Journal Article
Regulatory roles of introns in fungicide sensitivity of Fusarium graminearum
Yanjun Li; Shunwen Luo; Xiaojing Jia; Yuanye Zhu; Dongming Chen; Yabing Duan; Yiping Hou; Mingguo Zhou
Environmental Microbiology · Vol. 19, Issue 10 · pp. 4140-4153 · 2017
Abstract
Summary Although the roles of introns have been much debated in eukaryotic organisms, none of them have been functionally characterized in Fusarium graminearum . In this study, we characterized the roles of introns in regulation of fungicide‐sensitivity of F. graminearum . β 2 tub , cyp51A and myosin‐5 are important target genes of benzimidazoles, triazoles and cyanoacrylates respectively. To explore the sensitivity regulation functions of introns in target genes, several detailed deletion studies were completed on the intronic regions of β 2 tub , cyp51A and myosin‐5 . Phenotypic analyses showed that deletion of the fourth intron from β 2 tub gene (designated β 2 Δ i4 ), the sole intron from cyp51A gene ( cyp51A‐ Δ i ) and the second intron from myosin‐5 gene ( myo5‐ Δ i2 ) exhibited an increased sensitivity to corresponding fungicides. In contrast, deletion of the first or second intron from β 2 tub gene exhibited a decreased sensitivity to carbendazim. qRT‐PCR showed that the mRNA transcript levels of target genes were significantly downregulated in β 2 Δ i4 , cyp51A‐ Δ i and myo5‐ Δ i2 respectively. Meanwhile, Western blot assays revealed that the protein expression levels of β 2 tub was also dramatically reduced in β 2 Δ i4 , but accumulated in β 2 Δ i1 and β 2 Δ i2 . Overall, our results indicate that introns in target genes significantly regulate the fungicide‐sensitivity by influencing expression of the corresponding resident genes in F. graminearum .