-
/com/content_images/BioChip_pboxx-pixelboxx-79107_72dpi_367H_367W.jpg
/com/content_images/BioChip_pboxx-pixelboxx-79107_72dpi_367H_367W.jpg
367
/com/content_images/BioChip_pboxx-pixelboxx-79107_72dpi_425H_425W.jpg
/com/content_images/BioChip_pboxx-pixelboxx-79107_300dpi_1772H_1772W.jpg
Highly magnified electrical BioChip (original size: approx. 1 x 2.5 centimeters)
Highly magnified electrical BioChip (original size: approx. 1 x 2.5 centimeters)
425
425
591
591
-
/com/content_images/BioChip_Originalgre_pboxx-pixelboxx-79112_72dpi_367H_367W.jpg
/com/content_images/BioChip_Originalgre_pboxx-pixelboxx-79112_72dpi_367H_367W.jpg
367
/com/content_images/BioChip_Originalgre_pboxx-pixelboxx-79112_72dpi_425H_425W.jpg
/com/content_images/BioChip_Originalgre_pboxx-pixelboxx-79112_300dpi_1772H_1772W.jpg
The electrical BioChip allows the activity of marker genes to be measured after just one hour. Marker gene activity is a measure of how efficiently the bacteria produce laundry detergent enzymes.
The electrical BioChip allows the activity of marker genes to be measured after just one hour. Marker gene activity is a measure of how efficiently the bacteria produce laundry detergent enzymes.
425
425
3328
3328
-
/com/content_images/DNAChip_pboxx-pixelboxx-79116_72dpi_367H_367W.jpg
/com/content_images/DNAChip_pboxx-pixelboxx-79116_72dpi_367H_367W.jpg
367
/com/content_images/DNAChip_pboxx-pixelboxx-79116_72dpi_425H_425W.jpg
/com/content_images/DNAChip_pboxx-pixelboxx-79116_300dpi_1772H_1772W.jpg
DNA chip carrying some 4,000 precisely positioned genes.
DNA chip carrying some 4,000 precisely positioned genes.
425
425
1763
1763
-
/com/content_images/conv_pboxx-pixelboxx-79085_72dpi_367H_367W.jpg
/com/content_images/conv_pboxx-pixelboxx-79085_72dpi_367H_367W.jpg
367
/com/content_images/conv_pboxx-pixelboxx-79085_72dpi_425H_425W.jpg
/com/content_images/conv_pboxx-pixelboxx-79085_300dpi_1772H_1772W.jpg
A fermenter: Laundry detergent enzymes can be produced in this equipment with the help of bacteria.
A fermenter: Laundry detergent enzymes can be produced in this equipment with the help of bacteria.
425
425
2424
2424
-
/com/content_images/3.3.1.1.1_ObjectID257456_pboxx-pixelboxx-79047_72dpi_367H_367W.jpg
/com/content_images/3.3.1.1.1_ObjectID257456_pboxx-pixelboxx-79047_72dpi_367H_367W.jpg
363
/com/content_images/3.3.1.1.1_ObjectID257456_pboxx-pixelboxx-79047_72dpi_425H_425W.jpg
/com/content_images/3.3.1.1.1_ObjectID257456_pboxx-pixelboxx-79047_300dpi_1772H_1772W.jpg
A computer model of a protease: With its mouth – the “active center” – the protease gobbles up dirt from the laundry.
A computer model of a protease: With its mouth – the “active center” – the protease gobbles up dirt from the laundry.
425
421
2426
2402
-
/com/content_images/conv_pboxx-pixelboxx-79226_72dpi_367H_367W.jpg
/com/content_images/conv_pboxx-pixelboxx-79226_72dpi_367H_367W.jpg
367
/com/content_images/conv_pboxx-pixelboxx-79226_72dpi_425H_425W.jpg
/com/content_images/conv_pboxx-pixelboxx-79226_300dpi_1772H_1772W.jpg
Bacteria are cultivated in the laboratory on agar nutrient blocks in petri dishes. The substances in the nutrient blocks are carefully selected to provide optimal growing conditions for the desired microorganisms.
Bacteria are cultivated in the laboratory on agar nutrient blocks in petri dishes. The substances in the nutrient blocks are carefully selected to provide optimal growing conditions for the desired microorganisms.
425
425
566
566
-
/com/content_images/conv_pboxx-pixelboxx-79221_72dpi_367H_367W.jpg
/com/content_images/conv_pboxx-pixelboxx-79221_72dpi_367H_367W.jpg
367
/com/content_images/conv_pboxx-pixelboxx-79221_72dpi_425H_425W.jpg
/com/content_images/conv_pboxx-pixelboxx-79221_300dpi_1772H_1772W.jpg
Computer simulation: A laundry detergent enzyme (red) attacks the soiling (yellow) on a textile fiber (gray).
Computer simulation: A laundry detergent enzyme (red) attacks the soiling (yellow) on a textile fiber (gray).
425
425
1536
1536
-
/com/content_images/conv_pboxx-pixelboxx-79185_72dpi_367H_367W.jpg
/com/content_images/conv_pboxx-pixelboxx-79185_72dpi_367H_367W.jpg
367
/com/content_images/conv_pboxx-pixelboxx-79185_72dpi_425H_425W.jpg
/com/content_images/conv_pboxx-pixelboxx-79185_300dpi_1772H_1772W.jpg
The agar blocks are ‘inoculated’ with samples of the bacteria.
The agar blocks are ‘inoculated’ with samples of the bacteria.
425
425
566
566
-
/com/content_images/Genomkarte_pboxx-pixelboxx-78965_72dpi_367H_367W.jpg
/com/content_images/Genomkarte_pboxx-pixelboxx-78965_72dpi_367H_367W.jpg
366
/com/content_images/Genomkarte_pboxx-pixelboxx-78965_72dpi_425H_425W.jpg
/com/content_images/Genomkarte_pboxx-pixelboxx-78965_300dpi_1772H_1772W.jpg
A genome map – this shows which genes an organism contains and how they are arranged.
A genome map – this shows which genes an organism contains and how they are arranged.
425
424
487
486
-
/com/content_images/conv_pboxx-pixelboxx-79212_72dpi_367H_367W.jpg
/com/content_images/conv_pboxx-pixelboxx-79212_72dpi_367H_367W.jpg
367
/com/content_images/conv_pboxx-pixelboxx-79212_72dpi_425H_425W.jpg
/com/content_images/conv_pboxx-pixelboxx-79212_300dpi_1772H_1772W.jpg
Microscopy is one of the standard methods used to study microorganisms.
Microscopy is one of the standard methods used to study microorganisms.
425
425
566
566