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of 7
pro vyhledávání: '"Yushi Sakata"'
Publikováno v:
Cleaner and Responsible Consumption, Vol 3, Iss , Pp 100027- (2021)
In recent years, an innovative eco-designed container (replace type) has been developed with expectation of further reducing plastic consumption. This container is used by installing the flexible package directly. Moreover, it contributed to removal
Externí odkaz:
https://doaj.org/article/c625aaa5e6e44c3b9eaeed15bdc283f8
Autor:
Toru Okada, Norihiro Itsubo, Hiroki Kawaguchi, Tsuyoshi Egawa, Satoshi Kunii, Yushi Sakata, Manabu Shibata, Katsuyuki Kozake
Publikováno v:
Sustainability, Vol 13, Iss 9851, p 9851 (2021)
Sustainability
Volume 13
Issue 17
Sustainability
Volume 13
Issue 17
The share of digital printing on flexible plastic packaging has been increasing rapidly in response to the market demand for agility in Japan. To meet all these challenges, our response is the aqueous inkjet ink “LUNAJET®”. By combining aqueous
Publikováno v:
Cleaner and Responsible Consumption, Vol 3, Iss, Pp 100027-(2021)
In recent years, an innovative eco-designed container (replace type) has been developed with expectation of further reducing plastic consumption. This container is used by installing the flexible package directly. Moreover, it contributed to removal
Autor:
Rinji Akada, Manabu Yoshida, Kin-ichiro Kominami, Harumasa Shima, Mitsuo Hirano, Hiroko Kawaguchi, Yushi Sakata, Ichiro Yamashita
Publikováno v:
Molecular and General Genetics MGG. 221:176-186
SME1 was cloned due to its high copy number effect: it enabled MATa/MAT alpha diploid cells to undergo meiosis and sporulation in a vegetative medium. Disruption of SME1 resulted in a recessive Spo- phenotype. These results suggest that SME1 is a pos
Publikováno v:
Bioscience, biotechnology, and biochemistry. 57(10)
The IME2 gene product (Ime2) is required for entry into meiosis and sporulation in S. cerevisiae. It has been predicted to be composed of two domains, an amino-terminal domain with homology to protein kinases and a carboxy-terminal acidic domain. The
Construction and characterization of mutant glucoamylases from the yeast Saccharomycopsis fibuligera
Publikováno v:
Agricultural and Biological Chemistry. 53:3159-3167
To find amino acid residues which are required for glucoamylase activity, mutant glucoamylase genes were constructed by in vitro mutations of GLU1 DNA encoding Saccharomycopsis fibuligera glucoamylase and introduced into Saccharomyces cerevisiae, and
Publikováno v:
Agricultural and Biological Chemistry. 53:3159-3167