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Polar Auxin Transport Determines Adventitious Root Emergence and Growth in Rice

机译:极地生长素转运决定水稻不定根的发生和生长

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Flooding is a severe limitation for crop production worldwide. Unlike other crop plants, rice ( Oryza sativa L.) is well adapted to partial submergence rendering it a suitable crop plant to understand flooding tolerance. Formation of adventitious roots (ARs), that support or replace the main root system, is a characteristic response to flooding. In rice, AR emergence is induced by ethylene and in the dark where roots grow upward. We used the synthetic auxins 2,4-D and α-NAA, and the auxin transport inhibitor naphthylphtalamic acid (NPA) to study emergence, growth rate and growth angle of ARs. While α-NAA had no effect, NPA and 2,4-D reduced the root elongation rate and the angle with a stronger effect on root angle in the dark than in the light. Furthermore, NPA delayed emergence of AR primordia suggesting that efflux carrier-mediated auxin transport is required for all aspects of directed AR growth. Expression analysis using OsPIN:GUS reporter lines revealed that OsPIN1b and OsPIN1c promoters were active in the stele and root cap in accord with their predicted role in acropetal auxin transport. OsPIN2 was expressed at the root tip and was reduced in the presence of NPA. Auxin activity, detected with DR5:VENUS , increased in primordia following growth induction. By contrast, auxin activity was high in epidermal cells above primordia and declined following growth induction suggesting that auxin levels are antagonistically regulated in AR primordia and in epidermal cells above AR primordia suggesting that auxin signaling contributes to the coordinated processes of epidermal cell death and AR emergence.
机译:洪水是全球作物生产的严重限制。与其他农作物不同,水稻(Oryza sativa L.)非常适合部分淹没,使其成为了解洪水耐受性的合适农作物。支持或替换主根系统的不定根(AR)的形成是对洪水的典型响应。在水稻中,AR的产生是由乙烯引起的,而在黑暗中,根部向上生长。我们使用合成的生长素2,4-D和α-NAA,以及生长素转运抑制剂萘基邻苯二甲酸酯(NPA)研究ARs的出现,生长速率和生长角度。尽管α-NAA没有作用,但是NPA和2,4-D降低了根的伸长率和角度,在黑暗中比在光下对根角的影响更大。此外,NPA延迟了AR原基的出现,表明定向AR生长的所有方面都需要外排载体介导的生长素运输。使用OsPIN:GUS报告基因系的表达分析表明,OsPIN1b和OsPIN1c启动子在碑叶和根冠中具有活性,这与其在顶生长素运输中的预测作用相符。 OsPIN2在根尖表达,并在存在NPA时降低。用DR5:VENUS检测到的生长素活性在生长诱导后的原基中增加。相比之下,生长素活性在原基之上的表皮细胞中较高,并在生长诱导后下降,这表明生长素水平在AR原基中和AR原基之上的表皮细胞中受到拮抗调节,表明生长素信号传导有助于表皮细胞死亡和AR出现的协调过程。

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