To gel or not to gel: differential expression of carrageenan-related genes between the gametophyte and tetasporophyte life cycle stages of the red alga Chondrus crispus
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![To gel or not to gel: differential expression of carrageenan-related genes between the gametophyte and tetasporophyte life cycle stages of the red alga Chondrus crispus](https://ars.els-cdn.com/content/image/1-s2.0-S0021925822011504-gr1.jpg)
Specificity of a β-porphyranase produced by the carrageenophyte red alga Chondrus crispus and implications of this unexpected activity on red algal biology - ScienceDirect
![To gel or not to gel: differential expression of carrageenan-related genes between the gametophyte and tetasporophyte life cycle stages of the red alga Chondrus crispus](https://www.researchgate.net/profile/William-Helbert/publication/265517207/figure/fig7/AS:669588157108238@1536653665597/i-carrageenan-desulfation-with-pure-native-i-carrageenan-sulfatase-1-HNMR-spectra_Q320.jpg)
ι-carrageenan desulfation with pure native ι-carrageenan sulfatase
![To gel or not to gel: differential expression of carrageenan-related genes between the gametophyte and tetasporophyte life cycle stages of the red alga Chondrus crispus](https://www.frontiersin.org/files/Articles/1188493/fmars-10-1188493-HTML/image_m/fmars-10-1188493-t001.jpg)
Frontiers Jasmonates disrupt carrageenan synthesis during carposporogenesis in the red seaweed Grateloupia imbricata
![To gel or not to gel: differential expression of carrageenan-related genes between the gametophyte and tetasporophyte life cycle stages of the red alga Chondrus crispus](https://www.mdpi.com/genes/genes-12-01059/article_deploy/html/images/genes-12-01059-g002-550.jpg)
Genes, Free Full-Text
![To gel or not to gel: differential expression of carrageenan-related genes between the gametophyte and tetasporophyte life cycle stages of the red alga Chondrus crispus](https://www.researchgate.net/publication/365469541/figure/fig2/AS:11431281110862821@1672767455139/Specificity-of-CcGH16-3-for-porphyran-A-FACE-83-of-hydrolysis-products-released-by_Q320.jpg)
PDF) Specificity of a β-porphyranase produced by the carrageenophyte red alga Chondrus crispus and implications of this unexpected activity on red algal biology
![To gel or not to gel: differential expression of carrageenan-related genes between the gametophyte and tetasporophyte life cycle stages of the red alga Chondrus crispus](https://www.mdpi.com/genes/genes-12-01059/article_deploy/html/images/genes-12-01059-g004-550.jpg)
Genes, Free Full-Text
![To gel or not to gel: differential expression of carrageenan-related genes between the gametophyte and tetasporophyte life cycle stages of the red alga Chondrus crispus](https://www.researchgate.net/publication/261748216/figure/fig2/AS:616373977899008@1523966416002/Western-blot-analysis-of-the-recombinant-proteins-and-enzyme-assays-A-the-recombinant.png)
Western blot analysis of the recombinant proteins and enzyme assays.
![To gel or not to gel: differential expression of carrageenan-related genes between the gametophyte and tetasporophyte life cycle stages of the red alga Chondrus crispus](https://ars.els-cdn.com/content/image/1-s2.0-S0021925822011504-gr5.jpg)
Specificity of a β-porphyranase produced by the carrageenophyte red alga Chondrus crispus and implications of this unexpected activity on red algal biology - ScienceDirect
![To gel or not to gel: differential expression of carrageenan-related genes between the gametophyte and tetasporophyte life cycle stages of the red alga Chondrus crispus](https://media.springernature.com/m685/springer-static/image/art%3A10.1038%2Fs42003-021-02277-w/MediaObjects/42003_2021_2277_Fig1_HTML.png)
Ancient origin of fucosylated xyloglucan in charophycean green algae
![To gel or not to gel: differential expression of carrageenan-related genes between the gametophyte and tetasporophyte life cycle stages of the red alga Chondrus crispus](https://media.springernature.com/lw685/springer-static/image/art%3A10.1007%2Fs00427-009-0289-5/MediaObjects/427_2009_289_Fig1_HTML.gif)
Sea urchin arylsulfatase, an extracellular matrix component, is involved in gastrulation during embryogenesis
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