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Diversification of cytokinin phosphotransfer signaling genes in Medicago truncatula and other legume genomes

机译:苜蓿和其他豆科植物基因组中细胞分裂素磷酸转移信号基因的多样化

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摘要

BackgroundLegumes can establish on nitrogen-deprived soils a symbiotic interaction with Rhizobia bacteria, leading to the formation of nitrogen-fixing root nodules. Cytokinin phytohormones are critical for triggering root cortical cell divisions at the onset of nodule initiation. Cytokinin signaling is based on a Two-Component System (TCS) phosphorelay cascade, involving successively Cytokinin-binding Histidine Kinase receptors, phosphorelay proteins shuttling between the cytoplasm and the nucleus, and Type-B Response Regulator (RRB) transcription factors activating the expression of cytokinin primary response genes. Among those, Type-A Response Regulators (RRA) exert a negative feedback on the TCS signaling. To determine whether the legume plant nodulation capacity is linked to specific features of TCS proteins, a genome-wide identification was performed in six legume genomes (Cajanus cajan, pigeonpea; Cicer arietinum, chickpea; Glycine max, soybean; Phaseolus vulgaris, common bean; Lotus japonicus; Medicago truncatula). The diversity of legume TCS proteins was compared to the one found in two non-nodulating species, Arabidopsis thaliana and Vitis vinifera, which are references for functional analyses of TCS components and phylogenetic analyses, respectively.
机译:背景豆科植物可以在氮缺乏的土壤上建立与根瘤菌的共生相互作用,从而导致固氮根瘤的形成。细胞分裂素植物激素对于在结节开始时触发根皮层细胞分裂至关重要。细胞分裂素信号传导基于两组分系统(TCS)磷酸化级联反应,依次涉及细胞分裂素结合的组氨酸激酶受体,在细胞质和细胞核之间穿梭的磷酸化蛋白,以及激活B细胞表达的B型应答调节因子(RRB)转录因子。细胞分裂素主要反应基因。其中,A型响应调节器(RRA)对TCS信号施加负反馈。为了确定豆科植物的结瘤能力是否与TCS蛋白的特定特征有关,在六个豆科植物基因组中进行了全基因组鉴定(Cajanus cajan,木豆; Cicer arietinum,鹰嘴豆; Glycine max,大豆;菜豆,普通豆;大豆)。莲花japonicus;苜蓿truncatula)。将豆类TCS蛋白的多样性与在两个非结瘤物种拟南芥和葡萄属中发现的一种进行了比较,这两个物种分别是TCS成分的功能分析和系统发育分析的参考。

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