Doubling down on genomes: polyploidy and crop plants.
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Summary
The role of polyploidy in angiosperm evolution, the domestication process and crop improvement is explored, and the potential of modern technologies, particularly next-generation sequencing, to inform us on the patterns and processes governingpolyploid crop improvement and phenotypic change subsequent to domestication is focused on.
- Type
- review
- Published
- 2014-10-01
- Cited by
- 383
- References
- 192
- Access
- Open access
- OpenAlex
- https://openalex.org/W2084092640
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:21001531
Keywords
Biology, Crop, Genome, Agronomy, Genetics
References
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- Concerted evolution of 18–5.8–26S rDNA repeats in Nicotiana allotetraploids
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- The probability of duplicate gene preservation by subfunctionalization.
- Genomic changes in synthetic Arabidopsis polyploids.
- Gene loss, silencing and activation in a newly synthesized wheat allotetraploid.
- Accumulation of genome-specific transcripts, transcription factors and phytohormonal regulators during early stages of fiber cell development in allotetraploid cotton.
- The significance of responses of the genome to challenge.
- Genomic expression dominance in allopolyploids
- Dominance and epistasis are the main contributors to heterosis for plant height in rice.
- Genes duplicated by polyploidy show unequal contributions to the transcriptome and organ-specific reciprocal silencing
- Yesterday's polyploids and the mystery of diploidization
Cited by
- Automated tetraploid genotype calling by hierarchical clustering
- New insights into the phylogeny of the TMBIM superfamily across the tree of life: Comparative genomics and synteny networks reveal independent evolution of the BI and LFG families in plants.
- Making the Bread: Insights from Newly Synthesized Allohexaploid Wheat.
- Circadian Clock Genes Universally Control Key Agricultural Traits.
- Effects of genome structure variation, homeologous genes and repetitive DNA on polyploid crop research in the age of genomics.
- A genome-scale mining strategy for recovering novel rapidly-evolving nuclear single-copy genes for addressing shallow-scale phylogenetics in Hydrangea
- Sweet sorghum ideotypes: genetic improvement of the biofuel syndrome
- Gossypium barbadense genome sequence provides insight into the evolution of extra-long staple fiber and specialized metabolites
- Evidence of Intense Chromosomal Shuffling during Conifer Evolution
- Transcriptome asymmetry in synthetic and natural allotetraploid wheats, revealed by RNA-sequencing.
- Binucleation to breed new plant species adaptable to their environments
- Single human cells use transcriptional mechanisms to compensate for differences in cell size and DNA content
- Biogeography of the Anthropocene
- SUMOylation by a Stress-Specific Small Ubiquitin-Like Modifier E2 Conjugase Is Essential for Survival of Chlamydomonas reinhardtii under Stress Conditions1[OPEN]
- Silenced rRNA genes are activated and substitute for partially eliminated active homeologs in the recently formed allotetraploid, Tragopogon mirus (Asteraceae)
- Toward breeding new land-sea plant hybrid species irrigable with seawater for dry regions
- Tetrasomic Recombination Is Surprisingly Frequent in Allotetraploid Arachis
- Evolution of the BBAA Component of Bread Wheat during Its History at the Allohexaploid Level[C][W][OPEN]
- VitisCyc: a metabolic pathway knowledgebase for grapevine (Vitis vinifera)
- Meiosis evolves: adaptation to external and internal environments.
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