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MuMADS1 and MaOFP1 regulate fruit quality in a tomato ovate mutant

机译:MuMADS1和MaOFP1调节番茄卵形突变体中的果实品质

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Fruit ripening and quality are common botanical phenomena that are closely linked and strictly regulated by transcription factors. It was previously discovered that a banana MADS?¢????box protein named MuMADS1 interacted with an ovate family protein named MaOFP1 to regulate banana fruit ripening. To further investigate the role of MuMADS1 and MaOFP1 in the regulation of fruit quality, a combination of genetic transformation and transcriptional characterization was used. The results indicated that the co?¢????expression of MuMADS1 and MaOFP1 in the ovate mutant could compensate for fruit shape and inferior qualities relating to fruit firmness, soluble solids and sugar content. The number of differentially expressed genes (DEGs) was 1395 in WT vs. ovate , with 883 up?¢????regulated and 512 down?¢????regulated genes, while the numbers of DEGs gradually decreased with the transformation of MuMADS1 and MaOFP1 into ovate. ?¢???? Starch and sucrose metabolism?¢???? constituted the primary metabolic pathway, and the gene numbers in this pathway were obviously different when MuMADS1 and MaOFP1 were integrated into ovate . A series of metabolic genes involved in cell wall biosynthesis were up?¢????regulated in the WT vs. ovate , which probably resulted in the firmer texture and lower sugar contents in the ovate fruit. These results demonstrate that MuMADS1 and MaOFP1 are coregulators of fruit quality, facilitating the dissection of the molecular mechanisms underlying fruit quality formation.
机译:果实成熟和品质是常见的植物现象,它们紧密相关并受转录因子严格调控。先前已经发现,名为MAMADS1的香蕉MADSα-盒蛋白与名为MaOFP1的卵形家族蛋白相互作用,以调节香蕉果实的成熟。为了进一步研究MuMADS1和MaOFP1在调节果实品质中的作用,使用了遗传转化和转录特征的组合。结果表明,在卵形突变体中MuMADS1和MaOFP1的共表达可以补偿果实形状和与果实硬度,可溶性固形物和糖含量有关的劣质。在WT与卵形中,差异表达基因(DEGs)的数目为1395,883个上调和512个下调的基因,而DEGs的数目随卵的转化逐渐减少。 MuMADS1和MaOFP1进入卵形。 ?¢ ????淀粉和蔗糖代谢?构成主要的代谢途径,当MuMADS1和MaOFP1整合到卵形物中时,该途径的基因数量明显不同。 WT与卵子相比,一系列参与细胞壁生物合成的代谢基因被上调,这可能导致卵子果实质地更坚硬,糖含量更低。这些结果表明,MuMADS1和MaOFP1是果实品质的核心调节剂,有助于剖析构成果实品质的分子机制。

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