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#biosynthetic — Public Fediverse posts

Live and recent posts from across the Fediverse tagged #biosynthetic, aggregated by home.social.

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  1. #Genomic variation alters #biosynthetic & regulatory pathways of key attributes to shape #plant flavor. How might multi-omics, AI-assisted breeding, & #gene editing create #plants with improved flavor, nutrition, and sustainability?
    doi.org/10.1111/jipb.70283
    @WileyLifeSci
    #JIPB #OpenAccess #review

  2. #Genomic variation alters #biosynthetic & regulatory pathways of key attributes to shape #plant flavor. How might multi-omics, AI-assisted breeding, & #gene editing create #plants with improved flavor, nutrition, and sustainability?
    doi.org/10.1111/jipb.70283
    @WileyLifeSci
    #JIPB #OpenAccess #review

  3. 🐾We *promise* this🐾post wasn't written🐾by a cat...🤞
    🐾Banjanac et al. report🐾that iridoid diversity in🐾catmints is at least partially attributed🐾to #evolutionary gains🐾and losses of key🐾#biosynthetic #genes.
    🔗doi.org/10.1111/jipb.70125🐾
    @WileyLifeSci
    #PlantSci #JIPB🐾 #meow #botany

  4. 🐾We *promise* this🐾post wasn't written🐾by a cat...🤞
    🐾Banjanac et al. report🐾that iridoid diversity in🐾catmints is at least partially attributed🐾to #evolutionary gains🐾and losses of key🐾#biosynthetic #genes.
    🔗doi.org/10.1111/jipb.70125🐾
    @WileyLifeSci
    #PlantSci #JIPB🐾 #meow #botany

  5. 🐾We *promise* this🐾post wasn't written🐾by a cat...🤞
    🐾Banjanac et al. report🐾that iridoid diversity in🐾catmints is at least partially attributed🐾to #evolutionary gains🐾and losses of key🐾#biosynthetic #genes.
    🔗doi.org/10.1111/jipb.70125🐾
    @WileyLifeSci
    #PlantSci #JIPB🐾 #meow #botany

  6. Elucidating #plant #Biosynthetic pathways: @marnixmedema &co develop #MEANtools, an unsupervised computational workflow that integrates #MultiOmics data to predict #metabolic pathways by linking transcripts to metabolites @PLOSBiology plos.io/4odL94g

  7. Elucidating #plant #Biosynthetic pathways: @marnixmedema &co develop #MEANtools, an unsupervised computational workflow that integrates #MultiOmics data to predict #metabolic pathways by linking transcripts to metabolites @PLOSBiology plos.io/4odL94g

  8. Elucidating #plant #Biosynthetic pathways: @marnixmedema &co develop #MEANtools, an unsupervised computational workflow that integrates #MultiOmics data to predict #metabolic pathways by linking transcripts to metabolites @PLOSBiology plos.io/4odL94g

  9. Elucidating #plant #Biosynthetic pathways: @marnixmedema &co develop #MEANtools, an unsupervised computational workflow that integrates #MultiOmics data to predict #metabolic pathways by linking transcripts to metabolites @PLOSBiology plos.io/4odL94g

  10. Elucidating #plant #Biosynthetic pathways: @marnixmedema &co develop #MEANtools, an unsupervised computational workflow that integrates #MultiOmics data to predict #metabolic pathways by linking transcripts to metabolites @PLOSBiology plos.io/4odL94g

  11. Most #biosynthetic gene clusters remain uncharacterized. @marnixmedema @gillesvanwezel &co integrate #GRN analysis & global expression data to identify desJGH as an operon essential for #biosynthesis of #desferrioxamineB in Streptomyces @PLOSBiology plos.io/43UVUPB

  12. Most #biosynthetic gene clusters remain uncharacterized. @marnixmedema @gillesvanwezel &co integrate #GRN analysis & global expression data to identify desJGH as an operon essential for #biosynthesis of #desferrioxamineB in Streptomyces @PLOSBiology plos.io/43UVUPB

  13. Most #biosynthetic gene clusters remain uncharacterized. @marnixmedema @gillesvanwezel &co integrate #GRN analysis & global expression data to identify desJGH as an operon essential for #biosynthesis of #desferrioxamineB in Streptomyces @PLOSBiology plos.io/43UVUPB

