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Species Resource Title
GBIF Plant specimens of Ishikawa Museum of Natural History , Plant Specimens of The Cattle Museum , Long-term fauna and flora records of the experimental forests of the Forest Research Station of Hokkaido University, Japan , Spermatophyte collection of Himeji City Science Museum , Plant specimens of Toyota City Nature Sanctuary , Asia-Pacific Dataset , Spermatophyta Specimens of Kawasaki Municipal Science Museum , Botanical collection of Gifu Prefecture Museum , Plant Specimen Database of Tama Forest Science Garden, Forestry and Forest Products Research Institute, Japan , Plant specimens of Otaru Museum , ... Repeated shifts out of tropical climates preceded by whole genome duplication.
GBIF Plant specimens of Ishikawa Museum of Natural History , Plant Specimens of The Cattle Museum , Long-term fauna and flora records of the experimental forests of the Forest Research Station of Hokkaido University, Japan , Plant specimens of Toyota City Nature Sanctuary , Plant specimens of Otaru Museum , Plant specimens of Komatsu City Museum , The 6-7th National Survey on the Natural Environment: Vegetation Survey , Vascular Plant Specimens of Yamagata Prefectural Museum , Vascular Plants Collection of National Museum of Nature and Science , Vascular plant specimens of Akita Prefectural Museum , ... Bigger genomes provide environment-dependent growth benefits in grasses.
Arabidopsis / Cultured plant cells, genes rpc00031 DNA- and Selectable-Marker-Free Genome-Editing System Using Zygotes from Recalcitrant Maize Inbred B73.
Arabidopsis / Cultured plant cells, genes rpc00008 Direct protein delivery into intact Arabidopsis cells for genome engineering.
Arabidopsis / Cultured plant cells, genes rpc00008 Kozak Sequence Acts as a Negative Regulator for De Novo Transcription Initiation of Newborn Coding Sequences in the Plant Genome.
Algae NIES-3377 The Unicellular Red Alga Cyanidioschyzon merolae-The Simplest Model of a Photosynthetic Eukaryote.
Arabidopsis / Cultured plant cells, genes rpd00105 Gene trapping in Arabidopsis reveals genes involved in vascular development.
Chrysanthemum Gojo-0 , AEV02 , AKW12 , XMRS10 , NIFS-3 A chromosome-level genome sequence of Chrysanthemum seticuspe, a model species for hexaploid cultivated chrysanthemum.
Barley Barley seed samples for RNA-Seq analysis RNA-Seq-based DNA marker analysis of the genetics and molecular evolution of Triticeae species.
Wheat cv. Fielder Chromosome-scale genome assembly of the transformation-amenable common wheat cultivar 'Fielder'.
Algae NIES-1606 , NIES-1611 , NIES-1638 Large-Scale Phylogenomic Analyses Reveal the Monophyly of Bryophytes and Neoproterozoic Origin of Land Plants.
Lotus / Glycine Norin2 , Glycine soja B01167 Whole-genome sequence diversity and association analysis of 198 soybean accessions in mini-core collections.
Barley Resource description History and future perspectives of barley genomics.
Tomato , Human and Animal Cells TOMJPF00004 (Ailsa Craig) , 293T(RCB2202) Genome editing in plants using CRISPR type I-D nuclease.
Rice Evolution and Diversity of the Wild Rice Oryza officinalis Complex, across Continents, Genome Types, and Ploidy Levels.
Lotus / Glycine LegumeBase Impacts of genomic research on soybean improvement in East Asia.
Rice Wild Rice (48 Accessions) , O. barthii : 8 Accessions , O. glumaepatula : 9 Accessions , O. longistaminata : 7 Accessions , O. meridionalis : 6 Accessions , O. rufipogon : 18 Accessions Introgression of the chromosomal region with the Pi-cd locus from Oryza meridionalis into O. sativa L. during rice domestication.
Wheat KU-2075 , KU-2025 RNA Sequencing-Based Bulked Segregant Analysis Facilitates Efficient D-genome Marker Development for a Specific Chromosomal Region of Synthetic Hexaploid Wheat.
Wheat KU-2208A , KU-14601 , KU-14605 , KU-12963a , KU-2236 , KU-7716 , KU-7848 , KU-5784 , KU-14613 , KU-5752 Origin of wheat B-genome chromosomes inferred from RNA sequencing analysis of leaf transcripts from section Sitopsis species of Aegilops.
Arabidopsis / Cultured plant cells, genes rpc00030 , rpc00031 An imbalanced parental genome ratio affects the development of rice zygotes.