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Tnt1 retrotransposon tagging of STF in Medicago truncatula reveals tight coordination of metabolic, hormonal and developmental signals during leaf morphogenesis

机译:截叶苜蓿STF的Tnt1逆转座子标签揭示了叶片形态发生过程中代谢,激素和发育信号的紧密协调

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摘要

Tnt1 (transposable element if Nicotiana tabaccum cell type 1) is one of the very few active LTR retrotransposons used for gene tagging in plants. In the model legume Medicago truncatula, Tnt1 has been effectively used as a gene knock-out tool to generate several very useful mutants. stenofolia (stf) is such a mutant identified by Tnt1 insertion in a WUSCHEL-like homeobox transcription factor. STF is required for blade outgrowth, leaf vascular patterning and female reproductive organ development in barrel medic and woodland tobacco. Using transcript profiling and metabolite analysis, we uncovered that mutant leaves are compromised in steady-state levels of multiple phytohormones, sugar metabolites and derivatives including flavonoids and polyamines. In the lam1 mutant (caused by deletion of the STF ortholog in Nicotiana sylvestris), while glucose, fructose, mannose, galactose, myo-inositol and aromatic aminoacids are dramatically reduced, sucrose is comparable to wild-type levels, and glutamine, proline, putrescine, nicotine and sorbitol are highly increased. We demonstrated that both stf and lam1 mutants accumulate reduced levels of free auxin and ABA in their leaves, and ectopic expression of STF in tobacco leads to auxin and cytokinin overproduction phenotypes including formation of tumors on the roots and crown. These data suggest that STF mediated integration of metabolic and hormonal signals are required for lateral organ morphogenesis and elaboration.
机译:Tnt1(如果为烟草的第1型烟草,则是可转座元件)是用于植物基因标记的极少数活性LTR逆转座子之一。在豆科植物紫花苜蓿模型中,Tnt1已被有效地用作基因敲除工具,以产生几种非常有用的突变体。细叶番荔枝(stf)是通过在WUSCHEL样同源盒转录因子中插入Tnt1鉴定的突变体。 STF是桶状药用和林地烟草叶片生长,叶片血管图案形成和女性生殖器官发育所必需的。使用转录谱分析和代谢物分析,我们发现突变叶在多种植物激素,糖代谢物和衍生物(包括类黄酮和多胺)的稳态水平上受到损害。在lam1突变体中(由于烟草中STF直系同源基因的缺失而导致),而葡萄糖,果糖,甘露糖,半乳糖,肌醇和芳香族氨基酸的含量大大降低,蔗糖与野生型水平相当,而谷氨酰胺,脯氨酸,腐胺,尼古丁和山梨糖醇大量增加。我们证明,stf和lam1突变体在其叶片中积累的游离生长素和ABA含量降低,而烟草中STF的异位表达会导致生长素和细胞分裂素的过量生产表型,包括在根部和冠部形成肿瘤。这些数据表明,STF介导的代谢和激素信号的整合是外侧器官形态发生和形成所必需的。

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