首页> 外文期刊>Journal of Experimental Botany >Alternative splicing of basic chitinase gene PR3b in the low-nicotine mutants of Nicotiana tabacum L. cv. Burley 21
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Alternative splicing of basic chitinase gene PR3b in the low-nicotine mutants of Nicotiana tabacum L. cv. Burley 21

机译:碱性几丁质酶基因PR3b在烟草的低烟碱突变体中的可变剪接白肋烟21

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摘要

Two unlinked semi-dominant loci, A (NIC1) and B (NIC2), control nicotine and related alkaloid biosynthesis in Burley tobaccos. Mutations in either or both loci (nic1 and nic2) lead to low nicotine phenotypes with altered environmental stress responses. Here we show that the transcripts derived from the pathogenesis-related (PR) protein gene PR3b are alternatively spliced to a greater extent in the nic1 and nic2 mutants of Burley 21 tobacco and the nic1nic2 double mutant. The alternative splicing results in a deletion of 65 nucleotides and introduces a premature stop codon into the coding region of PR3b that leads to a significant reduction of PR3b specific chitinase activity. Assays of PR3b splicing in F-2 individuals derived from crosses between nic1 and nic2 mutants and wild-type plants showed that the splicing phenotype is controlled by the NIC1 and NIC2 loci, even though NIC1 and NIC2 are unlinked loci. Moreover, the transcriptional analyses showed that the splicing patterns of PR3b in the low-nicotine mutants were differentially regulated by jasmonate (JA) and ethylene (ET). These data suggest that the NIC1 and NIC2 loci display differential roles in regulating the alternative splicing of PR3b in Burley 21. The findings in this study have provided valuable information for extending our understanding of the broader effects of the low-nicotine mutants of Burley 21 and the mechanism by which JA and ET signalling pathways post-transcriptionally regulate the activity of PR3b protein.
机译:两个未链接的半显性基因座A(NIC1)和B(NIC2)控制白肋烟中的尼古丁和相关生物碱的生物合成。任一位点或两个位点(nic1和nic2)的突变都会导致尼古丁表型降低,环境胁迫反应也随之改变。在这里,我们显示了病原相关(PR)蛋白基因PR3b的转录物在白肋烟21的nic1和nic2突变体以及nic1nic2双突变体中被更大程度地剪接。选择性剪接导致65个核苷酸的缺失,并将过早的终止密码子引入PR3b的编码区,这导致PR3b特异性几丁质酶活性的显着降低。从nic1和nic2突变体与野生型植物之间的杂交获得的F-2个体中PR3b剪接的分析表明,即使NIC1和NIC2是未连接的基因座,剪接表型也受NIC1和NIC2基因座控制。此外,转录分析表明低烟碱突变体中PR3b的剪接模式受茉莉酸(JA)和乙烯(ET)的差异调节。这些数据表明,NIC1和NIC2基因座在调节Burley 21中PR3b的可变剪接中显示出不同的作用。这项研究的发现为扩展我们对Burley 21和Nitrogen的低烟碱突变体的更广泛影响的理解提供了有价值的信息。 JA和ET信号通路在转录后调控PR3b蛋白活性的机制。

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