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Tomato locus 1-aminocyclopropane-1-carboxylate synthase 6
Locus details | Download GMOD XML | Note to Editors | Annotation guidelines |
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Locus | Solyc08g008100 |
Locus name | 1-aminocyclopropane-1-carboxylate synthase 6 |
Symbol | acs6 |
Gene activity | 1-aminocyclopropane-1-carboxylate synthase |
Description | |
Chromosome | 8 |
Arm |
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Links to external databases | None |
Registry name: | None | [Associate registry name] |
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Accession name:
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![]() ![]() | View 1-aminocyclopropane-1-carboxylate synthase 6 relationships in the stand-alone network browser |
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![]() ![]() | unprocessed genomic sequence region underlying this gene |
>Solyc08g008100.2 SL2.50ch08:2582839..2580112 (sequence from reverse strand)
CTTTGTTTTGATTTAATTCAAGAATGGATAGTCAACAACCCAAAAGCCTCAATTTGTACATATGAAGGAGTTCAAGATTT
TCAAGATACTGCTATTTTTCAAGACTATCATGGCTTGCCAGAATTTAGAAAGGTATATATATATATATATATGTNNNNNN
NNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNN
NNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNN
NNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNN
NNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNN
NNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNN
NNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNN
NNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNN
NNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNACTACTTATATATA
TATATATATATATATATATATATATATTTTTCGATAAAATATAATCGTTCAAATAATAACCTCATAAAATGACACAAACA
ACATGTATCATCTGCTATAACAAGTTAAACTATATTACTATACGATCGGATTACGCAAAAGATAACTATGTAACCCTAGT
TAAAAGATAATAATTTATGATGATAAAGATTTTTTTTTTTAAATTAAACTTTAGTTTTCTATATTGTTACTATTTAAATT
ATTTTAATTATTGGTGTGGGACATATATATACAACTACTTGCAATAAAAATGACAAAAAGTAGTGATAACCTCAATAAGT
TTGTGGCCATAAATGACATAACATATTATACCAACTTTTTATTAGATTGGACCATATTGAATTAATTATTATTTGTCCCC
AATAGCAGCCATAATAATCAAAGGTGACATAAAAAAAAAAACAAGATTAAAAAAACTCAAGATTATCTAGAGAAAGTTGA
CTTATTCATTAAATTTTTCAAAGTCAAAATCAATGAATAGTCAAGTTAGAATATTGATTTTTAACAAATATATAATTTTT
