Zeng F, Arnao E, Zhang G, Olaya G, Wullschleger J, Sierotzki H, Ming R, Bluhm B H, Bond J P, Fakhoury A M, Bradley C A
Department of Plant Biology, University of Illinois, Urbana 61801, and State Key Laboratory of Crop Biology, Shandong Agricultural University, Tai'an, Shandong, China.
Department of Plant, Soil, and Agricultural Systems, Southern Illinois University, Carbondale 62901.
Plant Dis. 2015 Apr;99(4):544-550. doi: 10.1094/PDIS-05-14-0460-RE.
Frogeye leaf spot of soybean, caused by the fungus Cercospora sojina, reduces soybean yields in most of the top-producing countries around the world. Control strategies for frogeye leaf spot can rely heavily on quinone outside inhibitor (QoI) fungicides. In 2010, QoI fungicide-resistant C. sojina isolates were identified in Tennessee for the first time. As the target of QoI fungicides, the cytochrome b gene present in fungal mitochondria has played a key role in the development of resistance to this fungicide class. The cytochrome b genes from three QoI-sensitive and three QoI-resistant C. sojina isolates were cloned and sequenced. The complete coding sequence of the cytochrome b gene was identified and found to encode 396 amino acids. The QoI-resistant C. sojina isolates contained the G143A mutation in the cytochrome b gene, a guanidine to cytosine transversion at the second position in codon 143 that causes an amino acid substitution of alanine for glycine. C. sojina-specific polymerase chain reaction primer sets and TaqMan probes were developed to efficiently discriminate QoI-resistant and -sensitive isolates. The molecular basis of QoI fungicide resistance in field isolates of C. sojina was identified as the G143A mutation, and specific molecular approaches were developed to discriminate and to track QoI-resistant and -sensitive isolates of C. sojina.
由真菌大豆尾孢菌引起的大豆蛙眼病,在世界上大多数大豆主产国都会导致大豆减产。蛙眼病的防治策略在很大程度上依赖于醌外抑制剂(QoI)类杀菌剂。2010年,田纳西州首次发现了对QoI杀菌剂具有抗性的大豆尾孢菌分离株。作为QoI杀菌剂的作用靶点,真菌线粒体中存在的细胞色素b基因在对这类杀菌剂的抗性发展中起了关键作用。对三株对QoI敏感和三株对QoI抗性的大豆尾孢菌分离株的细胞色素b基因进行了克隆和测序。确定了细胞色素b基因的完整编码序列,发现其编码396个氨基酸。对QoI具有抗性的大豆尾孢菌分离株在细胞色素b基因中存在G143A突变,即密码子143第二位的鸟嘌呤到胞嘧啶的颠换,导致氨基酸由甘氨酸替换为丙氨酸。开发了大豆尾孢菌特异性聚合酶链反应引物组和TaqMan探针,以有效区分对QoI具有抗性和敏感性的分离株。确定了田间大豆尾孢菌分离株对QoI杀菌剂抗性的分子基础为G143A突变,并开发了特定的分子方法来区分和追踪对QoI具有抗性和敏感性的大豆尾孢菌分离株。