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1.
Gene ; 752: 144791, 2020 Aug 20.
Article in English | MEDLINE | ID: mdl-32439378

ABSTRACT

Prkaca consists of the catalytic subunit alpha protein kinase A (PKA), which is involved in many cellular processes. In this study, the cDNA and genomic sequences of prkaca in tilapia hybrids (Oreochromis mossambicus × Oreochromis hornorum) were cloned and analysed. The results showed the prkaca gene consists of 11 exons and 10 introns, and its protein contains 351 amino acid residues and is clustered with Oreochromis niloticus, Maylandia zebra and Haplochromis burtoni first in a phylogenetic tree. Amino acid alignment indicates that prkaca shares the highest identity (100%) to Oreochromis niloticus, Maylandia zebra and Haplochromis burtoni. Two CpG islands of prkaca were found by MethPrimer software, and 32 CG sites were found in the proximal promoter. The methylation level of prkaca in the hybrids (0.31%) was significantly lower than that of their parents (0.94% and 3.43%) in kidney tissue (P < 0.05). The gene expression levels and DNA methylation levels of prkaca in muscle and kidney tissues of the tilapia hybrids were detected by quantitative real-time PCR and bisulfite sequencing PCR and showed a negative correlation under saline-alkali stress. The results of this research demonstrated that DNA methylation levels and prkaca mRNA expression levels were inversely correlated under saline-alkali stress, implying that heterosis is likely accompanied by DNA methylation alterations. This research provides new clues for further investigations of DNA methylation and heterosis in hybrid fish.


Subject(s)
Cyclic AMP-Dependent Protein Kinase Catalytic Subunits/genetics , Osmoregulation/genetics , Tilapia/genetics , Amino Acid Sequence/genetics , Animals , Chimera/genetics , China , Cyclic AMP-Dependent Protein Kinase Catalytic Subunits/metabolism , DNA Methylation/genetics , DNA, Complementary/genetics , Female , Genomics , Hybrid Vigor/genetics , Male , Phylogeny , Promoter Regions, Genetic/genetics , Water-Electrolyte Balance/genetics
2.
Mol Plant ; 12(7): 935-950, 2019 07 01.
Article in English | MEDLINE | ID: mdl-30999079

ABSTRACT

Scutellaria baicalensis Georgi is important in Chinese traditional medicine where preparations of dried roots, "Huang Qin," are used for liver and lung complaints and as complementary cancer treatments. We report a high-quality reference genome sequence for S. baicalensis where 93% of the 408.14-Mb genome has been assembled into nine pseudochromosomes with a super-N50 of 33.2 Mb. Comparison of this sequence with those of closely related species in the order Lamiales, Sesamum indicum and Salvia splendens, revealed that a specialized metabolic pathway for the synthesis of 4'-deoxyflavone bioactives evolved in the genus Scutellaria. We found that the gene encoding a specific cinnamate coenzyme A ligase likely obtained its new function following recent mutations, and that four genes encoding enzymes in the 4'-deoxyflavone pathway are present as tandem repeats in the genome of S. baicalensis. Further analyses revealed that gene duplications, segmental duplication, gene amplification, and point mutations coupled to gene neo- and subfunctionalizations were involved in the evolution of 4'-deoxyflavone synthesis in the genus Scutellaria. Our study not only provides significant insight into the evolution of specific flavone biosynthetic pathways in the mint family, Lamiaceae, but also will facilitate the development of tools for enhancing bioactive productivity by metabolic engineering in microbes or by molecular breeding in plants. The reference genome of S. baicalensis is also useful for improving the genome assemblies for other members of the mint family and offers an important foundation for decoding the synthetic pathways of bioactive compounds in medicinal plants.


Subject(s)
Biosynthetic Pathways/genetics , Flavanones , Flavonoids/genetics , Scutellaria baicalensis/genetics , Flavanones/genetics , Flavanones/metabolism , Flavonoids/metabolism , Genome, Plant , Medicine, Chinese Traditional , Plant Extracts , Plant Roots/metabolism , Plants, Medicinal/genetics , Plants, Medicinal/metabolism , Scutellaria baicalensis/metabolism , Whole Genome Sequencing
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