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Autor:
Aroonsri, Aiyada, Jindaporn Kongsee, Gunawan, Jeremy David, Aubry, Daniel Abidin, Shaw, Philip James
Additional file 6: Table S1. List of oligo primers for construction of template and reporter plasmids. Table S2. List of oligo primers for preparation of DNA fragment for chromosome integration and verification of the integrants. Table S3. Growth and
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Autor:
Aroonsri, Aiyada, Jindaporn Kongsee, Gunawan, Jeremy David, Aubry, Daniel Abidin, Shaw, Philip James
Additional file 7: Supplementary data S1. Sequences of plasmids and DNA fragments for integration.
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https://explore.openaire.eu/search/publication?articleId=doi_dedup___::1dd46fd02e414cb952a0ed19f87b37e2
Autor:
Aroonsri, Aiyada, Jindaporn Kongsee, Gunawan, Jeremy David, Aubry, Daniel Abidin, Shaw, Philip James
Additional file 1: Figure S1. ffect of arabinose in plasmid transformed cells. Growth analysis of E. coli DH5α transformant carrying pBAD33 or pBAD33-rnjA-6xHis (pRJ1) treated with arabinose at varying concentrations. Points represent mean of 2–6
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Autor:
Aroonsri, Aiyada, Jindaporn Kongsee, Gunawan, Jeremy David, Aubry, Daniel Abidin, Shaw, Philip James
Additional file 3: Figure S3. PCR results for the verification of gene integration at arsB (A) and lacZ (B) gene loci. iRzI_iRJ1, iRzI_i33, iRzII_iRJ1, iRzII_i33, iEGFP-hDHFR_iRJ1, iEGFP-hDHFR_i33, iRSETC_iRJ1, iRSETC_i33, iglmS_iRJ1, iglmS_i33, iM9_
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https://explore.openaire.eu/search/publication?articleId=doi_dedup___::67f7a47dec712ee2ea1432edf48c369a
Autor:
Aroonsri, Aiyada, Jindaporn Kongsee, Gunawan, Jeremy David, Aubry, Daniel Abidin, Shaw, Philip James
Additional file 2: Figure S2. PCR results for the verification of gene integration at lacZ gene loci (A) and reporter plasmid transformation (B). iRJ1 and iBAD33 are abbreviations of ΔlacZ::RJ1, ΔlacZ::33, respectively. pRSETC_iRJ1, pEGFP-hDHFR_iRJ
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Autor:
Aroonsri, Aiyada, Jindaporn Kongsee, Gunawan, Jeremy David, Aubry, Daniel Abidin, Shaw, Philip James
Additional file 8: Supplementary data S2. Unmodified images of gels and blots. Unmodified images are shown for each figure as indicated. The cropped regions are indicated by red boxes. Lanes with no labels outside of the red boxes indicate data unrel
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https://explore.openaire.eu/search/publication?articleId=doi_dedup___::11f43cdfc6c17c032a7c77262a966ed3
Autor:
Aroonsri, Aiyada, Jindaporn Kongsee, Gunawan, Jeremy David, Aubry, Daniel Abidin, Shaw, Philip James
Additional file 4: Figure S4. Growth analysis and fluorescence intensity of iBAD33 double integrants. (A) Growth analysis of double integrants; ΔarsB::EGFP-hDHFRΔlacZ::33 (iEGFP-hDHFR_i33), ΔarsB::RzIEGFP-hDHFRΔlacZ::33 (iRzI_i33), ΔarsB::RzIIEG
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https://explore.openaire.eu/search/publication?articleId=doi_dedup___::6b46f4909d491b341bb193f0cb72865b
Autor:
Aroonsri, Aiyada, Jindaporn Kongsee, Gunawan, Jeremy David, Aubry, Daniel Abidin, Shaw, Philip James
Additional file 5: Figure S5. Western blot analysis of RNaseJ1-6xHis protein in single and double integrants All protein samples were extracted from integrants cultured in the absence (lane 1–3, 7–9, and 13–17) or presence of 0.0012% (w/v) arab
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Autor:
Sirait, Batara, Jusuf, Ahmad Aulia, Wiweko, Budi, Handayani, Nining, Aubry, Daniel Abidin, Muharam, R.
Publikováno v:
Journal of Human Reproductive Sciences; Jan-Mar2022, Vol. 15 Issue 1, p3-11, 9p