ATACTATGAATATATTGCAGGTGAGATACTACAAGTAACGTCCAATTTCTGTCGCTAAACAATAAAAATCAACTGTTAAT
CTTATTTAATAACAAATCGAGTACTATTTAACGATAAAGTTCATAGCTAATTATTGCGTTGTATTGCAGATTTGATAGAG
ATTTGAGATGGAGAACAGGAGTACAACTTTTTCCTGTTGTTTGTGAGAGTTCTAACAATTTCAAGGTAACAAAAGAAGCC
TTAGAAGAAGCATATAGTAAAGCTCAAGAATCAAATATCAAAGTAAAAGGATTACTTATAAACAATCCATCAAATCCATT
AGGTACAATTTTGGACAAGGAAACATTAAAAGACATATTAAGATTCATCAATGACAAAAACATACATCTAGTATGTGATG
AAATCTATGCAGCAACCGCGTTTAGTCAACCTTCATTCATCAGTATCTCAGAAGTCAAGAGTGAAGTTGTTGGATGCAAC
GATGATTTAGTACACATTGTGTATAGTCTATCGAAAGATCTAGGGTTTCCTGGATTTAGGGTTGGGATTATTTACTCGTA
CAATGATGCCGTTGTCAATATTGCACGTAAGATGTCAAGTTTTGGACTTGTTTCAACACAAACACAAAGATTGATTGCTT
CAATGTTATTAGACACTATCTTTGTTGAAGATTTCATCGCGAAGAGCTCGATGAGATTGTTACAAAGATATGGTTTGTTT
ACTAAAGGATTAGGTCAAGTTGGAATTACAACATTGAAGAGTAATGCTGGTTTGTTTATTTGGATGGATTTAAGAAGGTT
TCTTGAGAATTCAACATTTGATGATGAATTGAAACTTTGGCATATAATTATTGATAAAGTGAAGCTTAATGTTTCACCTG
GTTGTTCATTTCATTGCTCAGAGCCAGGTTGGTTTAGGGTTTGTTTTGCTAATATGGATGATGCTACAATGAAGATTGCA
TTGAGAAGAATTAGACATTTTGTCTATTTACAACCAAATAAGGGAGTTGAAGTTGCAACAAAGAAACAATACTGTAGAAC
AAGGAGCAAACTTGAAATTAGTTTGTCATTTAGGAGATTGGATGATTTTATGAACTCTCCTCATTCACCTATGTCTTCTC
CTATGGTCCAAGCAAGGAATTAATCGTACGTATGTGGTGTTCTGATCAGCTTCTACACACATCGTTCAATTATGGACATG
TCGACTATTTCACTGAGTACCTGATTGTAAGTTTACATAACATAACATAGAATGGAAGTTTATATATAGTGATTCTTTGT
ATTCTTTTATTAAAAGTTTTTTTTTTTTGCCTATAATATACTATGGTTGCAAAAAAAAAAAATCAAGTTATGGGATTTTA
TTATATTG
CTTTGTTTTGATTTAATTCAAGAATGGATAGTCAACAACCCAAAAGCCTCAATTTGTACATATGAAGGAGTTCAAGATTT
TCAAGATACTGCTATTTTTCAAGACTATCATGGCTTGCCAGAATTTAGAAAGGTATATATATATATATATATGTNNNNNN
NNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNN
NNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNN
NNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNN
NNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNN
NNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNN
NNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNN
NNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNN
NNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNACTACTTATATATA
TATATATATATATATATATATATATATTTTTCGATAAAATATAATCGTTCAAATAATAACCTCATAAAATGACACAAACA
ACATGTATCATCTGCTATAACAAGTTAAACTATATTACTATACGATCGGATTACGCAAAAGATAACTATGTAACCCTAGT
TAAAAGATAATAATTTATGATGATAAAGATTTTTTTTTTTAAATTAAACTTTAGTTTTCTATATTGTTACTATTTAAATT
