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Schwaha, T.

Publications and source records attributed to Schwaha, T..

2 recordsLinked to original sources

Kentrophoros magnus sp. nov. (Ciliophora, Karyorelictea), a new flagship species of marine interstitial ciliates

The karyorelictean ciliate Kentrophoros lacks a defined oral apparatus but has a dense coat of symbiotic bacteria that it consumes by phagocytosis. Body size, shape, and nuclear characters are variable in this genus. We formally describe a new species, K. magnus from Elba (Italy), which has unusual folding of its symbiont-bearing surface into pouch-like compartments, a body form that we term "pseudotrophosomal". K. magnus cells are large (2100 {+/-} 700 x 170 {+/-} 23 m in vivo), but contain only one micronucleus and two macronuclei, although these are much bigger than other Kentrophoros (widths 20 {+/-} 2.5 and 31 {+/-} 4.0 m respectively in K. magnus). We also present morphological observations on a close relative from Twin Cayes (Belize), which also has relatively large nuclei (micronuclei 13 {+/-} 1.5 m, mature macronuclei 20 {+/-} 2.8 m), but unlike K. magnus, it has on average 22 nuclei per cell, with different developmental stages of the macronuclei present simultaneously, and lacks pouch-like folding. Nuclear number and arrangement are important characters for karyorelicts. We suggest the use of a "nuclear formula" to simplify descriptions. Our discovery of large and morphologically distinctive new species underlines the incompleteness of our knowledge about meiofaunal ciliates.

microbiology

The quagga mussel genome and the evolution of freshwater tolerance

European freshwater dreissenid mussels evolved from marine ancestors during the Miocene approximately 30 million years ago and today include some of the most successful and destructive invasive invertebrate species of temperate freshwater environments. Here we sequenced the genome of the quagga mussel Dreissena rostriformis to identify evolutionary adaptations involved in embryonic osmoregulation. We found high gene expression levels of a novel subfamily of lophotrochozoan-specific aquaporin water channel, a vacuolar ATPase and a sodium/hydrogen exchanger during early cleavage, a period defined by the formation of inter-cellular fluid-filled cleavage cavities. Independent expansions of the lophotrochoaquaporin clade that coincide with at least five independent colonisation events of freshwater environments confirm their central role in freshwater adaptation. The pattern of repeated aquaporin expansion and the evolution of membrane-bound fluid-filled osmoregulatory structures in diverse taxa points to a fundamental principle guiding the evolution of freshwater tolerance that may provide a framework for future efforts towards invasive species control.

genomics