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Bypassing Negative Epistasis on Yield in Tomato Imposed by a Domestication Gene

机译:绕过驯化基因施加的番茄产量的负面简历

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摘要

Selection for inflorescence architecture with improved flower production and yield is common to many domesticated crops. However, tomato inflorescences resemble wild ancestors, and breeders avoided excessive branching because of low fertility. We found branched variants carry mutations in two related transcription factors that were selected independently. One founder mutation enlarged the leaf-like organs on fruits and was selected as fruit size increased during domestication. The other mutation eliminated the flower abscission zone, providing "jointless" fruit stems that reduced fruit dropping and facilitated mechanical harvesting. Stacking both beneficial traits caused undesirable branching and sterility due to epistasis, which breeders overcame with suppressors. However, this suppression restricted the opportunity for productivity gains from weak branching. Exploiting natural and engineered alleles for multiple family members, we achieved a continuum of inflorescence complexity that allowed breeding of higher-yielding hybrids. Characterizing and neutralizing similar cases of negative epistasis could improve productivity in many agricultural organisms.
机译:许多驯化作物都会选择花序结构,以提高花朵产量和产量。然而,西红柿的花序类似于野生祖先,由于生育率低,育种人员避免了过度分枝。我们发现分支变体携带两个独立选择的相关转录因子的突变。一个创始人突变扩大了果实上的叶状器官,并在驯化过程中随着果实大小的增加而被选中。另一个突变消除了花脱落区,提供了“无缝”的果茎,减少了果实脱落,并促进了机械收获。由于上位性,这两个有利性状的叠加导致了不受欢迎的分枝和不育,育种家用抑制因子克服了上位性。然而,这种抑制限制了从薄弱的分支中提高生产率的机会。利用多个家族成员的天然和工程等位基因,我们实现了花序复杂性的连续性,从而可以培育高产杂交种。描述和中和负上位性的类似病例可以提高许多农业生物的生产力。

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  • 来源
    《Cell》 |2017年第6期|共26页
  • 作者单位

    Cold Spring Harbor Lab Cold Spring Harbor NY 11724 USA;

    Cold Spring Harbor Lab Cold Spring Harbor NY 11724 USA;

    Hebrew Univ Jerusalem Fac Agr IL-76100 Rehovot Israel;

    Hebrew Univ Jerusalem Fac Agr IL-76100 Rehovot Israel;

    Cold Spring Harbor Lab Cold Spring Harbor NY 11724 USA;

    Wonkwang Univ Div Biol Sci Iksan 54538 Jeonbuk South Korea;

    Weizmann Inst Sci Dept Plant &

    Environm Sci IL-76100 Rehovot Israel;

    Cold Spring Harbor Lab Cold Spring Harbor NY 11724 USA;

    Univ Georgia Inst Plant Breeding Genet &

    Genom Athens GA 30602 USA;

    Univ Georgia Inst Plant Breeding Genet &

    Genom Athens GA 30602 USA;

    Boyce Thompson Inst Plant Res Ithaca NY 14853 USA;

    Hebrew Univ Jerusalem Fac Agr IL-76100 Rehovot Israel;

    Weizmann Inst Sci Dept Plant &

    Environm Sci IL-76100 Rehovot Israel;

    Cold Spring Harbor Lab Cold Spring Harbor NY 11724 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 细胞生物学;
  • 关键词

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