ATTTTAATTATTGGTGTGGGACATATATATACAACTACTTGCAATAAAAATGACAAAAAGTAGTGATAACCTCAATAAGT
TTGTGGCCATAAATGACATAACATATTATACCAACTTTTTATTAGATTGGACCATATTGAATTAATTATTATTTGTCCCC
AATAGCAGCCATAATAATCAAAGGTGACATAAAAAAAAAAACAAGATTAAAAAAACTCAAGATTATCTAGAGAAAGTTGA
CTTATTCATTAAATTTTTCAAAGTCAAAATCAATGAATAGTCAAGTTAGAATATTGATTTTTAACAAATATATAATTTTT
ATACTATGAATATATTGCAGGTGAGATACTACAAGTAACGTCCAATTTCTGTCGCTAAACAATAAAAATCAACTGTTAAT
CTTATTTAATAACAAATCGAGTACTATTTAACGATAAAGTTCATAGCTAATTATTGCGTTGTATTGCAGATTTGATAGAG
ATTTGAGATGGAGAACAGGAGTACAACTTTTTCCTGTTGTTTGTGAGAGTTCTAACAATTTCAAGGTAACAAAAGAAGCC
TTAGAAGAAGCATATAGTAAAGCTCAAGAATCAAATATCAAAGTAAAAGGATTACTTATAAACAATCCATCAAATCCATT
AGGTACAATTTTGGACAAGGAAACATTAAAAGACATATTAAGATTCATCAATGACAAAAACATACATCTAGTATGTGATG
AAATCTATGCAGCAACCGCGTTTAGTCAACCTTCATTCATCAGTATCTCAGAAGTCAAGAGTGAAGTTGTTGGATGCAAC
GATGATTTAGTACACATTGTGTATAGTCTATCGAAAGATCTAGGGTTTCCTGGATTTAGGGTTGGGATTATTTACTCGTA
CAATGATGCCGTTGTCAATATTGCACGTAAGATGTCAAGTTTTGGACTTGTTTCAACACAAACACAAAGATTGATTGCTT
CAATGTTATTAGACACTATCTTTGTTGAAGATTTCATCGCGAAGAGCTCGATGAGATTGTTACAAAGATATGGTTTGTTT
ACTAAAGGATTAGGTCAAGTTGGAATTACAACATTGAAGAGTAATGCTGGTTTGTTTATTTGGATGGATTTAAGAAGGTT
TCTTGAGAATTCAACATTTGATGATGAATTGAAACTTTGGCATATAATTATTGATAAAGTGAAGCTTAATGTTTCACCTG
GTTGTTCATTTCATTGCTCAGAGCCAGGTTGGTTTAGGGTTTGTTTTGCTAATATGGATGATGCTACAATGAAGATTGCA
TTGAGAAGAATTAGACATTTTGTCTATTTACAACCAAATAAGGGAGTTGAAGTTGCAACAAAGAAACAATACTGTAGAAC
AAGGAGCAAACTTGAAATTAGTTTGTCATTTAGGAGATTGGATGATTTTATGAACTCTCCTCATTCACCTATGTCTTCTC
CTATGGTCCAAGCAAGGAATTAATCGTACGTATGTGGTGTTCTGATCAGCTTCTACACACATCGTTCAATTATGGACATG
TCGACTATTTCACTGAGTACCTGATTGTAAGTTTACATAACATAACATAGAATGGAAGTTTATATATAGTGATTCTTTGT
ATTCTTTTATTAAAAGTTTTTTTTTTTTGCCTATAATATACTATGGTTGCAAAAAAAAAAAATCAAGTTATGGGATTTTA
TTATATTG
Download sequence region |
Get flanking sequences on SL2.50ch08
|
![]() ![]() |
![]() ![]() | terms associated with this mRNA |
![]() ![]() | spliced cDNA sequence, including UTRs |
>Solyc08g008100.2.1 1-aminocyclopropane-1-carboxylate synthase (AHRD V1 **** P93235_SOLLC); contains Interpro domain(s) IPR004839 Aminotransferase, class I and II
CTTTGTTTTGATTTAATTCAAGAATGGATAGTCAACAACCCAAAAGCCTCAATTTGTACATATGAAGGAGTTCAAGATTT
TCAAGATACTGCTATTTTTCAAGACTATCATGGCTTGCCAGAATTTAGAAAGNNNNNNNNNNNNNNNNNNNNNNNNNNNN
NNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNN
