Chromosome duplication causing gene‐dosage‐based effects on the gene expression level inGossypium hirsutum‐Gossypium australeaddition lines
Autor: | Ting Zhao, Fujie Liu, Changjiang Cui, Baoliang Zhou, Shouli Feng, Haiyue Guo, Min Xu |
---|---|
Rok vydání: | 2020 |
Předmět: |
dosage effect
Genetics Gossypium Ecology biology Gossypium australe fungi Botany chromosome duplication RNA-Seq Plant Science biology.organism_classification Biochemistry Genetics and Molecular Biology (miscellaneous) Gossypium hirsutum Gene dosage alien chromosome addition lines QK1-989 Gene expression Gene duplication Gene expression level gene expression RNA‐Seq Ecology Evolution Behavior and Systematics |
Zdroj: | Plant Direct, Vol 4, Iss 8, Pp n/a-n/a (2020) |
ISSN: | 2475-4455 |
DOI: | 10.1002/pld3.247 |
Popis: | Polyploidization, or whole‐genome duplication, leads to gene expression changes that drive the evolution of many plants and some animals. However, the role of the dosage effect on gene expression changes following genome duplication remains unclear. Here, several Gossypium hirsutum‐Gossypium australe alien chromosome addition lines (ALs) were developed that contained a single (MA) or a pair (DA) of G. australe chromosomes on the G. hirsutum background, which can be regarded as a G. australe chromosome duplication, to mimic genome duplication and to elucidate the short‐term effects of chromosome duplication on gene expression changes. Therefore, the profile of G. australe gene expression was investigated in three pairs of MAs and DAs (2G, 3G, and 7G). Our results suggest that dosage‐dependent and ‐independent genes are enriched with genes of different functional categories. The dosage‐dependent genes were enriched in primary metabolic activities; whereas the dosage‐independent genes were enriched in stress responses, cell signaling, and the endomembrane system. Implication on possible differences in dosage‐dependent and independent genes in employing cis‐ and trans‐regulation are also discussed. These results will provide new insights into the mechanisms by which gene‐dosage affects expression changes induced by genome duplications. |
Databáze: | OpenAIRE |
Externí odkaz: |