Phosphate transporter genes: genome-wide identification and characterization in Camelina sativa
Hasanzadeh, S.; Faraji, S.; Abdullah, ; Heidari, P.
Show abstract
Phosphorus is known as a key element associated with growth, energy, and cell signaling. In plants, phosphate transporters (PHTs) are responsible for moving and distributing phosphorus in cells and organs. PHT genes have been genome-wide identified and characterized in various plant species, however, these genes have not been widely identified based on available genomic data in Camellia sativa, which is an important oil seed plant. In the present study, we found 66 PHT genes involved in phosphate transporter/translocate in C. sativa. The recognized genes belonged to PHTs1, PHTs2, PHTs4, PHOs1, PHO1 homologs, glycerol-3-PHTs, sodium dependent PHTs, inorganic PHTs, xylulose 5-PHTs, glucose-6-phosphate translocators, and phosphoenolpyruvate translocators. Our finding revealed that PHT proteins are divers based on their physicochemical properties such as Isoelectric point (pI), molecular weight, GRAVY value, and exon-intron number(s). Besides, the expression profile of PHT genes in C. sativa based on RNA-seq data indicate that PHTs are involved in response to abiotic stresses such as cold, drought, salt, and cadmium. The tissue specific expression high expression of PHO1 genes in root tissues of C. sativa. In additions, four PHTs, including a PHT4;5 gene, a sodium dependent PHT gene, and two PHO1 homolog 3 genes were found with an upregulation in response to aforementioned studied stresses. In the current study, we found that PHO1 proteins and their homologs have high potential to post-translation modifications such as N-glycosylation and phosphorylation. Besides, different cis-acting elements associated with response to stress and phytohormone were found in the promoter region of PHT genes. Overall, our results show that PHT genes play various functions in C. Sativa and regulate Camellia responses to external and intracellular stimuli. The results can be used in future studies related to the functional genomics of C. sativa.
Matching journals
The top 9 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Proteomic insight into soybean response to flooding stress reveals changes in basic energy metabolism and cell wall modifications 97%
- An abscisic acid (ABA) homeostasis regulated by its production, catabolism and transport in peanut leaves in response to drought stress 97%
- Transcriptome sequencing and screening of genes related to sex determination of Trichosanthes kirilowii Maxim. 97%
Similar papers in this journal
- Genome-wide identification, expression and bioinformatic analyses of GRAS transcription factor genes in rice 97%
- Molecular characterization revealed the role of thaumatin-like proteins in stress response in bread wheat 96%
- Isoprenoid biosynthesis regulation in poplars by methylerythritol phosphate and mevalonic acid pathways 95%
Similar papers in this journal
- Genomic and transcriptomic analysis of sacred fig (Ficus religiosa) 97%
- Genome-wide characterization and expression profiling of B3 superfamily during flower induction stage in pineapple (Ananas comosus L.) 96%
- New insights into the evolution of SPX gene family from algae to legumes; a focus on soybean 95%
Similar papers in this journal
- Genome-wide identification, characterization and expression analysis of CsC3H gene family in cucumber (Cucumis sativus L) under various abiotic stresses 96%
- Dynamic structural changes in wheat vegetative development as an adaptive response to drought stress 95%
- Structure-function relationship of Gossypium hirsutum NAC transcription factor, GhNAC4 with regard to ABA and abiotic stress responses 95%
Similar papers in this journal
- Jacalin domain-containing protein OsSalT interacts with OsDREB2A and OsNAC1 to impart drought stress tolerance in planta 96%
- Synchronization and interaction of proline, ascorbate and oxidative stress pathways under abiotic stress combination in tomato plants 95%
- Asymmetric expression of homoeologous genes in wheat roots modulates the early phase of iron-deficiency signalling 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.