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Short Report Bat trypanosomatids (first report of Trypanosoma wauwau) in Triangulo Mineiro, Brazil

In this study, trypanosomatids commonly found in bats, including Trypanosoma cruzi marinkellei, T. dionisii, and Leishmania braziliensis, were identified. Additionally, T. wauwau was identified in one specimen of Anoura caudifer, and represents the first report of this parasite from the Central West region of Brazil. T. wauwau was previously identified by other researchers in the North of the country, in only three species of bats in the genus Pteronotus: P. parnellii (Para and Rondonia states), and P. personatus and P. gymnonotus (Rondonia). The identification of T. wauwau indicates how different trypanosomatids are able to adapt to new host species of bats. This is owing to bats high mobility, wide geographic distribution, social behavior, and ability to coexist in large colonies. These characteristics may facilitate the transmission of infectious agents in nature, which are responsible for outbreaks of some zoonoses. Therefore, health authorities should focus on both vertebrates and vectors associated with the environments where these bats are found.\n\nAuthor summaryThe prevalence of Trypanosoma in bats is high, with T. cruzi, T. cruzi marinkellei, and T. dionisii as the most prevalent infective species. This study reports for the first time the presence of T. wauwau in the southeast region of Brazil in the bat Anoura caudifer. Although this species of Trypanosoma has been found in bats of the genus Pteronotus, it was not detected in any other genus, including in the bats that share the same shelter with Pteronotus. The species T. wauwau was found infecting bats only in Brazil. Its occurrence was restricted to the northern region of the country, in the states of Para, infecting the species P. parnellii and in Rondonia infecting P. personatus, P. gymnonotus as well as P. parnellii. Although its morphology is similar to that of T. cruzi, little is known about the development of T. wauwau, both in its vertebrate host and the existence of a plausible invertebrate vector. Its characteristics include its inability to develop in mammalian cells and its non-infectiousness in mice and triatomine insects. Further research, through molecular studies, may provide important and valuable data for understanding the origin, evolution, and global distribution of, and the association between the different species of Trypanosoma and their hosts.

physiology

Seamless Assembly of Biological Parts into Functional Devices and Higher Order Multi-Device Systems.

A new method is described for the seamless assembly of independent, prefabricated and functionally tested blunt-end, double strand nucleic acid parts (DNA fragments) into more complex biological devices (vectors) and higher order multi-device systems. Individual parts include bacterial selection markers, bacterial origins of replication, promoters from a variety of different species, transcription terminators, shuttle sequences and a variety of \"N\" and \"C\" terminal solubility/affinity expression tags. Pre-assembly modification of parts with DNA modifying enzymes is not required. Seamless assembly of multiple parts is accomplished in a single step using a specialized thermostable enzyme blend in about 30 minutes. Combinatorial assembly of parts is an inherent feature of the new process, substantially simplifying device and system optimization. To underscore the utility of the new process, parts were assembled into several protein expression devices in order to identify the optimal expression construct for a model target gene, as an example of the utility of the assembly process, and a higher order multi-device system is also described, for the over-expression of a four-enzyme bio-synthetic pathway, and optimized for end-product accumulation in E. coli as a paradigm for how this assembly process could be used to address the assembly of more complex biological pathways.

synthetic biology