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Plastid

  • Plastid Variegation and Concurrent Anthocyanin Variegation in Salpiglossis1

    Plastid Variegation and Concurrent Anthocyanin Variegation in Salpiglossis1

  • Origin and Evolution of Plastids and Mitochondria : the Phylogenetic Diversity of Algae

    Origin and Evolution of Plastids and Mitochondria : the Phylogenetic Diversity of Algae

  • GUN1 and Plastid RNA Metabolism: Learning from Genetics

    GUN1 and Plastid RNA Metabolism: Learning from Genetics

  • Plastid in Human Parasites

    Plastid in Human Parasites

  • The Origin of Plastids By: Cheong Xin Chan, Ph.D

    The Origin of Plastids By: Cheong Xin Chan, Ph.D

  • Arabidopsis EGY1 Is Critical for Chloroplast Development in Leaf Epidermal Guard Cells

    Arabidopsis EGY1 Is Critical for Chloroplast Development in Leaf Epidermal Guard Cells

  • Genetic Transformation of Moss Plant

    Genetic Transformation of Moss Plant

  • Plastid-Localized Amino Acid Biosynthetic Pathways of Plantae Are Predominantly Composed of Non-Cyanobacterial Enzymes

    Plastid-Localized Amino Acid Biosynthetic Pathways of Plantae Are Predominantly Composed of Non-Cyanobacterial Enzymes

  • The Number, Speed, and Impact of Plastid Endosymbioses in Eukaryotic Evolution

    The Number, Speed, and Impact of Plastid Endosymbioses in Eukaryotic Evolution

  • Plant Genetics: Plastid Genomes — Lost in Translation?

    Plant Genetics: Plastid Genomes — Lost in Translation?

  • Plastid Gene Expression and Plant Development Require a Plastidic Protein of the Mitochondrial Transcription Termination Factor Family

    Plastid Gene Expression and Plant Development Require a Plastidic Protein of the Mitochondrial Transcription Termination Factor Family

  • Complete Plastid and Mitochondrial Genomes of Aeginetia

    Complete Plastid and Mitochondrial Genomes of Aeginetia

  • What Are Plastids and Where Did They Come From?

    What Are Plastids and Where Did They Come From?

  • Plastid and Stromule Morphology 83

    Plastid and Stromule Morphology 83

  • Nuclear Integrants of Organellar DNA Contribute to Genome Structure and Evolution in Plants

    Nuclear Integrants of Organellar DNA Contribute to Genome Structure and Evolution in Plants

  • 植物生理 藻類起源與質體 Origins of Algae and Their Plastids

    植物生理 藻類起源與質體 Origins of Algae and Their Plastids

  • The Monoplastidic Bottleneck in Algae and Plant Evolution Jan De Vries1 and Sven B

    The Monoplastidic Bottleneck in Algae and Plant Evolution Jan De Vries1 and Sven B

  • The Origin of Plastids By: Cheong Xin Chan, Ph.D

    The Origin of Plastids By: Cheong Xin Chan, Ph.D

Top View
  • Chloroplasts Extend Stromules Independently and in Response to Internal Redox Signals
  • Picozoa Are Archaeplastids Without Plastid
  • Visualization of Plastid Peptidoglycan in the Charophyte Alga Klebsormidium Nitens Using a Metabolic Labeling Method
  • Plant Life Cycles & Algae Alternation of Generations Life Cycle
  • Genomic Perspectives on the Birth and Spread of Plastids
  • Horizontal Transfer of DNA from the Mitochondrial to the Plastid Genome and Its Subsequent Evolution in Milkweeds (Apocynaceae)
  • Evolution of Seed Plants
  • Homologous Versus Antithetic Alternation of Generations and the Origin of Sporophytes
  • Complex Life Cycles of Multicellular Eukaryotes
  • Plastid Origin: Who, When and Why?
  • Clade-Specific Plastid Inheritance Patterns Including Frequent
  • Tracing the Thread of Plastid Diversity Through the Tapestry of Life
  • Comparative Plastid Genomics of Synurophyceae: Inverted Repeat
  • Chloroplasts Extend Stromules Independently and in Response to Internal Redox Signals
  • DNA Barcodes from Four Loci Provide Poor Resolution of Taxonomic Groups in the Genus Crataegus
  • The Mesozoic Radiation of Eukaryotic Algae: the Portable Plastid Hypothesis
  • Mitochondrial and Plastid Genome Architecture: COLLOQUIUM Reoccurring Themes, but Significant Differences at the Extremes
  • Chloroplast Development and Genomes Uncoupled Signaling Are Independent of the RNA‑Directed DNA Methylation Pathway Liangsheng Wang, Dario Leister & Tatjana Kleine*


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