Oxyanion nomenclature uses the suffix -ate for higher oxidation states and -ite for lower oxidation states.
the verdict
SUPPORTED
the evidence backs this
refutedsupported
the weight of evidence
3 sources for · 0 against
Reference literature notes that oxyanions with more oxygen atoms or higher oxidation states take the -ate suffix, whereas variants containing fewer oxygen atoms or lower oxidation states take the -ite suffix.
A few follow the pattern for the monatomic anions:
| OH– | CN– | O2– |
|---|---|---|
| hydroxide | cyanide | peroxide |
Oxyanions
The most common oxygen-containing anions (oxyanions) have names ending in -ate, but if a variant containing a small number of oxygen atoms exists, it takes the suffix -ite. | CO32– | NO3– | NO2– | SO42– | SO32– | PO43– |
|---|---|---|---|---|---|
| carbonate | nitrate | nitrite | sulfate | sulfite | phosphate |
The above ions (with the exception of nitrate) can also combine with H+ to produce "acid" forms having smaller negative charges.
Plasmid-encoded resistance to arsenic and antimony.
Resistance determinants to the toxic oxyanionic salts of arsenic and antimony are found on plasmids of both gram-negative and gram-positive organisms. In most cases these provide resistance to both the oxyanions of +III oxidation state, antimonite and arsenite, and the +V oxidation state, arsenate. In both gram-positive and -negative bacteria, resistance is correlated with efflux of the anions from cells. The determinant from the plasmid R773, isolated from a gram-negative organism, has been studied in detail. It encodes an oxyanion-translocating ATPase with three subunits, a catalytic subunit, the ArsA protein, a membrane subunit, the ArsB subunit, and a specificity factor, the ArsC protein. The first two form a membrane-bound complex with arsenite-stimulated ATPase activity. The determinants from gram-positive bacteria have only the arsB and arsC genes and encode an efflux system without the participation of an ArsA homologue.
Published in Plasmid (1992)
[75Se]selenite and [75Se]selenate fluctuations during the development of murine hepatoma.
The distribution of selenate and selenite selenium in C57L/J mice during the progression of BW7756 murine hepatoma was investigated using intra-ocular injection with the oxyanions labeled with 75Se radioisotope. Comparison is made with the normal distribution of selenium studied by the RIXRF method. The trace elemental profiles, TEP, for the two oxidation states are compared in healthy and disease states. It has been found that the presence of tumor significantly changes the level of tracer in various uninvolved organs. These changes are prominent in the early growth phase of the tumor. The two oxidation states show differences in the TEP for kidney, spleen, stomach and testes.
Published in International journal of radiation applications and instrumentation. Part B, Nuclear medicine and biology (1992)
Everything we examined (3)
This check searched the claim as stated. It did not run a separate search for evidence against it.