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Direct interaction of ligand-receptor pairs specifying stomatal patterning

机译:配体-受体对的直接相互作用指定了气孔图案

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Valves on the plant epidermis called stomata develop according to positional cues, which likely involve putative ligands (EPIDERMAL PATTERNING FACTORS [EPFs]) and putative receptors (ERECTA family receptor kinases and TOO MANY MOUTHS [TMM]) in Arabidopsis. Here we report the direct, robust, and saturable binding of bioactive EPF peptides to the ERECTA family. In contrast, TMM exhibits negligible binding to EPF1 but binding to EPF2. The ERECTA family forms receptor homomers in vivo. On the other hand, TMM associates with the ERECTA family but not with itself. While ERECTA family receptor kinases exhibit complex redundancy, blocking ERECTA and ERECTA-LIKE1 (ERL1) signaling confers specific insensitivity to EPF2 and EPF1, respectively. Our results place the ERECTA family as the primary receptors for EPFs with TMM as a signal modulator and establish EPF2-ERECTA and EPF1-ERL1 as ligand-receptor pairs specifying two steps of stomatal development: initiation and spacing divisions.
机译:植物表皮上的被称为气孔的阀门根据位置线索而发展,在拟南芥中可能涉及推定的配体(表皮形成因子[EPFs])和推定的受体(ERECTA家族受体激酶和太多薄荷[TMM])。在这里,我们报告生物活性EPF肽与ERECTA家族的直接,牢固和饱和结合。相反,TMM与EPF1的结合可忽略不计,但与EPF2的结合则可忽略不计。 ERECTA家族在体内形成受体同聚物。另一方面,TMM与ERECTA系列相关,但与自身无关。尽管ERECTA家族的受体激酶表现出复杂的冗余性,但阻断ERECTA和ERECTA-LIKE1(ERL1)信号分别赋予EPF2和EPF1特定的不敏感性。我们的结果将ERECTA家族作为EMM的主要受体,以TMM作为信号调节剂,并将EPF2-ERECTA和EPF1-ERL1建立为配体-受体对,指定了气孔发育的两个步骤:起始和间隔分裂。

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