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Reporter gene expression reveals precise auxin synthesis sites during fruit and root development in wild strawberry

机译:记者基因表达揭示了野草莓果实和根部发育过程中精确的生长素合成位点

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摘要

The critical role of auxin in strawberry fruit set and receptacle enlargement was demonstrated previously. While fertilization is known to trigger auxin biosynthesis, the specific tissue source of fertilization-induced auxin is not well understood. Here, the auxin reporter DR5ver2::GUS was introduced into wild strawberry (Fragaria vesca) to reveal auxin distribution in the seed and fruit receptacle pre- and post-fertilization as well as in the root. In addition, the expression of TAR and YUCCA genes coding for enzymes catalysing the two-step auxin biosynthesis pathway was investigated using their respective promoters fused to the β-glucuronidase (GUS) reporter. Two FveTARs and four FveYUCs were shown to be expressed primarily in the endosperm and embryo inside the achenes as well as in root tips and lateral root primordia. Expression of these reporters in dissected tissues provided more detailed and precise spatial (cell and tissue) and temporal (pre- and post-fertilization) information on where auxin is synthesized and accumulates than previous studies in strawberry. Moreover, we generated CRISPR-mediated knock-out mutants of FveYUC10, the most abundant YUC in seeds; the mutants had a lower free auxin level in young fruit, but displayed no obvious morphological phenotypes. However, overexpression of FveYUC10 resulted in elongated hypocotyls in Arabidopsis caused by elevated auxin level. Overall, the study revealed auxin accumulation in the chalazal seed coat, embryo, receptacle vasculature, root tip, and lateral root primordia and highlighted the endosperm as the main auxin biosynthesis site for fruit set.
机译:以前已经证明了生长素在草莓果实结实和容器扩大中的关键作用。尽管已知受精会触发植物生长素的生物合成,但人们对受精诱导的植物生长素的特定组织来源知之甚少。在这里,将植物生长素报告基因DR5ver2 :: GUS引入野生草莓(Fragaria vesca)中,以揭示植物生长素在受精前后的种子和果实容器以及根中的分布。此外,使用各自与β-葡萄糖醛酸苷酶(GUS)报告基因融合的启动子研究了编码催化两步生长素生物合成途径的酶的TAR和YUCCA基因的表达。已显示两个FveTAR和四个FveYUC主要在瘦果内部的胚乳和胚中以及根尖和侧根原基中表达。这些报告基因在解剖组织中的表达提供了关于生长素合成和积累位置的更详细,精确的空间(细胞和组织)和时间(受精前和受精后)信息,这比以前在草莓中的研究要多。此外,我们产生了CRISPR介导的FveYUC10的敲除突变体,FveYUC10是种子中最丰富的YUC。这些突变体在幼果中的游离生长素水平较低,但没有明显的形态表型。但是,FveYUC10的过表达导致拟南芥中生长素水平升高引起的下胚轴延长。总体而言,该研究揭示了生长素在Chalazal种皮,胚,容器脉管系统,根尖和侧根原基中的积累,并着重指出了胚乳是果实固定的主要生长素生物合成部位。

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