NNNNNNNNNNNNNNNNNNNNNNNNNNNNNACTACTTATATATATATATATATATATATATATATATATATTTTTCGATAA
AATATAATCGTTCAAATaataacctcATAAAATGACACAAACAACATGTATCATCTGCTATAACAAGTTAAACTATATTA
CTATACGATCGGATTACGCAAAAGATAACTATCTAATTATTGCGTTGTATTGCAGATTTGATAGAGATTTGAGATGGAGA
ACAGGAGTACAACTTTTTCCTGTTGTTTGTGAGAGTTCTAACAATTTCAAGGTAACAAAAGAAGCCTTAGAAGAAGCATA
TAGTAAAGCTCAAGAATCAAATATCAAAGTAAAAGGATTACTTATAAACAATCCATCAAATCCATTAGGTACAATTTTGG
ACAAGGAAACATTAAAAGACATATTAAGATTCATCAATGACAAAAACATACATCTAGTATGTGATGAAATCTATGCAGCA
ACCGCGTTTAGTCAACCTTCATTCATCAGTATCTCAGAAGTCAAGAGTGAAGTTGTTGGATGCAACGATGATTTAGTACA
CATTGTGTATAGTCTATCGAAAGATCTAGGGTTTCCTGGATTTAGGGTTGGGATTATTTACTCGTACAATGATGCCGTTG
TCAATATTGCACGTAAGATGTCAAGTTTTGGACTTGTTTCAACACAAACACAAAGATTGATTGCTTCAATGTTATTAGAC
ACTATCTTTGTTGAAGATTTCATCGCGAAGAGCTCGATGAGATTGTTACAAAGATATGGTTTGTTTACTAAAGGATTAGG
TCAAGTTGGAATTACAACATTGAAGAGTAATGCTGGTTTGTTTATTTGGATGGATTTAAGAAGGTTTCTTGAGAATTCAA
CATTTGATGATGAATTGAAACTTTGGCATATAATTATTGATAAAGTGAAGCTTAATGTTTCACCTGGTTGTTCATTTCAT
TGCTCAGAGCCAGGTTGGTTTAGGGTTTGTTTTGCTAATATGGATGATGCTACAATGAAGATTGCATTGAGAAGAATTAG
ACATTTTGTCTATTTACAACCAAATAAGGGAGTTGAAGTTGCAACAAAGAAACAATACTGTAGAACAAGGAGCAAACTTG
AAATTAGTTTGTCATTTAGGAGATTGGATGATTTTATGAACTCTCCTCATTCACCTATGTCTTCTCCTATGGTCCAAGCA
AGGAATTAATCGTACGTATGTGGTGTTCTGATCAGCTTCTACACACATCGTTCAATTATGGACATGTCGACTATTTCACT
GAGTACCTGATTGTAAGTTTACATAACATAACATAGAATGGAAGTTTATATATAGTGATTCTTTGTATTCTTTTATTAAA
AGTTTTTTTTTTTTGCCTATAATATACTATGGTTGCAAAAAAAAAAAATCAAGTTATGGGATTTTATTATATTG
CTTTGTTTTGATTTAATTCAAGAATGGATAGTCAACAACCCAAAAGCCTCAATTTGTACATATGAAGGAGTTCAAGATTT
TCAAGATACTGCTATTTTTCAAGACTATCATGGCTTGCCAGAATTTAGAAAGNNNNNNNNNNNNNNNNNNNNNNNNNNNN
NNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNN
NNNNNNNNNNNNNNNNNNNNNNNNNNNNNACTACTTATATATATATATATATATATATATATATATATATTTTTCGATAA
AATATAATCGTTCAAATaataacctcATAAAATGACACAAACAACATGTATCATCTGCTATAACAAGTTAAACTATATTA
CTATACGATCGGATTACGCAAAAGATAACTATCTAATTATTGCGTTGTATTGCAGATTTGATAGAGATTTGAGATGGAGA
ACAGGAGTACAACTTTTTCCTGTTGTTTGTGAGAGTTCTAACAATTTCAAGGTAACAAAAGAAGCCTTAGAAGAAGCATA
TAGTAAAGCTCAAGAATCAAATATCAAAGTAAAAGGATTACTTATAAACAATCCATCAAATCCATTAGGTACAATTTTGG
ACAAGGAAACATTAAAAGACATATTAAGATTCATCAATGACAAAAACATACATCTAGTATGTGATGAAATCTATGCAGCA
ACCGCGTTTAGTCAACCTTCATTCATCAGTATCTCAGAAGTCAAGAGTGAAGTTGTTGGATGCAACGATGATTTAGTACA
