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Regulation of Compound Leaf Development in Medicago truncatula by Fused Compound Leaf1 a Class M KNOX Gene

机译:M类NOX基因融合叶Leaf1对Medi藜复合叶发育的调控

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摘要

Medicago truncatula is a legume species belonging to the inverted repeat lacking clade (IRLC) with trifoliolate compound leaves. However, the regulatory mechanisms underlying development of trifoliolate leaves in legumes remain largely unknown. Here, we report isolation and characterization of fused compound leaf1 (fcl1) mutants of M. truncatula. Phenotypic analysis suggests that FCL1 plays a positive role in boundary separation and proximal-distal axis development of compound leaves. Map-based cloning indicates that FCL1 encodes a class M KNOX protein that harbors the MEINOX domain but lacks the homeodomain. Yeast two-hybrid assays show that FCL1 interacts with a subset of Arabidopsis thaliana BEL1-like proteins with slightly different substrate specificities from the Arabidopsis homolog KNATM-B. Double mutant analyses with M. truncatula single leaflet1 (sgl1) and palmate-like pentafoliata1 (palm1) leaf mutants show that fcl1 is epistatic to palm1 and sgl1 is epistatic to fcl1 in terms of leaf complexity and that SGL1 and FCL1 act additively and are required for petiole development. Previous studies have shown that the canonical KNOX proteins are not involved in compound leaf development in IRLC legumes. The identification of FCL1 supports the role of a truncated KNOX protein in compound leaf development in M. truncatula.
机译:ca藜苜蓿是一种豆科植物,属于三叶小叶复叶的倒缺重复枝(IRLC)。然而,豆科植物三叶小叶发育的潜在调控机制仍然未知。在这里,我们报告分离和表征的M. truncatula融合的复合leaf1(fcl1)突变体。表型分析表明FCL1在复合叶的边界分离和近端-远端轴的发育中发挥积极作用。基于图的克隆表明FCL1编码具有MEINOX域但缺乏同源域的M类KNOX蛋白。酵母两杂交试验表明,FCL1与拟南芥BEL1样蛋白的一部分相互作用,其底物特异性与拟南芥同源KNATM-B略有不同。截叶分枝杆菌单小叶1(sgl1)和棕榈酸酯样pentafoliata1(palm1)叶突变体的双突变体分析显示,就叶的复杂性和 SGL1 而言,fcl1对palm1上位,而sgl1对fcl1上位。和 FCL1 起加和作用,是叶柄发育所必需的。先前的研究表明,规范的KNOX蛋白不参与IRLC豆科植物的复合叶片发育。 FCL1 的鉴定支持了截短的KNOX蛋白在 M中叶片复合发育中的作用。 truncatula

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