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黄素蛋白CryD和VvdA与白领蛋白WcoA协同作用,调控藤仓镰孢菌中的光致类胡萝卜素合成。

The flavoproteins CryD and VvdA cooperate with the white collar protein WcoA in the control of photocarotenogenesis in Fusarium fujikuroi.

作者信息

Castrillo Marta, Avalos Javier

机构信息

Department of Genetics, University of Seville, Sevilla, Spain.

出版信息

PLoS One. 2015 Mar 16;10(3):e0119785. doi: 10.1371/journal.pone.0119785. eCollection 2015.

Abstract

Light stimulates carotenoid biosynthesis in the ascomycete fungus Fusarium fujikuroi through transcriptional activation of the structural genes of the pathway carRA, carB, and cart, but the molecular basis of this photoresponse is unknown. The F. fujikuroi genome contains genes for different predicted photoreceptors, including the WC protein WcoA, the DASH cryptochrome CryD and the Vivid-like flavoprotein VvdA. We formerly found that null mutants of wcoA, cryD or vvdA exhibit carotenoid photoinduction under continuous illumination. Here we show that the wild type exhibits a biphasic response in light induction kinetics experiments, with a rapid increase in carotenoid content in the first hours, a transient arrest and a subsequent slower increase. The mutants of the three photoreceptors show different kinetic responses: the wcoA mutants are defective in the rapid response, the cryD mutants are affected in the slower response, while the fast and slow responses were respectively enhanced and attenuated in the vvdA mutants. Transcriptional analyses of the car genes revealed a strong reduction of dark and light-induced transcript levels in the wcoA mutants, while minor or no reductions were found in the cryD mutants. Formerly, we found no change on carRA and carB photoinduction in vvdA mutants. Taken together, our data suggest a cooperative participation of WcoA and CryD in early and late stages of photoinduction of carotenoid biosynthesis in F. fujikuroi, and a possible modulation of WcoA activity by VvdA. An unexpected transcriptional induction by red light of vvdA, cryD and carRA genes suggest the participation of an additional red light-absorbing photoreceptor.

摘要

光通过转录激活类胡萝卜素生物合成途径的结构基因carRA、carB和cart,刺激子囊菌藤仓赤霉菌中的类胡萝卜素生物合成,但这种光反应的分子基础尚不清楚。藤仓赤霉菌基因组包含不同预测光感受器的基因,包括WC蛋白WcoA、DASH隐花色素CryD和类Vivid黄素蛋白VvdA。我们之前发现,wcoA、cryD或vvdA的缺失突变体在持续光照下表现出类胡萝卜素光诱导。在这里,我们表明野生型在光诱导动力学实验中表现出双相反应,在最初几个小时内类胡萝卜素含量迅速增加,随后短暂停滞,然后缓慢增加。这三种光感受器的突变体表现出不同的动力学反应:wcoA突变体在快速反应中存在缺陷,cryD突变体在较慢反应中受到影响,而vvdA突变体中快速和慢速反应分别增强和减弱。对car基因的转录分析表明,wcoA突变体中黑暗和光诱导转录水平大幅降低,而cryD突变体中则有轻微降低或没有降低。之前,我们发现vvdA突变体中carRA和carB的光诱导没有变化。综合来看,我们的数据表明WcoA和CryD在藤仓赤霉菌类胡萝卜素生物合成光诱导的早期和晚期协同参与,并且VvdA可能对WcoA活性进行调节。vvdA、cryD和carRA基因意外地被红光转录诱导,这表明存在一种额外的吸收红光的光感受器参与其中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7999/4361483/181c08d51669/pone.0119785.g001.jpg

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