Matches in SemOpenAlex for { <https://semopenalex.org/work/W2008394357> ?p ?o ?g. }
- W2008394357 endingPage "702" @default.
- W2008394357 startingPage "683" @default.
- W2008394357 abstract "There is extensive and unequivocal evidence that secondary metabolism in filamentous fungi and plants is associated with oxidative stress. In support of this idea, transcription factors related to oxidative stress response in yeast, plants, and fungi have been shown to participate in controlling secondary metabolism. Aflatoxin biosynthesis, one model of secondary metabolism, has been demonstrated to be triggered and intensified by reactive oxygen species buildup. An oxidative stress-related bZIP transcription factor AtfB is a key player in coordinate expression of antioxidant genes and genes involved in aflatoxin biosynthesis. Recent findings from our laboratory provide strong support for a regulatory network comprised of at least four transcription factors that bind in a highly coordinated and timely manner to promoters of the target genes and regulate their expression. In this review, we will focus on transcription factors involved in co-regulation of aflatoxin biosynthesis with oxidative stress response in aspergilli, and we will discuss the relationship of known oxidative stress-associated transcription factors and secondary metabolism in other organisms. We will also talk about transcription factors that are involved in oxidative stress response, but have not yet been demonstrated to be affiliated with secondary metabolism. The data support the notion that secondary metabolism provides a secondary line of defense in cellular response to oxidative stress." @default.
- W2008394357 created "2016-06-24" @default.
- W2008394357 creator A5003008399 @default.
- W2008394357 creator A5005221634 @default.
- W2008394357 creator A5006758273 @default.
- W2008394357 date "2013-04-18" @default.
- W2008394357 modified "2023-10-16" @default.
- W2008394357 title "Oxidative Stress-Related Transcription Factors in the Regulation of Secondary Metabolism" @default.
- W2008394357 cites W1498681083 @default.
- W2008394357 cites W1539988911 @default.
- W2008394357 cites W1780581171 @default.
- W2008394357 cites W1884072983 @default.
- W2008394357 cites W1903107055 @default.
- W2008394357 cites W1911724401 @default.
- W2008394357 cites W1938406104 @default.
- W2008394357 cites W1963585649 @default.
- W2008394357 cites W1968370010 @default.
- W2008394357 cites W1973252845 @default.
- W2008394357 cites W1973445420 @default.
- W2008394357 cites W1973909162 @default.
- W2008394357 cites W1980299910 @default.
- W2008394357 cites W1983412046 @default.
- W2008394357 cites W1984018744 @default.
- W2008394357 cites W1986342700 @default.
- W2008394357 cites W1987435753 @default.
- W2008394357 cites W1988947552 @default.
- W2008394357 cites W1989913322 @default.
- W2008394357 cites W1994663361 @default.
- W2008394357 cites W1994799959 @default.
- W2008394357 cites W1997313112 @default.
- W2008394357 cites W2002495711 @default.
- W2008394357 cites W2005037680 @default.
- W2008394357 cites W2005196582 @default.
- W2008394357 cites W2006105383 @default.
- W2008394357 cites W2006327910 @default.
- W2008394357 cites W2007871704 @default.
- W2008394357 cites W2011630904 @default.
- W2008394357 cites W2014960139 @default.
- W2008394357 cites W2016923780 @default.
- W2008394357 cites W2018409052 @default.
- W2008394357 cites W2018877897 @default.
- W2008394357 cites W2035579546 @default.
- W2008394357 cites W2035983450 @default.
- W2008394357 cites W2036224418 @default.
- W2008394357 cites W2037590349 @default.
- W2008394357 cites W2042092509 @default.
- W2008394357 cites W2043095804 @default.
- W2008394357 cites W2044760928 @default.
- W2008394357 cites W2054604249 @default.
- W2008394357 cites W2057116060 @default.
- W2008394357 cites W2070693959 @default.
- W2008394357 cites W2071636295 @default.
- W2008394357 cites W2073707180 @default.
- W2008394357 cites W2075531699 @default.
- W2008394357 cites W2079931127 @default.
- W2008394357 cites W2081755837 @default.
- W2008394357 cites W2081954942 @default.
- W2008394357 cites W2087201355 @default.
- W2008394357 cites W2090407903 @default.
- W2008394357 cites W2091170381 @default.
- W2008394357 cites W2091192245 @default.
- W2008394357 cites W2093241128 @default.
- W2008394357 cites W2095151352 @default.
- W2008394357 cites W2098793119 @default.
- W2008394357 cites W2100771810 @default.
- W2008394357 cites W2101406878 @default.
- W2008394357 cites W2104029883 @default.
- W2008394357 cites W2108507284 @default.
- W2008394357 cites W2109377647 @default.
- W2008394357 cites W2110271691 @default.
- W2008394357 cites W2112934435 @default.
- W2008394357 cites W2114259920 @default.
- W2008394357 cites W2114911706 @default.
- W2008394357 cites W2119946908 @default.
- W2008394357 cites W2120666374 @default.
- W2008394357 cites W2120862249 @default.
- W2008394357 cites W2124445103 @default.
- W2008394357 cites W2127433045 @default.
- W2008394357 cites W2131897418 @default.
- W2008394357 cites W2135901283 @default.
- W2008394357 cites W2136891997 @default.
- W2008394357 cites W2139892368 @default.
- W2008394357 cites W2142343396 @default.
- W2008394357 cites W2143663690 @default.
- W2008394357 cites W2148210166 @default.
- W2008394357 cites W2150111600 @default.
- W2008394357 cites W2153545659 @default.
- W2008394357 cites W2153680746 @default.
- W2008394357 cites W2155130938 @default.
- W2008394357 cites W2158293926 @default.
- W2008394357 cites W2158333935 @default.
- W2008394357 cites W2158565929 @default.
- W2008394357 cites W2160998060 @default.
- W2008394357 cites W2163358830 @default.
- W2008394357 cites W2164893466 @default.
- W2008394357 cites W2166185546 @default.
- W2008394357 cites W2170980858 @default.
- W2008394357 doi "https://doi.org/10.3390/toxins5040683" @default.