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The roles of OVATE and other elongation genes in regulating proximal-distal patterning of tomato fruit.

机译:OVATE和其他延伸基因在调节番茄果实近端-远端模式中的作用。

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摘要

Domestication of tomato (Solanum lycopersicum) has resulted in a variety of fruit shapes from flat to very elongated. The elongated shape is a common feature that distinguishes many cultivated tomatoes from the undomesticated types, and it is mainly controlled by three loci, ovate, sun and fs8.1. We performed detailed morphological analyses of the reproductive and vegetative organs, which demonstrated that ovate, sun and fs8.1 regulate unique aspects of ovary and fruit elongation and in different temporal manners. The synergistic interaction between sun and ovate or fs8.1 suggested that the pathways involving SUN, OVATE and the gene(s) underlying fs8.1 may converge at a common node. We also conducted a transcriptome comparison analysis between the triple mutant sun/ovate/fs8.1 and wild type by RNA-seq using reproductive meristems and young flower buds. This study revealed changes in the transcription profile possibly caused by the combined effects of the three mutations. To gain insights into the role of OVATE in regulating fruit shape, we searched for its genetic and protein interactors. A synergistic interaction was found between ovate and suppressor of ovate 1 (sov1) in controlling ovary and fruit elongation. Tomato OVATE family protein 20 ( SlOFP20) was identified as a candidate gene underlying the sov1 locus. Yeast two-hybrid (Y2H) experiments showed that OVATE interacted with Tonneau1 Recruiting Motif (TRM) proteins, which are a part of a protein complex regulating the formation of preprophase band and organization of cortical microtubule (MT) array. Transient co-expression of OVATE or SlOFP20 with putative MT-associated SlTRMs in N. benthamiana resulted in relocalizations of SlOFPs and SlTRMs. Our findings have shed new light on the roles of OFPs in proximal-distal fruit patterning and provided insights into fundamental aspects of plant organ growth.
机译:番茄(Solanum lycopersicum)的驯化导致各种水果形状从扁平到非常细长。细长的形状是一个共同的特征,可以将许多栽培的西红柿与未驯养的西红柿区分开,并且主要受三个基因座,卵形,阳光和fs8.1的控制。我们对生殖和营养器官进行了详细的形态学分析,结果表明卵形,阳光和fs8.1以不同的时间方式调节卵巢和果实伸长的独特方面。 sun和卵形或fs8.1之间的协同相互作用表明,涉及SUN,OVATE和fs8.1潜在基因的途径可能会汇聚在一个公共节点上。我们还使用生殖分生组织和幼芽,通过RNA-seq对三突变体sun / ovate / fs8.1和野生型之间进行了转录组比较分析。这项研究揭示了转录谱的变化,可能是这三种突变的共同作用引起的。为了深入了解OVATE在调节果实形状中的作用,我们搜索了其遗传和蛋白质相互作用因子。发现在控制卵巢和果实伸长中,卵酸盐和卵酸盐1的抑制剂(sov1)之间存在协同作用。番茄OVATE家族蛋白20(S10FP20)被鉴定为sov1基因座的候选基因。酵母两杂交(Y2H)实验表明,OVATE与Tonneau1募集基序(TRM)蛋白相互作用,后者是调节前相带形成和皮层微管(MT)阵列组织的蛋白复合物的一部分。 OVATE或SlOFP20与本底烟草中与MT相关的SlTRM的瞬时共表达导致SlOFP和SlTRM的重新定位。我们的发现为OFP在近端-远端果实模式中的作用提供了新的线索,并提供了对植物器官生长基本方面的见识。

著录项

  • 作者

    Wu, Shan.;

  • 作者单位

    The Ohio State University.;

  • 授予单位 The Ohio State University.;
  • 学科 Horticulture.;Genetics.;Botany.
  • 学位 Ph.D.
  • 年度 2015
  • 页码 178 p.
  • 总页数 178
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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