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首页> 外文期刊>Plant and Cell Physiology >Arabidopsis SBP-Box Genes SPL10, SPL11 and SPL2 Control Morphological Change in Association with Shoot Maturation in the Reproductive Phase
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Arabidopsis SBP-Box Genes SPL10, SPL11 and SPL2 Control Morphological Change in Association with Shoot Maturation in the Reproductive Phase

机译:拟南芥SBP-Box基因SPL10,SPL11和SPL2控制形态变化与生殖期芽成熟相关

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摘要

Lateral organ traits in higher plants, such as lamina shape and trichome distribution, change gradually in association with shoot maturation. Regulation of this shoot maturation process in the vegetative phase has been extensively investigated, and members of the SQUAMOSA PROMOTER BINDING PROTEIN (SBP)-box family of transcription factors have been shown to be involved in this process. However, little is known about the regulation of shoot maturation in the reproductive phase. We analyzed SPL10, SPL11 and SPL2, which are closely related members of the SBP-box family in Arabidopsis. While cauline leaves had oblong lamina and few trichomes emerged on cauline leaves and flowers in wild-type plants, transgenic plants expressing a dominant repressor version of SPL10/11/2 had wide cauline leaves and many trichomes on their cauline leaves and flowers. These traits were similar to those observed at an earlier reproductive phase in wild-type plants. Loss-of-function mutants for spl10/11/2 showed similar phenotypes, indicating that SPL10, SPL11 and SPL2 redundantly control proper development of lateral organs in association with shoot maturation in the reproductive phase. In the vegetative phase, lamina shape was affected in SPL10 transgenic plants, while trichome distribution was not altered. This suggests partial regulation of shoot development in the vegetative phase by SPL10. Meanwhile, the wide cauline leaves observed in the transgenic plants and the mutants were similar to those of fruitfull (ful) mutants. We found that FUL expression in leaves increased with shoot maturation and changed in SPL10 transgenic plants. FUL may function in shoot maturation under the control of SBP-box proteins.
机译:高等植物的侧向器官性状,如叶片形状和毛状体分布,随着芽的成熟而逐渐变化。在营养阶段对该芽成熟过程的调控已得到广泛研究,并且已证明SQUAMOSA PROMOTER BINDING蛋白质(SBP)-box家族的转录因子家族成员参与了该过程。然而,对于生殖期芽成熟的调控知之甚少。我们分析了SPL10,SPL11和SPL2,它们是拟南芥中SBP-box家族的密切相关成员。尽管茎生叶具有长方形叶片,而野生型植物的茎生叶和花朵上几乎没有毛状体出现,但表达SPL10 / 11/2显性阻遏物的转基因植物茎叶宽而茎生叶上有许多毛状体。这些性状与在野生型植物的早期生殖阶段观察到的相似。 spl10 / 11/2的功能丧失突变体表现出相似的表型,表明SPL10,SPL11和SPL2与生殖期芽成熟相关联地多余地控制了侧器官的正常发育。在营养阶段,SPL10转基因植物的叶片形状受到影响,而毛状体的分布没有改变。这表明SPL10在营养阶段部分调控了芽的发育。同时,在转基因植物和突变体中观察到的宽茎茎叶与果实丰满的(ful)突变体相似。我们发现,叶片中的FUL表达随着芽的成熟而增加,并且在SPL10转基因植物中发生了变化。 FUL可能在SBP-box蛋白的控制下在枝条成熟中发挥作用。

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