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蒺藜苜蓿 Yellow Stripe-Like7 基因编码一个参与共生固氮的肽转运蛋白。

Medicago truncatula Yellow Stripe-Like7 encodes a peptide transporter participating in symbiotic nitrogen fixation.

机构信息

Centro de Biotecnología y Genómica de Plantas (UPM-INIA). Universidad Politécnica de Madrid, Campus de Montegancedo, Madrid, Spain.

Department of Chemistry and Biochemistry, Worcester Polytechnic Institute, Worcester, Massachusetts, USA.

出版信息

Plant Cell Environ. 2021 Jun;44(6):1908-1920. doi: 10.1111/pce.14059. Epub 2021 Apr 13.

Abstract

Yellow Stripe-Like (YSL) proteins are a family of plant transporters that are typically involved in transition metal homeostasis. Three of the four YSL clades (I, II and IV) transport metals complexed with the non-proteinogenic amino acid nicotianamine or its derivatives. No such capability has been shown for any member of clade III, but the link between these YSLs and metal homeostasis could be masked by functional redundancy. We studied the role of the clade III YSL protein MtSYL7 in Medicago truncatula nodules. MtYSL7, which encodes a plasma membrane-bound protein, is mainly expressed in the pericycle and cortex cells of the root nodules. Yeast complementation assays revealed that MtSYL7 can transport short peptides. M. truncatula transposon insertion mutants with decreased expression of MtYSL7 had lower nitrogen fixation rates and showed reduced plant growth whether grown in symbiosis with rhizobia or not. YSL7 mutants accumulated more copper and iron in the nodules, which is likely to result from the increased expression of iron uptake and delivery genes in roots. Taken together, these data suggest that MtYSL7 plays an important role in the transition metal homeostasis of nodules and symbiotic nitrogen fixation.

摘要

黄色条纹样(YSL)蛋白是一类植物转运蛋白,通常参与过渡金属的内稳态。四个 YSL 分支(I、II 和 IV)中的三个(I、II 和 IV)运输与非蛋白氨基酸烟碱酸或其衍生物结合的金属。尚未发现任何 III 分支成员具有这种能力,但这些 YSL 与金属内稳态之间的联系可能因功能冗余而被掩盖。我们研究了 clade III YSL 蛋白 MtSYL7 在 Medicago truncatula 根瘤中的作用。编码质膜结合蛋白的 MtYSL7 主要在根瘤的周质细胞和皮层细胞中表达。酵母互补测定表明 MtSYL7 可以转运短肽。MtYSL7 表达降低的 M. truncatula 转座子插入突变体的固氮率较低,无论与根瘤菌共生与否,其生长都受到抑制。YSL7 突变体在根瘤中积累了更多的铜和铁,这可能是由于根中铁摄取和输送基因的表达增加所致。总之,这些数据表明 MtYSL7 在根瘤和共生固氮的过渡金属内稳态中发挥着重要作用。

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