首页> 外文期刊>Molecular Plant >The Medicago truncatula sucrose transporter family: characterization and implication of key members in carbon partitioning towards arbuscular mycorrhizal fungi.
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The Medicago truncatula sucrose transporter family: characterization and implication of key members in carbon partitioning towards arbuscular mycorrhizal fungi.

机译:ca藜苜蓿蔗糖转运蛋白家族:碳分配对丛枝菌根真菌的关键成员的表征和意义。

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摘要

We identified de novo sucrose transporter (SUT) genes involved in long-distance transport of sucrose from photosynthetic source leaves towards sink organs in the model leguminous species Medicago truncatula. The identification and functional analysis of sugar transporters provide key information on mechanisms that underlie carbon partitioning in plant-microorganism interactions. In that way, full-length sequences of the M. truncatula SUT (MtSUT) family were retrieved and biochemical characterization of MtSUT members was performed by heterologous expression in yeast. The MtSUT family now comprises six genes which distribute among Dicotyledonous clades. MtSUT1-1 and MtSUT4-1 are key members in regard to their expression profiles in source leaves and sink roots and were characterized as functional H+/sucrose transporters. Physiological and molecular responses to phosphorus supply and inoculation by the arbuscular mycorrhizal fungus (AMF) Glomus intraradices was studied by gene expression and sugar quantification analyses. Sucrose represents the main sugar transport form in M. truncatula and the expression profiles of MtSUT1-1, MtSUT2, and MtSUT4-1 highlight a fine-tuning regulation for beneficial sugar fluxes towards the fungal symbiont. Taken together, these results suggest distinct functions for proteins from the SUT1, SUT2, and SUT4 clades in plant and in biotrophic interactions.
机译:我们确定了从头合成蔗糖转运蛋白(SUT)基因,该蔗糖从光合作用源叶片向模型豆科植物紫花苜蓿的汇槽器官进行长距离转运。糖转运蛋白的鉴定和功能分析提供了有关植物-微生物相互作用中碳分配基础机制的关键信息。以这种方式,检索了沙眼衣原体SUT(MtSUT)家族的全长序列,并通过在酵母中的异源表达进行了MtSUT成员的生化表征。现在,MtSUT家族包含分布在双子叶进化枝中的六个基因。就其在源叶和汇根中的表达谱而言,MtSUT1-1和MtSUT4-1是关键成员,并被表征为功能性H + /蔗糖转运蛋白。通过基因表达和糖定量分析研究了丛枝菌根真菌(AMF)Glomus intraradices对磷供应和接种的生理和分子响应。蔗糖代表截枝分枝杆菌中的主要糖转运形式,MtSUT1-1,MtSUT2和MtSUT4-1的表达谱突出了对真菌共生体有益糖通量的微调调控。综上所述,这些结果表明植物和生物营养相互作用中SUT1,SUT2和SUT4进化枝的蛋白质具有不同的功能。

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