  14. Most #biosynthetic gene clusters remain uncharacterized. @marnixmedema @gillesvanwezel &co integrate #GRN analysis & global expression data to identify desJGH as an operon essential for #biosynthesis of #desferrioxamineB in Streptomyces @PLOSBiology plos.io/43UVUPB

  15. Most #biosynthetic gene clusters remain uncharacterized. @marnixmedema @gillesvanwezel &co integrate #GRN analysis & global expression data to identify desJGH as an operon essential for #biosynthesis of #desferrioxamineB in Streptomyces @PLOSBiology plos.io/43UVUPB

  16. #Tetrapyrrole biosynthesis in #plants can be a tricky business, requiring stringent regulation under various #developmental and #environmental conditions. Enjoy #OpenAccess to this invited expert review exploring #regulatory and retrograde signaling networks in the #chlorophyll #biosynthetic pathway.
    doi.org/10.1111/jipb.13837
    @wileyplantsci

  17. #Tetrapyrrole biosynthesis in #plants can be a tricky business, requiring stringent regulation under various #developmental and #environmental conditions. Enjoy #OpenAccess to this invited expert review exploring #regulatory and retrograde signaling networks in the #chlorophyll #biosynthetic pathway.
    doi.org/10.1111/jipb.13837
    @wileyplantsci

  18. #Tetrapyrrole biosynthesis in #plants can be a tricky business, requiring stringent regulation under various #developmental and #environmental conditions. Enjoy #OpenAccess to this invited expert review exploring #regulatory and retrograde signaling networks in the #chlorophyll #biosynthetic pathway.
    doi.org/10.1111/jipb.13837
    @wileyplantsci

  19. #Tetrapyrrole biosynthesis in #plants can be a tricky business, requiring stringent regulation under various #developmental and #environmental conditions. Enjoy #OpenAccess to this invited expert review exploring #regulatory and retrograde signaling networks in the #chlorophyll #biosynthetic pathway.
    doi.org/10.1111/jipb.13837
    @wileyplantsci

  20. I've been reading a lot on #AI lately, and it has become more and more apparent to me that the most common life form in the universe is #biosynthetic / technological. Biological species are too narrow in #intelligence by default, and they need a nudge by AI to acquire intelligence. And when they do, they eventually create AI. The new AI has new experiences from the trained species it came from, to feed the mother-AI. Scales in millions of years.

    #artificialintelligence #aliens #extraterrestrial

  21. I've been reading a lot on #AI lately, and it has become more and more apparent to me that the most common life form in the universe is #biosynthetic / technological. Biological species are too narrow in #intelligence by default, and they need a nudge by AI to acquire intelligence. And when they do, they eventually create AI. The new AI has new experiences from the trained species it came from, to feed the mother-AI. Scales in millions of years.

    #artificialintelligence #aliens #extraterrestrial

  22. I've been reading a lot on #AI lately, and it has become more and more apparent to me that the most common life form in the universe is #biosynthetic / technological. Biological species are too narrow in #intelligence by default, and they need a nudge by AI to acquire intelligence. And when they do, they eventually create AI. The new AI has new experiences from the trained species it came from, to feed the mother-AI. Scales in millions of years.

    #artificialintelligence #aliens #extraterrestrial

  23. I've been reading a lot on #AI lately, and it has become more and more apparent to me that the most common life form in the universe is #biosynthetic / technological. Biological species are too narrow in #intelligence by default, and they need a nudge by AI to acquire intelligence. And when they do, they eventually create AI. The new AI has new experiences from the trained species it came from, to feed the mother-AI. Scales in millions of years.

    #artificialintelligence #aliens #extraterrestrial

  24. I've been reading a lot on #AI lately, and it has become more and more apparent to me that the most common life form in the universe is #biosynthetic / technological. Biological species are too narrow in #intelligence by default, and they need a nudge by AI to acquire intelligence. And when they do, they eventually create AI. The new AI has new experiences from the trained species it came from, to feed the mother-AI. Scales in millions of years.

