Kim Wonyong, Park Chung-Min, Park Jeong-Jin, Akamatsu Hajime O, Peever Tobin L, Xian Ming, Gang David R, Vandemark George, Chen Weidong
1 Department of Plant Pathology.
Mol Plant Microbe Interact. 2015 Apr;28(4):482-96. doi: 10.1094/MPMI-08-14-0234-R.
Ascochyta rabiei and Alternaria solani, the causal agents of Ascochyta blight of chickpea (Cicer arietinum) and early blight of potato (Solanum tuberosum), respectively, produce a set of phytotoxic compounds including solanapyrones A, B, and C. Although both the phytotoxicity of solanapyrones and their universal production among field isolates have been documented, the role of solanapyrones in pathogenicity is not well understood. Here, we report the functional characterization of the sol5 gene, which encodes a Diels-Alderase that catalyzes the final step of solanapyrone biosynthesis. Deletion of sol5 in both Ascochyta rabiei and Alternaria solani completely prevented production of solanapyrones and led to accumulation of the immediate precursor compound, prosolanapyrone II-diol, which is not toxic to plants. Deletion of sol5 did not negatively affect growth rate or spore production in vitro, and led to overexpression of the other solanapyrone biosynthesis genes, suggesting a possible feedback regulation mechanism. Phytotoxicity tests showed that solanapyrone A is highly toxic to several legume species and Arabidopsis thaliana. Despite the apparent phytotoxicity of solanapyrone A, pathogenicity tests showed that solanapyrone-minus mutants of Ascochyta rabiei and Alternaria solani were equally virulent as their corresponding wild-type progenitors, suggesting that solanapyrones are not required for pathogenicity.
分别引起鹰嘴豆(Cicer arietinum)褐斑病和马铃薯(Solanum tuberosum)早疫病的菜豆壳二孢(Ascochyta rabiei)和茄链格孢(Alternaria solani)会产生一组植物毒性化合物,包括茄链孢菌素A、B和C。尽管茄链孢菌素的植物毒性及其在田间分离株中的普遍产生都已有文献记载,但茄链孢菌素在致病性中的作用仍未得到充分了解。在此,我们报告了sol5基因的功能特性,该基因编码一种双烯加成酶,催化茄链孢菌素生物合成的最后一步。在菜豆壳二孢和茄链格孢中删除sol5完全阻止了茄链孢菌素的产生,并导致直接前体化合物前茄链孢菌素II -二醇的积累,该化合物对植物无毒。删除sol5对体外生长速率或孢子产生没有负面影响,并导致其他茄链孢菌素生物合成基因的过表达,表明可能存在反馈调节机制。植物毒性测试表明,茄链孢菌素A对几种豆科植物和拟南芥具有高毒性。尽管茄链孢菌素A具有明显的植物毒性,但致病性测试表明,菜豆壳二孢和茄链格孢的缺失茄链孢菌素的突变体与其相应的野生型亲本具有同等的毒性,这表明致病性不需要茄链孢菌素。