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1
Carbonic Anhydrase Activity Associated with the Cyanobacterium Synechococcus PCC7942.
Plant Physiol. 1989 Jan;89(1):51-60. doi: 10.1104/pp.89.1.51.
8
Carbonic Anhydrase and the Uptake of Inorganic Carbon by Synechococcus sp. (UTEX-2380).
Plant Physiol. 1987 Sep;85(1):72-7. doi: 10.1104/pp.85.1.72.
10
Analysis of carboxysomes from Synechococcus PCC7942 reveals multiple Rubisco complexes with carboxysomal proteins CcmM and CcaA.
J Biol Chem. 2007 Oct 5;282(40):29323-35. doi: 10.1074/jbc.M703896200. Epub 2007 Aug 3.

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2
Metabolite profiling of plant growth promoting cyanobacteria- and using untargeted metabolomics.
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Engineering α-carboxysomes into plant chloroplasts to support autotrophic photosynthesis.
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Membrane Inlet Mass Spectrometry at the Crossroads of Photosynthesis, Biofuel, and Climate Research.
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Roles of RbcX in Carboxysome Biosynthesis in the Cyanobacterium PCC7942.
Plant Physiol. 2019 Jan;179(1):184-194. doi: 10.1104/pp.18.01217. Epub 2018 Nov 2.
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Estimating Mesophyll Conductance from Measurements of COO Photosynthetic Discrimination and Carbonic Anhydrase Activity.
Plant Physiol. 2018 Oct;178(2):728-752. doi: 10.1104/pp.17.01031. Epub 2018 Aug 13.

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2
Carbonic Anhydrase and the Uptake of Inorganic Carbon by Synechococcus sp. (UTEX-2380).
Plant Physiol. 1987 Sep;85(1):72-7. doi: 10.1104/pp.85.1.72.
3
A Mutant of Synechococcus PCC7942 Incapable of Adapting to Low CO(2) Concentration.
Plant Physiol. 1987 Jul;84(3):711-5. doi: 10.1104/pp.84.3.711.
4
Evidence for Inorganic Carbon Transport by Intact Chloroplasts of Chlamydomonas reinhardtii.
Plant Physiol. 1987 Mar;83(3):460-3. doi: 10.1104/pp.83.3.460.
5
High CO(2) Requiring Mutant of Anacystis nidulans R(2).
Plant Physiol. 1986 Oct;82(2):610-2. doi: 10.1104/pp.82.2.610.

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