metabolome extract, thereby achieving the object of efficiently extracting different polar compounds, and metabolome compound coverage is high; pretreatment of the cell metabolomics of Aspergillus flavus by the method of the invention can ensure the repeatability and stability of the metabolomics analysis method and reduce the false positive of the test results.
    Type: Grant
    Filed: October 7, 2019
    Date of Patent: August 24, 2021
    Assignee: OIL CROPS RESEARCH INSTITUTE, CHINESE ACADEMY OF AGRICULTURAL SCIENCES
    Inventors: Xiupin Wang, Peiwu Li, Huali Xie, Xuefang Wang, Qi Zhang, Xiaoxia Ding, Wen Zhang, Liangxiao Zhang
  • Publication number: 20210189512
    Abstract: A method for identifying and evaluating toxigenic capability of an aflatoxigenic strain. A ratio of the aflatoxin yield to Nor-1 gene transcriptional quantity is determined to have high relative stability. An Aspergillus flavus strain toxigenic capability identification model is established, and thus a regression equation between the Aspergillus flavus toxigenic capability and the ratio AFT/Nor-1 of the aflatoxin yield to the Nor-1 gene transcriptional quantity is obtained.
    Type: Application
    Filed: November 29, 2019
    Publication date: June 24, 2021
    Applicant: OIL CROPS RESEARCH INSTITUTE, CHINESE ACADEMY OF AGRICULTURAL SCIENCES
    Inventors: Qi ZHANG, Peiwu LI, Yizhen BAI, Hui LI, Jun JIANG, Wen ZHANG
  • Patent number: 11033032
    Abstract: The present invention relates to the microbiological field, and particularly relates to a Leclercia adcarboxglata biocontrol strain efficiently inhibiting production of aflatoxins by Aspergillus flavus. The Leclercia adcarboxglata biocontrol strain Wt16 was deposited at China Center for Type Culture Collection (CCTCC) on Jun. 13, 2017, and the accession number of the strain is CCTCC No. M2017331. The Leclercia adcarboxglata strain Wt16 is isolated from peanut pods for the first time which can significantly inhibit aflatoxins production by Aspergillus flavus, and also has an extremely good effect on inhibiting aflatoxins production by Aspergillus flavus for peanuts from different sources.
    Type: Grant
    Filed: November 29, 2018
    Date of Patent: June 15, 2021
    Assignee: OIL CROPS RESEARCH INSTITUTE, CHINESE ACADEMY OF AGRICULTURAL SCIENCES
    Inventors: Peiwu Li, Xiaoxia Ding, Yizhen Bai, Wen Zhang, Qi Zhang
  • Patent number: 10976247
    Abstract: The invention discloses a NIR method for fatty acid content of oilseeds, including: selection of oilseed samples, and analyzing the oilseed samples by an near infrared spectrometer to obtain NIR spectra; preprocessing of NIR spectra and establishment of a NIR spectral database of oilseeds; establishment of a fatty acid database of oilseeds based on gas chromatography; establishment of prediction model of fatty acids in oilseeds; acquiring NIR spectrum of a sample to be tested by the near infrared spectrometer, and importing the preprocessed NIR spectrum into the prediction model of fatty acids to obtain the predicted fatty acid content of the tested sample. The method is simple and rapid to operate and is non-destructive, and the detection time of the sample is greatly shortened and the detection cost is reduced.
    Type: Grant
    Filed: August 8, 2019
    Date of Patent: April 13, 2021
    Assignee: OIL CROPS RESEARCH INSTITUTE, CHINESE ACADEMY OF ARGICULTURAL SCIENCES
    Inventors: Liangxiao Zhang, Peiwu Li, Zhe Yuan, Du Wang, Xuefang Wang, Wen Zhang, Qi Zhang
  • Publication number: 20200291491
    Abstract: The invention belongs to the field of microbes and specifically relates to a myroides odoratimimus biocontrol strain for efficiently degrading aflatoxin and an application thereof. A myroides odoratimimus biocontrol strain 3J2MO is preserved at the China Center for Type Culture Collection (referred to as CCTCC) on Jun. 13, 2017 with preservation number CCTCC No. M 2017329. The myroides odoratimimus biocontrol strain of the invention can effectively degrade aflatoxin and may be configured to degrade aflatoxin and treat aflatoxin pollution of food crops.
