Liyanage Kapila K, Khan Sehroon, Brooks Siraprapa, Mortimer Peter E, Karunarathna Samantha C, Xu Jianchu, Hyde Kevin D
Center of Excellence in Fungal Research, and School of Science, Mae Fah Luang University, Chiang Rai, Thailand.
Center for Mountain Ecosystem Studies, Kunming Institute of Botany, Chinese Academy of Sciences, Kunming, China.
Front Microbiol. 2018 Jan 19;9:12. doi: 10.3389/fmicb.2018.00012. eCollection 2018.
Powdery mildew disease of rubber affects immature green leaves, buds, inflorescences, and other immature tissues of rubber trees, resulting in up to 45% losses in rubber latex yield worldwide. The disease is often controlled by dusting the diseased plants with powdered sulfur, which can have long-term negative effects on the environment. Therefore, it is necessary to search for alternative and environmentally friendly control methods for this disease. This study aimed to identify mycoparasites associated with rubber powdery mildew species, and characterize them on the basis of morpho-molecular characteristics and phylogenetic analyses of ITS rDNA regions. We observed that the fungus parasitizes rubber powdery mildew, and eventually destroys it. Furthermore, on the basis of phylogenetic analyses and morphological characteristics we confirmed that the mycoparasite isolated from rubber powdery mildew is closely related to other mycohost taxa in the genus. A total of 73 (71 retrieved from GenBank and two obtained from fresh collections of rubber powdery mildew fungi) spp. were analyzed using ITS rDNA sequences and 153 polymorphic sites were identified through haplotypic analyses. A total of 28 haplotypes (H1-H28) were identified to have a complex network of mutation events. The results from phylogenetic tree constructed on the basis of maximum likelihood analyses, and the haplotype network tree revealed similar relationships of clustering pattern. This work presents the first report on morpho-molecular characterization of species that are mycoparasites of powdery mildew of .
橡胶白粉病会影响橡胶树未成熟的绿叶、芽、花序及其他未成熟组织,在全球范围内导致橡胶乳胶产量损失高达45%。该病通常通过向患病植株喷洒硫磺粉来控制,这可能会对环境产生长期负面影响。因此,有必要寻找针对这种疾病的替代且环保的防治方法。本研究旨在鉴定与橡胶白粉菌相关的真菌寄生菌,并基于其形态分子特征和ITS rDNA区域的系统发育分析对其进行表征。我们观察到该真菌寄生于橡胶白粉菌,并最终将其破坏。此外,基于系统发育分析和形态特征,我们确认从橡胶白粉菌中分离出的真菌寄生菌与该属中的其他真菌寄主类群密切相关。使用ITS rDNA序列对总共73个物种(71个从GenBank中检索,2个从橡胶白粉菌新鲜样本中获得)进行了分析,并通过单倍型分析鉴定出153个多态性位点。总共鉴定出28个单倍型(H1 - H28),它们具有复杂的突变事件网络。基于最大似然分析构建的系统发育树和单倍型网络图的结果显示出相似的聚类模式关系。这项工作首次报道了作为橡胶白粉菌真菌寄生菌的物种的形态分子特征。