| Literature DB >> 25690030 |
Jia-Hong Zhu1, Jing Xu2, Wen-Jun Chang3, Zhi-Li Zhang4,5.
Abstract
Ethylene is an important factor that stimulates Hevea brasiliensis to produce natural rubber. 1-Aminocyclopropane-1-carboxylic acid synthase (ACS) is a rate-limiting enzyme in ethylene biosynthesis. However, knowledge of the ACS gene family of H. brasiliensis is limited. In this study, nine ACS-like genes were identified in H. brasiliensis. Sequence and phylogenetic analysis results confirmed that seven isozymes (HbACS1-7) of these nine ACS-like genes were similar to ACS isozymes with ACS activity in other plants. Expression analysis results showed that seven ACS genes were differentially expressed in roots, barks, flowers, and leaves of H. brasiliensis. However, no or low ACS gene expression was detected in the latex of H. brasiliensis. Moreover, seven genes were differentially up-regulated by ethylene treatment. These results provided relevant information to help determine the functions of the ACS gene in H. brasiliensis, particularly the functions in regulating ethylene stimulation of latex production.Entities:
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Year: 2015 PMID: 25690030 PMCID: PMC4346948 DOI: 10.3390/ijms16024136
Source DB: PubMed Journal: Int J Mol Sci ISSN: 1422-0067 Impact factor: 5.923
Information of HbACS-like genes and their predicted proteins.
| Gene | GenBank Accession No. | ORF (bp) | Predicted Protein | |||
|---|---|---|---|---|---|---|
| Size (aa) | Type | pI | ||||
| KJ911898 | 1443 | 480 | Type 1 | 54.05 | 6.35 | |
| KJ911899 | 1446 | 481 | Type 1 | 54.43 | 5.70 | |
| KJ911900 | 1452 | 483 | Type 1 | 54.20 | 5.74 | |
| KJ911901 | 1455 | 484 | Type 1 | 54.60 | 7.24 | |
| KJ911902 | 1398 | 465 | Type 2 | 52.66 | 8.94 | |
| KJ911903 | 1323 | 440 | Type 3 | 49.18 | 5.69 | |
| KJ911904 | 1323 | 440 | Type 3 | 49.25 | 5.58 | |
| KJ911905 | 1608 | 535 | Putative AAT | 59.24 | 8.23 | |
| KJ911906 | 1653 | 550 | Putative AAT | 60.48 | 6.23 | |
Figure 1Amino acid sequence alignment of HbACS genes. The conserved glutamate residue (E) marked with an arrowhead is involved in substrate specificity. The seven highly conserved regions (I–VII) among all ACC synthases are underlined. Ser residues implicated in calcium-dependent protein kinase (CDPK) and mitogen-activated protein kinase (MPK6) phosphorylation are marked by a black dot and asterisks, respectively.
Figure 2Phylogenetic analysis of Hevea and Arabidopsis 1-Aminocyclopropane-1-carboxylic acid synthase (ACS)-like protein sequences. The accession numbers of Arabidopsis ACS-like known proteins in GenBank are listed as follows: AtACS1(NP_191710); AtACS2(Q06402); AtACS4(NP_179866); AtACS5(AAG50098); At-ACS6(T13019); At-ACS7 (AAG48754); AtACS8(AAG50090); AtACS9(AAG48755); AtACS10 (NP_564804); AtACS11(NP_567330); and AtACS12(NP_199982).
Figure 3Neighbor-joining phylogenetic tree and intron-exon structures. The phylogenetic tree (part of the left side) was constructed from HbACSs using the MEGA 6.0 program with the NJ method. Intron and exon structural organization of HbACS genes are described on the right side. Introns and exons are represented by black lines and colored boxes, respectively.
The putative cis-elements in the promoters of HbACS genes.
| Gene | Size | Hormone Response Element | Stress Response Element | Other Element |
|---|---|---|---|---|
| 823 | CGTCA-motif, TATC-box | MBS | GCN4_motif, Skn-1_motif | |
| 1484 | CGTCA-motif, ERE GARE-motif, TATC-box TGA-element | MBS HSE TC-rich repeats | O2-site, Skn-1_motif, as-2-box | |
| 1625 | ABRE, CGTCA-motif, ERE, TCA-element | AT-rich element, HSE | GCN4_motif, Skn-1_motif | |
| 1553 | ABRE, P-box, TGA-element | ARE, HSE, LTR, MBS, TC-rich repeats | Skn-1_motif, as-2-box, circadian | |
| 1575 | ABRE, AuxRR-core, GARE-motif | ARE, Box-W1, C-repeat/DRE, HSE, MBS, TC-rich repeats, W box | GCN4_motif, Skn-1_motif | |
| 1110 | GARE-motif, TGA-element | Box-W1, HSE, MBS, TC-rich repeats, W box | O2-site, Skn-1_motif2 | |
| 2036 | P-box, AuxRR-core, GARE-motif, TCA-element | ARE, HSE, MBS, TC-rich repeats | CAT-box, O2-site, RY-element, Skn-1_motif, circadian |
ABRE, abscisic acid-responsive element; ERE, ethylene-responsive element; ARE, element essential for the anaerobic induction; HSE, heat stress responsiveness; LTR, low-temperature responsiveness; MBS, MYB binding site involved in drought inducibility; TCA-element, salicylic acid-responsive element; TC-rich repeats, defense and stress responsiveness; CGTCA-motif, MeJA responsiveness; GARE-motif, gibberellin-responsive element; Circadian, circadian control; GCN4_motif, endosperm expression; Skn-1_motif, endosperm expression; Box-W1/W box, funga elicitor-responsive element; TATC-box, gibberellin-responsive element; WUN-motif, wound-responsive element; TGA-element, auxin-responsive element; P-box, gibberellin-responsive element; AuxRR-core, auxin-responsive element; O2-site, zein metabolism regulation; CAT-box, meristem expression; RY-element, seed-specific regulation; C-repeat/DRE, cold- and dehydration-responsiveness; as-2-box, shoot-specific expression and light responsiveness
Figure 4HbACS gene expression in various tissues, i.e., roots (R), barks (B), flowers, leaves (Le) and latex (La). Data are means ± standard error calculated from three independent biological replicates.
Figure 5Expression of the HbACS genes in the bark after ethrel was applied. Data are means ± standard error calculated from three independent biological replicates.