Ponpinij Suksawat, Hasin Sasitorn, Kaewgrajang Tharnrat, Voraphab Itsarapong, Nipitwattanaphon Mingkwan
Department of Entomology, Faculty of Agriculture, Kasetsart University, Bangkok, Thailand. E-mail:
Innovation of Environmental Management, College of Innovative Management, Valaya Alongkorn Rajabhat University under the Royal Patronage, Pathumthani, Thailand. E-mail:
Zool Stud. 2024 Dec 27;63:e52. doi: 10.6620/ZS.2024.63-52. eCollection 2024.
Fungus-growing termites (FGTs) play ecologically important roles as both decomposers and producers of termite mushrooms. However, they are difficult to research due to a lack of an updated identification key and the inability to locate type specimens. Molecular identification may be helpful, but this requires database information that is lacking for many species found in Thailand. In addition, some researchers use the cytochrome oxidase subunit I () gene as a barcoding gene, but others use cytochrome oxidase subunit II (). Thus, we offer detailed descriptions of nine FGT species commonly found in Thailand, together with the DNA sequences of both the and genes. The descriptions include those of both major and minor soldiers. The DNA sequences of the two genes confirm the morphological identifications. Our data will aid future FGT identification and facilitate research on the biodiversity, conservation, and sustainable use of FGTs and termite mushrooms.
培菌白蚁作为白蚁菌的分解者和生产者,在生态系统中发挥着重要作用。然而,由于缺乏最新的鉴定关键和无法找到模式标本,对它们的研究存在困难。分子鉴定可能会有所帮助,但这需要泰国发现的许多物种所缺乏的数据库信息。此外,一些研究人员使用细胞色素氧化酶亚基I()基因作为条形码基因,而另一些人则使用细胞色素氧化酶亚基II()。因此,我们提供了泰国常见的9种培菌白蚁物种的详细描述,以及和基因的DNA序列。这些描述包括大兵蚁和小兵蚁的描述。这两个基因的DNA序列证实了形态学鉴定。我们的数据将有助于未来培菌白蚁的鉴定,并促进对培菌白蚁和白蚁菌的生物多样性、保护及可持续利用的研究。