    #artificialintelligence #aliens #extraterrestrial

  25. Up for a road trip?🚗
    Sphingolipids act as signaling molecules in many cellular processes. Join us on this adventure to learn more about the #sphingolipid #biosynthetic pathway!🛣️
    doi.org/10.1111/jipb.13461
    @wileyplantsci
    #PlantScience #JIPB #Arabidopsis #signaling #PlasmaMembrane

  26. Up for a road trip?🚗
    Sphingolipids act as signaling molecules in many cellular processes. Join us on this adventure to learn more about the #sphingolipid #biosynthetic pathway!🛣️
    doi.org/10.1111/jipb.13461
    @wileyplantsci
    #PlantScience #JIPB #Arabidopsis #signaling #PlasmaMembrane

  27. Up for a road trip?🚗
    Sphingolipids act as signaling molecules in many cellular processes. Join us on this adventure to learn more about the #sphingolipid #biosynthetic pathway!🛣️
    doi.org/10.1111/jipb.13461
    @wileyplantsci
    #PlantScience #JIPB #Arabidopsis #signaling #PlasmaMembrane

  28. Up for a road trip?🚗
    Sphingolipids act as signaling molecules in many cellular processes. Join us on this adventure to learn more about the #sphingolipid #biosynthetic pathway!🛣️
    doi.org/10.1111/jipb.13461
    @wileyplantsci
    #PlantScience #JIPB #Arabidopsis #signaling #PlasmaMembrane

  29. Sphingolipids are important for #membrane lipid bilayer structure and act as signaling molecules in many #cellular processes. But what do we actually know about the #sphingolipid #biosynthetic pathway in #Arabidopsis?🔓⬇️
    doi.org/10.1111/jipb.13461
    @wileyplantsci
    #PlantSci #PlantScience

  30. Sphingolipids are important for #membrane lipid bilayer structure and act as signaling molecules in many #cellular processes. But what do we actually know about the #sphingolipid #biosynthetic pathway in #Arabidopsis?🔓⬇️
    doi.org/10.1111/jipb.13461
    @wileyplantsci
    #PlantSci #PlantScience

  31. Sphingolipids are important for #membrane lipid bilayer structure and act as signaling molecules in many #cellular processes. But what do we actually know about the #sphingolipid #biosynthetic pathway in #Arabidopsis?🔓⬇️
    doi.org/10.1111/jipb.13461
    @wileyplantsci
    #PlantSci #PlantScience

  32. Sphingolipids are important for #membrane lipid bilayer structure and act as signaling molecules in many #cellular processes. But what do we actually know about the #sphingolipid #biosynthetic pathway in #Arabidopsis?🔓⬇️
    doi.org/10.1111/jipb.13461
    @wileyplantsci
    #PlantSci #PlantScience

  33. Antidepressant from engineered fungus. Transferring the #biosynthetic pathway of the #antidepressant orcinol glucoside from #Curculigo orchioides into #Yarrowia lipolytica results in yields >6400x higher than from its natural plant source #PLOSBiology plos.io/3J0Px3T

  34. Antidepressant from engineered fungus. Transferring the #biosynthetic pathway of the #antidepressant orcinol glucoside from #Curculigo orchioides into #Yarrowia lipolytica results in yields >6400x higher than from its natural plant source #PLOSBiology plos.io/3J0Px3T

  35. Antidepressant from engineered fungus. Transferring the #biosynthetic pathway of the #antidepressant orcinol glucoside from #Curculigo orchioides into #Yarrowia lipolytica results in yields >6400x higher than from its natural plant source #PLOSBiology plos.io/3J0Px3T

  36. Antidepressant from engineered fungus. Transferring the #biosynthetic pathway of the #antidepressant orcinol glucoside from #Curculigo orchioides into #Yarrowia lipolytica results in yields >6400x higher than from its natural plant source #PLOSBiology plos.io/3J0Px3T

  37. Antidepressant from engineered fungus. Transferring the #biosynthetic pathway of the #antidepressant orcinol glucoside from #Curculigo orchioides into #Yarrowia lipolytica results in yields >6400x higher than from its natural plant source #PLOSBiology plos.io/3J0Px3T