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蔗糖合酶的抑制影响番茄中的生长素信号传导和叶片形态。

Suppression of sucrose synthase affects auxin signaling and leaf morphology in tomato.

作者信息

Goren Shlomo, Lugassi Nitsan, Stein Ofer, Yeselson Yelena, Schaffer Arthur A, David-Schwartz Rakefet, Granot David

机构信息

Institute of Plant Sciences, Agricultural Research Organization, The Volcani Center, Bet Dagan, Israel.

出版信息

PLoS One. 2017 Aug 7;12(8):e0182334. doi: 10.1371/journal.pone.0182334. eCollection 2017.

Abstract

Metabolic enzymes have been found to play roles in plant development. Sucrose synthase (SUS) is one of the two enzyme families involved in sucrose cleavage in plants. In tomato, six SUS genes have been found. We generated transgenic tomato plants with RNAi suppression of SlSUS1, SlSUS3 and SlSUS4 genes. Independent transgenic lines with RNAi suppression of more than one SUS gene exhibited morphological effects on their cotyledons and leaf structure, but there were no significant effects on their carbohydrate levels, demonstrating that SUS has a developmental function, in addition to its metabolic function. Shoot apices of the transgenic lines showed elevated expression of JAGGED (JAG) and the auxin transporter PIN1. In a PIN1-GFP fusion reporter/SUS-RNAi hybrid, PIN1-GFP patterns were altered in developing leaves (as compared to control plants), indicating that SlSUS suppression alters auxin signaling. These results suggest possible roles for SUS in the regulation of plant growth and leaf morphology, in association with the auxin-signaling pathway.

摘要

已发现代谢酶在植物发育中发挥作用。蔗糖合酶(SUS)是参与植物蔗糖裂解的两个酶家族之一。在番茄中,已发现六个SUS基因。我们构建了对SlSUS1、SlSUS3和SlSUS4基因进行RNA干扰抑制的转基因番茄植株。对多个SUS基因进行RNA干扰抑制的独立转基因株系在其子叶和叶片结构上表现出形态学效应,但对其碳水化合物水平没有显著影响,这表明SUS除了具有代谢功能外,还具有发育功能。转基因株系的茎尖显示JAGGED(JAG)和生长素转运蛋白PIN1的表达升高。在PIN1-GFP融合报告基因/SUS-RNAi杂交植株中,与对照植株相比,发育叶片中的PIN1-GFP模式发生了改变,这表明SlSUS抑制改变了生长素信号传导。这些结果表明,SUS可能与生长素信号通路相关,在调节植物生长和叶片形态方面发挥作用。

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