Dosage imbalance of B- and C-class genes causes petaloid-stamen relating to F1 hybrid variation
Autor: | Yin-Zheng Wang, Jing Liu, Xia Yang, Chao-Qun Li, Yang Dong |
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Jazyk: | angličtina |
Rok vydání: | 2018 |
Předmět: |
0106 biological sciences
0301 basic medicine Petrocosmea Mutant Stamen B-class genes Context (language use) Plant Science ASE analyses 01 natural sciences 03 medical and health sciences Parallel pathways Organ identity lcsh:Botany Floral symmetry Whorl (botany) Genetics biology Dosage imbalance biology.organism_classification lcsh:QK1-989 030104 developmental biology Petal Homeotic gene 010606 plant biology & botany |
Zdroj: | BMC Plant Biology, Vol 18, Iss 1, Pp 1-16 (2018) |
ISSN: | 1471-2229 |
DOI: | 10.1186/s12870-018-1562-4 |
Popis: | Background Great advances have been achieved in our understanding of flower development and evolution since the establishment of the ABC model. However, it remains a challenge to define the exact context of organ identity in the component interactions of the ABC model. Results Through hybridization, we detected a homeotic mutant in Petrocosmea (Gesneriaceae) uniquely displayed by the ‘petaloid-stamen’ in the third whorl with petal identity. Comparative Real-time PCR analyses demonstrate that both two B-class genes DEF2 and GLO are excessively expressed while the transcripts of the C-class gene PLE are reduced in the third floral whorl in the mutant compared to that in the wild-type F1 hybrids. Further allele-specific expression (ASE) analyses indicate that an allele-specific change in PgPLE might be responsible for up-regulation of both B-class genes and down-regulation of the C-class gene in the petaloid-stamen mutants. Conclusions Our findings suggest that the petaloid-stamen is consequent upon an evident dosage imbalance between B- and C-class products that is probably triggered by a cis-regulatory change. In addition, the genetic pathway for the floral organ identity might be in parallel with that for the floral symmetry. The extreme variation in hybrids further suggests that interspecific hybridization may represent a major factor for evolutionary innovation and diversification in plants. |
Databáze: | OpenAIRE |
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