Alvarenga Danillo Oliveira, Andreote Ana Paula Dini, Branco Luis Henrique Zanini, Fiore Marli Fatima
University of São Paulo, USP, Center for Nuclear Energy in Agriculture, Avenida Centenário 303, 13400-970, Piracicaba, SP, Brazil.
São Paulo State University, UNESP, Institute of Biosciences, Humanities and Exact Sciences, Rua Cristóvão Colombo 2265, 15054-000, São José do Rio Preto, SP, Brazil.
Int J Syst Evol Microbiol. 2017 Sep;67(9):3301-3309. doi: 10.1099/ijsem.0.002109. Epub 2017 Sep 6.
Tropical ecosystems worldwide host very diverse microbial communities, but are increasingly threatened by deforestation and climate change. Thus, characterization of biodiversity in these environments, and especially of microbial communities that show unique adaptations to their habitats, is a very urgent matter. Information about representatives of the phylum Cyanobacteria in tropical environments is scarce, even though they are fundamental primary producers that help other microbes to thrive in nutrient-depleted habitats, including phyllospheres. In order to increase our knowledge of cyanobacterial diversity, a study was conducted to characterize isolates from Avicennia schaueriana and Merostachys neesii leaves collected at a mangrove and an Atlantic forest reserve located at the littoral of São Paulo state, south-east Brazil. The morphological, ultrastructural, phylogenetic, molecular and ecological features of the strains led to the recognition of the new genus Kryptousia, comprising two new species, Kryptousiamacronema gen. nov., sp. nov. and Kryptousiamicrolepis sp. nov., described here according to the International Code of Nomenclature for algae, fungi and plants. The new genus and species were classified in the nostocalean family Tolypotrichaceae. This finding advances knowledge on the microbial diversity of South American ecosystems and sheds further light on the systematics of cyanobacteria.
全球热带生态系统拥有极为多样的微生物群落,但日益受到森林砍伐和气候变化的威胁。因此,对这些环境中的生物多样性进行表征,尤其是对那些显示出对其栖息地独特适应性的微生物群落进行表征,是一项非常紧迫的任务。尽管蓝细菌是重要的初级生产者,有助于其他微生物在包括叶际在内的营养匮乏栖息地中繁衍生息,但关于热带环境中蓝细菌门代表的信息却很稀少。为了增加我们对蓝细菌多样性的了解,开展了一项研究,对从巴西东南部圣保罗州沿海的一个红树林和一个大西洋森林保护区采集的白骨壤和内氏美竹的叶片中分离出的菌株进行表征。这些菌株的形态、超微结构、系统发育、分子和生态特征导致了新属Kryptousia的确认,该属包含两个新物种,即Kryptousiamacronema gen. nov., sp. nov.和Kryptousiamicrolepis sp. nov.,本文根据《藻类、真菌和植物国际命名法规》对其进行了描述。新属和新物种被归类于念珠藻科的Tolypotrichaceae科。这一发现推进了对南美生态系统微生物多样性的认识,并进一步阐明了蓝细菌的系统学。