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In addition, short-chain hydrocarbon degrading bacteria from the CNMR complex, which carry the SDIMO genes, posses several physiological features that make these organisms a more appropriate bioindicator in microbial prospection methods.
Dinoflagellates display a range of lifestyles that together make these organisms of central ecological and economic importance.
The TUs augmenting the SigB regulon of Clade A organisms may enhance the basal pathogenic potential of this clade, but may also make these organisms more capable of competing in the soil or other microbial consortia.
If the Bc sensu lato SOS response is similar, this also would extend the SigB generalized stress response into a region of the Clade A transcriptome to make these organisms more apt to express, among others, components of the excision, recombinational and error-prone repair pathways for dealing with DNA damage.
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Because plants and microorganisms could potentially be used as renewable energy sources, the DOE wants to know more about what makes these organisms tick.
Active salars are truly extreme environments in that resident organisms must deal with not only high salt concentrations, but also dynamic changes in salinity, temperature, and water availability, making these organisms polyextremophiles.
Thus, even though the salinity decrease in the aquaculture ground alone may not have been sufficiently severe to kill the blood cockles, we should consider the possibility that the spawning season made these organisms particularly susceptible.
Moreover, the fact that these environments affect both fission and regeneration rates makes these organisms interesting for testing effects that could provide us with important insights about basic molecular processes occurring in a wide range of vertebrates, including humans.
Furthermore, a distinctive 5S rRNA gene class shared only by elasmobranch species [ 30] suggests a group-specific evolutionary history of 5S rDNA, making these organisms of special interest for deciphering the genomic architecture of multigene families.
The shrinking of functional capabilities, in particular in defense systems, might have made these organisms vulnerable to parasite infestation or conversely, the host genome shrinkage was a result of the relationship with their nanoarchaeal companions; these two possibilities are not necessarily mutually exclusive.
The ease of obtaining high numbers of progeny, the availability of neuronal tissue specific in vivo reporter strains and the inherent transparency of the embryos make these two model organisms amenable to high-throughput screening (HTS) (Peterson et al. 2000; Wittbrodt et al. 2002).
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