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Genome-Wide Transcriptional Changes and Lipid Profile Modifications Induced by Medicago truncatula N5 Overexpression at an Early Stage of the Symbiotic Interaction with Sinorhizobium meliloti

机译:在与苜蓿中华根瘤菌共生相互作用的早期由苜蓿N5过表达诱导的全基因组转录变化和脂质谱修饰。

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摘要

Plant lipid-transfer proteins (LTPs) are small basic secreted proteins, which are characterized by lipid-binding capacity and are putatively involved in lipid trafficking. LTPs play a role in several biological processes, including the root nodule symbiosis. In this regard, the Medicago truncatula nodulin 5 (MtN5) LTP has been proved to positively regulate the nodulation capacity, controlling rhizobial infection and nodule primordia invasion. To better define the lipid transfer protein MtN5 function during the symbiosis, we produced MtN5-downregulated and -overexpressing plants, and we analysed the transcriptomic changes occurring in the roots at an early stage of Sinorhizobium meliloti infection. We also carried out the lipid profile analysis of wild type (WT) and MtN5-overexpressing roots after rhizobia infection. The downregulation of MtN5 increased the root hair curling, an early event of rhizobia infection, and concomitantly induced changes in the expression of defence-related genes. On the other hand, MtN5 overexpression favoured the invasion of the nodules by rhizobia and determined in the roots the modulation of genes that are involved in lipid transport and metabolism as well as an increased content of lipids, especially galactolipids that characterize the symbiosome membranes. Our findings suggest the potential participation of LTPs in the synthesis and rearrangement of membranes occurring during the formation of the infection threads and the symbiosome membrane.
机译:植物脂质转移蛋白(LTP)是小的基本分泌蛋白,其特征在于脂质结合能力,并可能参与脂质运输。 LTP在几种生物学过程中起作用,包括根瘤共生。在这方面,已证明t藜苜蓿结节蛋白5(MtN5)LTP可以积极调节结瘤能力,控制根瘤菌感染和原发结节侵袭。为了更好地定义共生过程中脂质转运蛋白MtN5的功能,我们生产了MtN5下调和过表达的植物,并分析了苜蓿中华根瘤菌感染初期根部发生的转录组变化。我们还进行了根瘤菌感染后野生型(WT)和过表达MtN5的根的脂质谱分析。 MtN5的下调增加了根毛的卷发,这是根瘤菌感染的早期事件,并随之引起了防御相关基因表达的变化。另一方面,MtN5的过表达有利于根瘤菌侵染根瘤,并在根部确定了参与脂质转运和代谢的基因的调制以及脂质含量的增加,尤其是表征共生体膜的半乳糖脂。我们的研究结果表明LTPs可能参与感染线和共生体膜形成过程中发生的膜的合成和重排。

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