CATTGTGTATAGTCTATCGAAAGATCTAGGGTTTCCTGGATTTAGGGTTGGGATTATTTACTCGTACAATGATGCCGTTG
TCAATATTGCACGTAAGATGTCAAGTTTTGGACTTGTTTCAACACAAACACAAAGATTGATTGCTTCAATGTTATTAGAC
ACTATCTTTGTTGAAGATTTCATCGCGAAGAGCTCGATGAGATTGTTACAAAGATATGGTTTGTTTACTAAAGGATTAGG
TCAAGTTGGAATTACAACATTGAAGAGTAATGCTGGTTTGTTTATTTGGATGGATTTAAGAAGGTTTCTTGAGAATTCAA
CATTTGATGATGAATTGAAACTTTGGCATATAATTATTGATAAAGTGAAGCTTAATGTTTCACCTGGTTGTTCATTTCAT
TGCTCAGAGCCAGGTTGGTTTAGGGTTTGTTTTGCTAATATGGATGATGCTACAATGAAGATTGCATTGAGAAGAATTAG
ACATTTTGTCTATTTACAACCAAATAAGGGAGTTGAAGTTGCAACAAAGAAACAATACTGTAGAACAAGGAGCAAACTTG
AAATTAGTTTGTCATTTAGGAGATTGGATGATTTTATGAACTCTCCTCATTCACCTATGTCTTCTCCTATGGTCCAAGCA
AGGAATTAATCGTACGTATGTGGTGTTCTGATCAGCTTCTACACACATCGTTCAATTATGGACATGTCGACTATTTCACT
GAGTACCTGATTGTAAGTTTACATAACATAACATAGAATGGAAGTTTATATATAGTGATTCTTTGTATTCTTTTATTAAA
AGTTTTTTTTTTTTGCCTATAATATACTATGGTTGCAAAAAAAAAAAATCAAGTTATGGGATTTTATTATATTG
![]() ![]() | translated polypeptide sequence |
>Solyc08g008100.2.1 1-aminocyclopropane-1-carboxylate synthase (AHRD V1 **** P93235_SOLLC); contains Interpro domain(s) IPR004839 Aminotransferase, class I and II
MTQTTCIICYNKLNYITIRSDYAKDNYLIIALYCRFDRDLRWRTGVQLFPVVCESSNNFKVTKEALEEAYSKAQESNIKV
KGLLINNPSNPLGTILDKETLKDILRFINDKNIHLVCDEIYAATAFSQPSFISISEVKSEVVGCNDDLVHIVYSLSKDLG
FPGFRVGIIYSYNDAVVNIARKMSSFGLVSTQTQRLIASMLLDTIFVEDFIAKSSMRLLQRYGLFTKGLGQVGITTLKSN
AGLFIWMDLRRFLENSTFDDELKLWHIIIDKVKLNVSPGCSFHCSEPGWFRVCFANMDDATMKIALRRIRHFVYLQPNKG
VEVATKKQYCRTRSKLEISLSFRRLDDFMNSPHSPMSSPMVQARN*
MTQTTCIICYNKLNYITIRSDYAKDNYLIIALYCRFDRDLRWRTGVQLFPVVCESSNNFKVTKEALEEAYSKAQESNIKV
KGLLINNPSNPLGTILDKETLKDILRFINDKNIHLVCDEIYAATAFSQPSFISISEVKSEVVGCNDDLVHIVYSLSKDLG
FPGFRVGIIYSYNDAVVNIARKMSSFGLVSTQTQRLIASMLLDTIFVEDFIAKSSMRLLQRYGLFTKGLGQVGITTLKSN
AGLFIWMDLRRFLENSTFDDELKLWHIIIDKVKLNVSPGCSFHCSEPGWFRVCFANMDDATMKIALRRIRHFVYLQPNKG
VEVATKKQYCRTRSKLEISLSFRRLDDFMNSPHSPMSSPMVQARN*
![]() ![]() |
![]() ![]() | [Associate new unigene] |
Unigene ID:
SGN-U583842 Tomato 200607 -- build 2 -- 31 members [Remove] [Blast]
SGN-U589569 Tomato 200607 -- build 2 -- 1 members [Remove] [Blast]
SGN-U589569 Tomato 200607 -- build 2 -- 1 members [Remove] [Blast]
![]() ![]() | [Associate new genbank sequence] |
AF179249 Lycopersicon esculentum 1-aminocyclopropane-1-carboxylate synthase 6 (ACS6) mRNA, complete cds.