    Type: Application
    Filed: May 29, 2020
    Publication date: September 17, 2020
    Applicant: OIL CROPS RESEARCH INSTITUTE, CHINESE ACADEMY OF AGRICULTURAL SCIENCES
    Inventors: Qi ZHANG, Peiwu LI, Tong WANG, Xiaoxia DING
  • Publication number: 20200032200
    Abstract: The invention belongs to the field of chemical analysis and detection, and specifically relates to a pretreatment method for LC-MS detecting metabolomics of Aspergillus flavus. The method includes: culturing a strain of Aspergillus flavus; quenching the Aspergillus flavus; disrupting the cell membrane of Aspergillus flavus, and extracting a metabolome. The invention adopts a cold glycerol buffer solution combined with a rapid filtration method for quenching, and a MeOH/DCM/ACN/EA/HCOOH mixture is used as an metabolome extract, thereby achieving the object of efficiently extracting different polar compounds, and metabolome compound coverage is high; pretreatment of the cell metabolomics of Aspergillus flavus by the method of the invention can ensure the repeatability and stability of the metabolomics analysis method and reduce the false positive of the test results.
    Type: Application
    Filed: October 7, 2019
    Publication date: January 30, 2020
    Applicant: OIL CROPS RESEARCH INSTITUTE, CHINESE ACADEMY OF AGRICULTURAL SCIENCES
    Inventors: Xiupin WANG, Peiwu LI, Huali XIE, Xuefang WANG, Qi ZHANG, Xiaoxia DING, Wen ZHANG, Liangxiao ZHANG
  • Patent number: 10258058
    Abstract: A method for preparing functional edible oil rich in phytosterol esters and diglycerides includes steps of: 1) adding a raw material: adding phytosterol, triglyceride and a molecular sieve into a reactor, wherein a ratio of the phytosterol and the triglyceride is 1:2-1:4, a molecular sieve amount is 50 g/L; heating to 50-60° C. and stirring for 30-60 min, for obtaining a pre-mixture; 2) providing non-aqueous enzymatic transesterification: adding 5-20 g/L lipase into the pre-mixture, adding 100-200 ppm antioxidant, stirring and reacting for 8-12 h with a temperature of 50-60° C. and an atmospheric pressure, stopping heating and naturally cooling to a room temperature; and 3) post-treating: after reaction, removing the lipase and the molecular sieve by centrifugation, for obtaining the functional edible oil. The functional edible oil rich in two nutritional active components is obtained by the one-step method. Products of the present invention do not need separation and purification, and operation is simple.
    Type: Grant
    Filed: May 7, 2017
    Date of Patent: April 16, 2019
    Assignee: OIL CROPS RESEARCH INSTITUTE, CHINESE ACADEMY OF AGRICULTURAL SECIENCES
    Inventors: Fenghong Huang, Mingming Zheng, Shi Wang, Xia Xiang, Jie Shi, Qianchun Deng, Wenlin Li, Chuyun Wan
  • Publication number: 20120034711
    Abstract: The present invention belongs to the field of biological detection. Multi-line immunochromatographic test strip for semi-quantitative detection of aflatoxin B1 comprises a paperboard, wherein a water-absorbing pad, a detection pad, a gold-labeled pad and a sample pad are adhered sequentially on one surface of the paperboard from top to bottom, wherein each adjacent pads is overlapped and connected, the detection pad uses a nitrocellulose film as a backing pad, the nitrocellulose film is provided with a transverse control line, a test line I, a test line II and a test line III, wherein the control line is coated with a rabbit anti-mouse polyclonal antibody, and the test line I, test line II and test line III are coated with aflatoxin B1-bovine serum albumin conjugate (AFB1-BSA), respectively: and the gold-labeled pad is transversely coated with a nanogold-labeled anti-aflatoxin B1 monoclonal antibody.
    Type: Application
    Filed: August 4, 2011
    Publication date: February 9, 2012
    Applicant: Oil Crops Research Institute, Chinese Academy of Agricultural Science
    Inventors: Peiwu LI, Daohong Zhang, Qi Zhang, Wen Zhang, Xiaoxia Ding, Jun Jiang, Xiaomei Chen