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两个 MADS-box 基因的相互作用导致全肉型番茄生长表型的分化。

Interaction of two MADS-box genes leads to growth phenotype divergence of all-flesh type of tomatoes.

机构信息

Université de Toulouse, INRAe/INP Toulouse, UMR990 Génomique et Biotechnologie des Fruits, Avenue de l'Agrobiopole, Castanet-Tolosan, F-31326, France.

Laboratoire de Recherche en Sciences Végétales - UMR5546, Université de Toulouse, CNRS, UPS, Toulouse, INP, France.

出版信息

Nat Commun. 2021 Nov 25;12(1):6892. doi: 10.1038/s41467-021-27117-7.

Abstract

All-flesh tomato cultivars are devoid of locular gel and exhibit enhanced firmness and improved postharvest storage. Here, we show that SlMBP3 is a master regulator of locular tissue in tomato fruit and that a deletion at the gene locus underpins the All-flesh trait. Intriguingly, All-flesh varieties lack the deleterious phenotypes reported previously for SlMBP3 under-expressing lines and which preclude any potential commercial use. We resolve the causal factor for this phenotypic divergence through the discovery of a natural mutation at the SlAGL11 locus, a close homolog of SlMBP3. Misexpressing SlMBP3 impairs locular gel formation through massive transcriptomic reprogramming at initial phases of fruit development. SlMBP3 influences locule gel formation by controlling cell cycle and cell expansion genes, indicating that important components of fruit softening are determined at early pre-ripening stages. Our findings define potential breeding targets for improved texture in tomato and possibly other fleshy fruits.

摘要

全肉型番茄品种缺乏腔室凝胶,表现出增强的硬度和改善的采后贮藏性。在这里,我们表明 SlMBP3 是番茄果实腔室组织的主要调节因子,而该基因座的缺失是全肉型性状的基础。有趣的是,全肉型品种缺乏以前报道的 SlMBP3 表达下调系中存在的有害表型,这排除了任何潜在的商业用途。我们通过在 SlAGL11 基因座发现一个自然突变来解决这种表型差异的因果因素,该基因座是 SlMBP3 的密切同源物。SlMBP3 通过在果实发育的初始阶段大规模转录组重编程来干扰腔室凝胶的形成。SlMBP3 通过控制细胞周期和细胞扩展基因来影响腔室凝胶的形成,这表明果实软化的重要组成部分是在早期预成熟阶段决定的。我们的研究结果为改善番茄和可能其他肉质水果的质地提供了潜在的育种目标。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/301f/8616914/2991b7d880c7/41467_2021_27117_Fig1_HTML.jpg

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