U74461 Lycopersicon esculentum 1-aminocyclopropane-1-carboxylate synthase (LE-ACS6) mRNA, partial cds.
AB013346 Solanum lycopersicum mRNA for 1-aminocyclopropane-1-carboxylate synthase, complete cds.
AB013100 Solanum lycopersicum LE-ACS6 mRNA for 1-aminocyclopropane-1-carboxylate synthase, complete cds.
U74461 Lycopersicon esculentum 1-aminocyclopropane-1-carboxylate synthase (LE-ACS6) mRNA, partial cds.
AB013346 Solanum lycopersicum mRNA for 1-aminocyclopropane-1-carboxylate synthase, complete cds.
AB013100 Solanum lycopersicum LE-ACS6 mRNA for 1-aminocyclopropane-1-carboxylate synthase, complete cds.
Other genome matches | None |
![]() ![]() | [Associate publication] [Matching publications] |
Differential induction of seven 1-aminocyclopropane-1-carboxylate synthase genes by elicitor in suspension cultures of tomato (Lycopersicon esculentum).
Plant molecular biology (1997)
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The key enzyme of ethylene biosynthesis, ACC synthase, is encoded by a multigene family. We describe three new DNA sequences encoding members of the ACC synthase family of the tomato. One of these sequences encodes a novel ACC synthase, LE-ACS6, which is phylogenetically related to the ACC synthases LE-ACS1A and LE-ACS1B. Gene-specific probes for seven tomato ACC synthase genes were prepared. They were used for RNase protection assays to study the accumulation of ACC synthase transcripts in suspension-cultured tomato cells after the addition of an elicitor. The ACC synthase genes LE-ACS2, LE-ACS5 and LE-ACS6 were strongly induced by the elicitor. In contrast, the genes LE-ACS1B, LE-ACS3 and LE-ACS4 were constitutively expressed and LE-ACS1B was present at all times at a particularly high level. Thus, there are two groups of ACC synthase transcripts expressed in these cells, either elicitor-induced or constitutive. A transcript of LE-ACS1A was not detected. Despite the presence of LE-ACS1B, LE-ACS2, LE-ACS3, LE-ACS4 and LE-ACS5, there was only little ethylene produced in the absence of the elicitor. Increased ethylene production is usually correlated with the accumulation of ACC synthase transcripts, indicating that ethylene production is controlled via the transcriptional activation of ACC synthase genes. However, the abundance of several ACC synthase mRNAs studied was not strictly correlated with the rate of elicitor-induced ethylene production. Our data provide evidence that the activity of these ACC synthases may not solely be controlled by the transcriptional activation of ACC synthase genes.
Oetiker, JH. Olson, DC. Shiu, OY. Yang, SF.
Plant molecular biology.
1997.
34(2).
275-86.
Differential expression and internal feedback regulation of 1-aminocyclopropane-1-carboxylate synthase, 1-aminocyclopropane-1-carboxylate oxidase, and ethylene receptor genes in tomato fruit during development and ripening.
