Unravel the Mystery of NIC1-locus on Nicotine Biosynthesis Regulation in Tobacco
Sui, X.; Xie, H.; Tong, Z.; Zhang, H.; Song, Z.; Gao, Y.; Zhao, L.; Li, W.; Li, M.; Li, Y.; Li, Y.; Wang, B.
Show abstract
ABSTRACTBackground Nicotine biosynthesis is mainly regulated by jasmonate (JA) signaling cascade in Nicotiana tabacum. As an allotetraploid species, the regulation of nicotine biosynthesis has been genetically verified via two unlinked NIC loci (named as NIC1 and NIC2) which are possibly originated from its two ancestral diploids. Previously, a N. tomentosiformis originated ethylene response factor (ERF) gene cluster was identified as the NIC2-locus which has been demonstrated positively regulates nicotine accumulation in N. tabacum.Results Here, we describe the genetic mapping of NIC1-locus, the major nicotine regulatory locus, by using a NIC1-locus segregating population through bulked segregant analysis. We identified two linkage marker TM23004 and TM22038 were delimited the NIC1-locus within a ~34.3-Mb genomic region at pseudochromosome 07 of tobacco genome. Genomic scan within this region revealed a NIC2-like locus ERF gene cluster exist in. To verify this ERF gene cluster is the genetically called “NIC1-locus”, different functional experiments based on most of the ERFs in regulating nicotine biosynthesis and their influences on alkaloid accumulations have been carried out. Collinearity analysis showed that NIC1-locus ERF genes are originated from N. sylvestris and exclusively expressed in root tissues. In addition, transcriptomic results indicate that NIC1-locus ERF genes are coexpressed with the NIC2-locus ERF genes and other nicotine biosynthetic genes and regulators after JA induction. Furthermore, the suppressed expression of four ERFs of the NIC1-locus genes corresponding with decreased NtPMT and NtQPT expression in NtMYC2-RNAi lines indicates the selected NIC1-locus ERFs function in downstream of NtMYC2 in the JA signaling cascades. In the meanwhile, the alkaloid levels are also determined by the amplitude of the four ERF gene expressions in both wild type and LA mutant. Additionally, in vitro binding assays, transient activation assays, and ectopic expression in transgenic plants demonstrate that these ERF genes are able to bind the GCC-box elements residing in the step-limiting gene promoters (such as NtPMT2, NtQPT2) and functional redundant but quantitatively transactivate nicotine biosynthetic gene expression. For nic1-locus mutation, two different sizes of deletions (nic1-S and nic1-B) were identified which occurred at the surrounding regions of the NIC1-locus gene cluster, which might disrupt, to some extent, chromosomal microenvironment and change gene expression around the deletion regions (including NIC1-locus ERFs), resulting in the decreased expression levels of NIC1-locus ERFs (such as NtERF199) and reduced alkaloid accumulation in the nic1-locus mutant.Conclusions Our findings not only provide insight in to the mechanism of the NIC1-locus ERFs in the regulatory network of nicotine biosynthesis, but also unraveled the theoretical basis of the nic1-locus mutation in low nicotine mutant. These functional verified NIC1-locus ERF genes can be further used as potential target(s) for ethyl methanesulfonate-based mutagenesis to manipulate nicotine level in tobacco variety in tobacco breeding program.Competing Interest StatementThe authors have declared no competing interest.AbbreviationsA622a PIP family oxidoredutase for nicotine precursors condensationODCornithine decarboxylaseADCarginine decarboxylasePMTputrescine N-methyltransferaseMPON-methylputrescine oxidaseAOaspartate oxidaseQSquinolinic acid synthaseQPTqunolinic acid phosphoribosyl transferaseSPDSspermidine synthaseSAMSS-adenosylmethionine synthaseSAMDCS-adenosylmethione decarboxylasePCRPolymerase chain reactionRNA-seqRNA SequencingRPKMReads Per Kilobase per Million mapped readsSSRsimple sequence repeatqRT-PCRQuantitative real-time PCRCRchromosome rearrangementCNVcopy number variantView Full Text
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- miRNA858b Inhibits Proanthocyanidin Accumulation by Repression of DkMYB19 and DkMYB20 in Persimmon 97%
- Systematic analysis of the R2R3-MYB family of transcription factors in Camellia sinensis: evidence for species-specific catechin biosynthesis regulation 97%
- Isoprenoid biosynthesis regulation in poplars by methylerythritol phosphate and mevalonic acid pathways 96%
Similar papers in this journal
- Arabidopsis CPK6 regulates drought tolerance under high nitrogen by the phosphorylation of NRT1.1 96%
- Rice lectin protein Osr40c1 imparts drought tolerance by modulating OsSAM2, OsSAP8 and chromatin-associated proteins 95%
- AhRLK1, a CLAVATA1-like leucine-rich repeat receptor-like kinase of peanut, confers increased resistance to bacterial wilt in tobacco 95%
Similar papers in this journal
- MdLRR-RLK1-MdATG3 module enhances the resistance of apples to abiotic stress via autophagy 96%
- MdMYB44-like positively regulates salt and drought tolerance via the MdPYL8-MdPP2CA module in apple 95%
- The apple palmitoyltransferase MdPAT16 regulates sugar content via an MdCBL1-MdCIPK13-MdSUT2.2 pathway 94%
Similar papers in this journal
- GATA transcription factor in common bean: a comprehensive genome-wide functional characterization, identification, and abiotic stress response evaluation. 96%
- Uncovering the molecular basis of high morphinan product efficiency in opium poppy through Multi-omics integrated analysis with multi-capsules 95%
- Early flowering in oilseed-type Brassica rapa plants results from nonsense-mediated mRNA decay (NMD) of BrFLC2 95%
Similar papers in this journal
- Structure-function relationship of Gossypium hirsutum NAC transcription factor, GhNAC4 with regard to ABA and abiotic stress responses 96%
- Genome-wide analysis of the apple family 1 glycosyltransferases identified a flavonoid-modifying UGT, MdUGT83L3, which is targeted by MdMYB88 and contributes to stress adaptation 96%
- Yellow-Fruited Phenotype is Caused by an Insertion Event at 5' UTR of YFT1 Allele in yft1 Mutant Tomato 96%
"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.