Khuna Surapong, Kumla Jaturong, Thitla Tanapol, Nuangmek Wipornpan, Lumyong Saisamorn, Suwannarach Nakarin
Research Center of Microbial Diversity and Sustainable Utilization, Chiang Mai University, Chiang Mai 50200, Thailand.
Department of Biology, Faculty of Science, Chiang Mai University, Chiang Mai 50200, Thailand.
J Fungi (Basel). 2022 Oct 27;8(11):1135. doi: 10.3390/jof8111135.
Fruit rot of cucurbits caused by several pathogenic fungi has become an important postharvest disease worldwide. In 2022, fruit rot on watermelon () and muskmelon () was observed during the postharvest storage phase in the Chiang Mai and Phitsanulok Provinces of northern Thailand. These diseases can lead to significant economic losses. This present study was conducted to isolate the causal agent of fungi in lesions of fruit rot. A total of four fungal isolates were obtained, of which two isolates (SDBR-CMU422 and SDBR-CMU423) were obtained from rot lesions of watermelons, while the remaining isolates (SDBR-CMU424 and SDBR-CMU425) were obtained from rot lesions of muskmelons. All fungal isolates were identified using both morphological characteristics and molecular analyses. Morphologically, all isolated fungal isolates were classified into the genus . Multi-gene phylogenetic analyses of a combination of the translation elongation factor 1-alpha (), calmodulin (), and RNA polymerase second largest subunit () genes reveled that four fungal isolates belonged to the - species complex and were distinct from all other known species. Thus, we have described them as two new species, namely (SDBR-CMU422 and SDBR-CMU423) and (SDBR-CMU424 and SDBR-CMU425). A full description, illustrations, and a phylogenetic tree indicating the position of both new species have been provided. Moreover, pathogenicity tests were subsequently performed and the results showed that and caused symptoms of fruit rot on inoculated watermelon and muskmelon fruits, respectively. Notably, this outcome was indicative of the symptoms that appeared during the postharvest storage phase. To our knowledge, two new pathogenic fungi, and , are new causal agents of watermelon and muskmelon fruit rot, respectively. Importantly, these findings provide valuable information for the development of effective strategies for the monitoring and prevention of these diseases.
由多种致病真菌引起的葫芦科果实腐烂已成为全球重要的采后病害。2022年,在泰国北部清迈府和彭世洛府的采后储存阶段,观察到西瓜()和甜瓜()出现果实腐烂。这些病害会导致重大经济损失。本研究旨在分离果实腐烂病斑中的致病真菌病原体。共获得4株真菌分离物,其中2株(SDBR-CMU422和SDBR-CMU423)从西瓜腐烂病斑中获得,其余分离物(SDBR-CMU424和SDBR-CMU425)从甜瓜腐烂病斑中获得。所有真菌分离物均通过形态特征和分子分析进行鉴定。在形态上,所有分离的真菌分离物都被归类到属。对翻译延伸因子1-α()、钙调蛋白()和RNA聚合酶第二大亚基()基因组合进行的多基因系统发育分析表明,4株真菌分离物属于-物种复合体,且与所有其他已知物种不同。因此,我们将它们描述为两个新物种,即(SDBR-CMU422和SDBR-CMU423)和(SDBR-CMU424和SDBR-CMU425)。已提供了这两个新物种的完整描述、图示以及表明其位置的系统发育树。此外,随后进行了致病性测试,结果表明和分别对接种的西瓜和甜瓜果实造成了果实腐烂症状。值得注意的是,这一结果与采后储存阶段出现的症状相符。据我们所知,两种新的致病真菌和分别是西瓜和甜瓜果实腐烂的新病原体。重要的是,这些发现为制定监测和预防这些病害的有效策略提供了有价值的信息。