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Cytokinin Regulates Compound Leaf Development in Tomato

机译:细胞分裂素调节番茄复合叶的发育

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摘要

Leaf shape diversity relies on transient morphogenetic activity in leaf margins. However, how this morphogenetic capacity is maintained is still poorly understood. Here, we uncover a role for the hormone cytokinin (CK) in the regulation of morphogenetic activity of compound leaves in tomato (Solanum lycopersicum). Manipulation of CK levels led to alterations in leaf complexity and revealed a unique potential for prolonged growth and morphogenesis in tomato leaves. We further demonstrate that the effect of CK on leaf complexity depends on proper localization of auxin signaling. Genetic analysis showed that reduction of CK levels suppresses the effect of Knotted1 like homeobox (KNOXI) proteins on leaf shape and that CK can substitute for KNOXI activity at the leaf margin, suggesting that CK mediates the activity of KNOXI proteins in the regulation of leaf shape. These results imply that CK regulates flexible leaf patterning by dynamic interaction with additional hormones and transcription factors.
机译:叶片形状的多样性取决于叶片边缘的瞬时形态发生活性。然而,如何维持这种形态发生能力仍然知之甚少。在这里,我们发现激素细胞分裂素(CK)在调节番茄(Solanum lycopersicum)复合叶片的形态发生活性中的作用。 CK水平的操纵导致叶片复杂性的变化,并揭示了延长番茄叶片生长和形态发生的独特潜力。我们进一步证明了CK对叶片复杂性的影响取决于植物生长素信号的正确定位。遗传分析表明,降低CK水平可抑制Knotted1像同源异型框(KNOXI)蛋白对叶片形状的影响,并且CK可以替代叶边缘的KNOXI活性,表明CK介导了KNOXI蛋白在调节叶片形状中的活性。 。这些结果表明,CK通过与其他激素和转录因子的动态相互作用来调节灵活的叶片模式。

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