The vitamin A component retinol has become an increasingly sought-after cosmetic ingredient. In previous efforts for microbial biosynthesis of vitamin A, a mixture of retinoids was produced. In order to efficiently produce retinol at high purity, the precursor and NADPH supply was first enhanced to improve retinoids accumulation in the S. cerevisiae strain constructed from a β-carotene producer by introducing β-carotene 15,15ʹ-dioxygenase, following by screening of heterologous and endogenous oxidoreductases for retinal reduction. Env9 was found as an endogenous retinal reductase and its activity was verified in vitro. By co-expressing Env9 with the E. coli ybbO, as much as 443.43 mg/L of retinol was produced at 98.76% purity in bi-phasic shake-flask culture when the antioxidant butylated hydroxytoluene was added to prevent retinoids degradation. The retinol titer reached 2479.34 mg/L in fed-batch fermentation. The success in selective biosynthesis of retinol would lay a solid foundation for its biotechnological production.
Graphical Abstract
The warm white homojunction light-emitting diode (LED) was fabricated
by a doped ZnO nanowire array homojunction with homo-epitaxial
secondary grown on a GaN substrate by the chemical vapor deposition
method. Due to the high quality of the nanosized ZnO homojunction, the
I–V characteristic curve of the ZnO homojunction shows good pn
junction rectification characteristics, and the turn-on voltage is
about 6 V. Under forward bias, bright yellow light was emitting from
the homojunction LED. From the electroluminescence spectrum, the main
luminescence peak is divided into a small part of blue light of about
420 nm and dominated yellow-green light of about 570 nm. The CIE color
space chromaticity survey shows that the chromaticity coordinates of
the homojunction LED are at (0.3358, 0.3341), which indicate that
fabricated white LEDs have potential applications in efficient and
healthy lighting and displaying fields.
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