https://ogma.newcastle.edu.au/vital/access/ /manager/Index en-au 5 Six new families of aerobic arsenate reducing bacteria: Leclercia, Raoultella, Kosakonia, Lelliottia, Yokenella, and Kluyvera https://ogma.newcastle.edu.au/vital/access/ /manager/Repository/uon:48546 Leclercia, Raoultella, Kosakonia, Lelliottia, Yokenella, and Kluyvera, that were not previously known to reduce or exhibit resistance to arsenic. Twenty-one of 24 aARB were positive for ars amplification and 17 of them harbored a putative arsC gene, which is well-known for its involvement in arsenate reduction. However, the arsenic resistance associated with aARB strains is not always determined by the ars operon system. These results have provided additional insight into aARB and their potential for arsenic transformation and bioremediation.]]> Tue 21 Mar 2023 15:23:58 AEDT ]]> Molecular evidence for bacterial mediation of calcite formation in cold high-altitude caves https://ogma.newcastle.edu.au/vital/access/ /manager/Repository/uon:5381 Sat 24 Mar 2018 07:43:55 AEDT ]]>