METHOD FOR PRODUCING PROTEIN
    2.
    发明专利

    公开(公告)号:PH12018502082A1

    公开(公告)日:2019-07-08

    申请号:PH12018502082

    申请日:2018-09-27

    Abstract: Disclosed is a method for producing protein by filamentous fungi with which it is possible to suppress a decrease in the degree of dissolved oxygen saturation during culturing, even when the culturing of filamentous fungi is scaled up. This method for producing protein comprises culturing a BXL1-gene-disrupted Trichoderma fungus by employing, as an inducer, a biomass including cellulose and xylan. By using a BXL1-gene-disrupted Trichoderma fungus, it is possible to suppress a decrease in the degree of dissolved oxygen saturation, even when xylose and cellulose are employed as an inducer.

    Method for producing chemical substance

    公开(公告)号:AU2013208441A1

    公开(公告)日:2014-08-21

    申请号:AU2013208441

    申请日:2013-01-11

    Abstract: [Problem] To provide a method for producing a chemical substance with high yield using a mixed sugar composed of a hexose and a pentose as a fermentation raw material. [Solution] Provided is a method for producing a chemical substance through continuous fermentation, said method comprising filtrating a culture solution of a microorganism using a separation membrane, retaining an unfiltered portion of the culture solution in the culture solution or refluxing the unfiltered portion through the culture solution, adding a new fermentation raw material to the culture solution and collecting a product from the culture solution, wherein the fermentation raw material comprises a pentose and a hexose and the microorganism has a pathway through which a pentose can be metabolized with a pentose isomerase.

    Method for producing protein
    7.
    发明专利

    公开(公告)号:AU2017239832A1

    公开(公告)日:2018-10-25

    申请号:AU2017239832

    申请日:2017-03-30

    Abstract: Disclosed is a method for producing protein by filamentous fungi with which it is possible to suppress a decrease in the degree of dissolved oxygen saturation during culturing, even when the culturing of filamentous fungi is scaled up. This method for producing protein comprises culturing a BXL1-gene-disrupted Trichoderma fungus by employing, as an inducer, a biomass including cellulose and xylan. By using a BXL1-gene-disrupted Trichoderma fungus, it is possible to suppress a decrease in the degree of dissolved oxygen saturation, even when xylose and cellulose are employed as an inducer.

    Method for producing chemical substance

    公开(公告)号:AU2013208440B2

    公开(公告)日:2016-12-01

    申请号:AU2013208440

    申请日:2013-01-11

    Abstract: [Problem] To provide a method for producing a chemical substance with high yield using a mixed sugar composed of a hexose and a pentose as a fermentation raw material. [Solution] Provided is a method for producing a chemical substance through continuous fermentation, said method comprising filtrating a culture solution of a microorganism using a separation membrane, retaining an unfiltered portion of the culture solution in the culture solution or refluxing the unfiltered portion through the culture solution, adding a new fermentation raw material to the culture solution and collecting a product from the culture solution, wherein the fermentation raw material comprises a pentose and a hexose and the microorganism has a pathway through which a pentose can be metabolized with a pentose reductase and a pentol dehydrogenase.

    LIQUID-FEEDING CHIP AND ANALYSIS METHOD

    公开(公告)号:CA2706402C

    公开(公告)日:2016-05-03

    申请号:CA2706402

    申请日:2008-11-20

    Abstract: A liquid-feeding chip for feeding a liquid utilizing the action of centrifugal force and gravity by rotating the chip around an axis of rotation, includes a first storage tank (1-1) into which the liquid can be introduced when rotation of the chip is stopped, and two or more liquid-feeding units arranged in a plurality of levels adjacent to each other, each liquid-feeding unit (U-1, U-2, U-3) being composed of a first holding tank (10-1, 20-1, 30-1), a second holding tank (10-2, 20-2, 30-2) positioned in the direction of gravity with respect to the first holding tank, and a channel B(B-1, B-2, B-3) which extends from the first holding tank in the direction of gravity and which connects the first holding tank and the second holding tank, the first holding tank at a first level being connected with a channel A(A-1) which extends from the first storage tank toward an outer circumferential side. In the liquid-feeding chip, the adjacent liquid-feeding units are connected by a channel C (C-1, C-2) which extends from the second holding tank of the liquid-feeding unit at an upper level to an outer circumferential side during rotation, and which is in communication with the first holding tank of the liquid-feeding unit at a lower level.

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