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Tomato HAIRY MERISTEM genes are involved in meristem maintenance and compound leaf morphogenesis

机译:番茄HAIRY MERISTEM基因参与分生组织维持和复合叶片形态发生

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Functional analysis of the tomato HAM genes suggest that they are involved in critical meristem functions and play homologous roles in compound leaf development.The HAIRY MERISTEM (HAM) genes function in meristem maintenance but play minor roles in the morphogenesis of a simple leaf that is determinate. Here, we functionally analyzed HAM genes in tomato and uncovered their involvement in compound leaf morphogenesis. Tomato encodes three HAM homologs, of which SlHAM and SlHAM2 (SlHAMs) are guided for cleavage by microRNA171 and are abundant in the shoot and floral meristems as well as in the compound leaf primordia. We found that SlHAMs silencing led to overproliferation of cells in the periphery of the meristems where SlHAM is localized. As in meristems, leaf-specific silencing of SlHAMs provoked overproliferation of meristematic cells in the organogenic compound leaf rachis. We further demonstrate that the meristematic cell overproliferation in both meristems and leaves was in part due to the misexpression of the stem cell regulator WUSCHEL, previously shown to be induced by cytokinin. Strikingly, reduction of cytokinin levels in SlHAMs-silenced leaves completely suppressed the overproliferation phenotype, suggesting a regulatory link between SlHAMs and cytokinin, a key hormone found to promote indeterminacy in meristems and leaves. Taken together, our data provide evidence that in addition to their conserved function in meristem maintenance, SlHAMs are also required for the proper morphogenesis of the compound leaf.
机译:番茄HAM基因的功能分析表明它们参与关键的分生组织功能并在复叶发育中起同源作用.HAIRY MERISTEM(HAM)基因在分生组织维持中起作用,但在确定的简单叶片的形态发生中起较小作用。在这里,我们功能上分析了番茄中的HAM基因,并发现了它们参与复合叶片形态发生的过程。番茄编码三个HAM同源物,其中SlHAM和SlHAM2(SlHAMs)被microRNA171引导切割,并且在枝条和花分生组织以及复合叶原基中含量丰富。我们发现SlHAMs沉默导致SlHAM所在的分生组织外围细胞过度增殖。与分生组织中一样,SlHAMs的叶片特异性沉默导致器官形成的复合叶片中的分生细胞过度增殖。我们进一步证明,分生组织和叶片中的分生细胞过度增殖部分是由于干细胞调节剂WUSCHEL的错误表达,以前显示是由细胞分裂素诱导的。令人惊讶的是,SlHAMs沉默的叶片中细胞分裂素水平的降低完全抑制了过度增殖表型,这表明SlHAMs与细胞分裂素之间存在调节联系,细胞分裂素是一种发现的能促进分生组织和叶片不确定性的关键激素。综上所述,我们的数据提供了证据,除了它们在分生组织维持中的保守功能外,SlHAMs也是复合叶正常形态发生所必需的。

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