Plant physiology (1998)
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We investigated the feedback regulation of ethylene biosynthesis in tomato (Lycopersicon esculentum) fruit with respect to the transition from system 1 to system 2 ethylene production. The abundance of LE-ACS2, LE-ACS4, and NR mRNAs increased in the ripening fruit concomitant with a burst in ethylene production. These increases in mRNAs with ripening were prevented to a large extent by treatment with 1-methylcyclopropene (MCP), an ethylene action inhibitor. Transcripts for the LE-ACS6 gene, which accumulated in preclimacteric fruit but not in untreated ripening fruit, did accumulate in ripening fruit treated with MCP. Treatment of young fruit with propylene prevented the accumulation of transcripts for this gene. LE-ACS1A, LE-ACS3, and TAE1 genes were expressed constitutively in the fruit throughout development and ripening irrespective of whether the fruit was treated with MCP or propylene. The transcripts for LE-ACO1 and LE-ACO4 genes already existed in preclimacteric fruit and increased greatly when ripening commenced. These increases in LE-ACO mRNA with ripening were also prevented by treatment with MCP. The results suggest that in tomato fruit the preclimacteric system 1 ethylene is possibly mediated via constitutively expressed LE-ACS1A and LE-ACS3 and negatively feedback-regulated LE-ACS6 genes with preexisting LE-ACO1 and LE-ACO4 mRNAs. At the onset of the climacteric stage, it shifts to system 2 ethylene, with a large accumulation of LE-ACS2, LE-ACS4, LE-ACO1, and LE-ACO4 mRNAs as a result of a positive feedback regulation. This transition from system 1 to system 2 ethylene production might be related to the accumulated level of NR mRNA.
Nakatsuka, A. Murachi, S. Okunishi, H. Shiomi, S. Nakano, R. Kubo, Y. Inaba, A.
Plant physiology.
1998.
118(4).
1295-305.
Transcriptional regulation of the ethylene response factor LeERF2 in the expression of ethylene biosynthesis genes controls ethylene production in tomato and tobacco.
Plant physiology (2009)
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Fine-tuning of ethylene production plays an important role in developmental processes and in plant responses to stress, but very little is known about the regulation of ethylene response factor (ERF) proteins in ethylene biosynthesis genes and ethylene production. Identifying cis-acting elements and transcription factors that play a role in this process, therefore, is important. Previously, a tomato (Solanum lycopersicum [f. sp. Lycopersicon esculentum]) ERF protein, LeERF2, an allele of TERF2, was reported to confer ethylene triple response on plants. This paper reports the transcriptional modulation of LeERF2/TERF2 in ethylene biosynthesis in tomato and tobacco (Nicotiana tabacum). Using overexpressing and antisense LeERF2/TERF2 transgenic tomato, we found that LeERF2/TERF2 is an important regulator in the expression of ethylene biosynthesis genes and the production of ethylene. Expression analysis revealed that LeERF2/TERF2 is ethylene inducible, and ethylene production stimulated by ethylene was suppressed in antisense LeERF2/TERF2 transgenic tomato, indicating LeERF2/TERF2 to be a positive regulator in the feedback loop of ethylene induction. Further research showed that LeERF2/TERF2 conservatively modulates ethylene biosynthesis in tobacco and that such regulation in tobacco is associated with the elongation of the hypocotyl and insensitivity to abscisic acid and glucose during germination and seedling development. The effects on ethylene synthesis were similar to those of another ERF protein, TERF1, because TERF1 and LeERF2/TERF2 have overlapping roles in the transcriptional regulation of ethylene biosynthesis in tobacco. Biochemical analysis showed that LeERF2/TERF2 interacted with GCC box in the promoter of NtACS3 and with dehydration-responsive element in the promoter of LeACO3, resulting in transcriptional activation of the genes for ethylene biosynthesis in tomato and tobacco, which is a novel regulatory function of ERF proteins in plant ethylene biosynthesis.
Zhang, Z. Zhang, H. Quan, R. Wang, XC. Huang, R.
Plant physiology.
2009.
150(1).
365-77.
![]() ![]() | [Add ontology annotations] |
biological_process
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cellular_component
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molecular_function
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