首页> 美国卫生研究院文献>Plant Physiology >Alterations of auxin perception in rolB-transformed tobacco protoplasts. Time course of rolB mRNA expression and increase in auxin sensitivity reveal multiple control by auxin.
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Alterations of auxin perception in rolB-transformed tobacco protoplasts. Time course of rolB mRNA expression and increase in auxin sensitivity reveal multiple control by auxin.

机译:rolB转化烟草原生质体中生长素感知的变化。 rolB mRNA表达的时程和植物生长素敏感性的增加揭示了生长素的多重控制。

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摘要

Expression and physiological effects of the root-inducing rolB gene of Agrobacterium rhizogenes T-DNA were studied simultaneously in tobacco (Nicotiana tabacum) mesophyll protoplasts. The kinetic study of the expression of rolB mRNA following exogenous auxin application showed that auxin transiently stimulated rolB expression, with mRNA levels starting to accumulate 6 to 9 h after auxin was supplied and increasing 300-fold after 12 to 18 h. The parallel study of the auxin sensitivity of rolB-transformed protoplasts, as assayed by their electrical response to the hormone, showed that the auxin treatment generated an increase in sensitivity by a factor of up to 100,000, whereas in untransformed protoplasts the same auxin treatment induced an increase in auxin sensitivity that never exceeded 30- to 50-fold. This reflects a strong cooperative effect of auxin and rolB in transformed protoplasts. Surprisingly, the maximal increase in sensitivity was observed several hours before the maximal accumulation of rolB mRNA, suggesting that the dramatic control of auxin sensitivity by auxin in rolB-transformed protoplasts requires only low levels of rolB expression. Antibodies directed against ZmER-abp1, the major auxin-binding protein from maize, differentially altered the auxin sensitivity of the electrical response of rolB-transformed and normal protoplasts. This suggests that alterations of the auxin reception-transduction pathway at the plasma membrane of rolB-transformed protoplasts may account for their increased auxin sensitivity.
机译:同时研究了发根农杆菌T-DNA的根诱导rolB基因在烟草叶肉原生质体中的表达及其生理效应。对外源生长素应用后rolB mRNA表达的动力学研究表明,生长素短暂刺激rolB表达,在供应生长素后6至9小时,mRNA水平开始积累,在12至18 h后增加300倍。平行研究rolB转化的原生质体对植物生长素的敏感性,通过对激素的电响应进行分析,结果表明生长素处理产生的敏感性提高了100,000倍,而未转化的原生质体则诱导了相同的生长素处理生长素敏感性的增加从未超过30到50倍。这反映出生长素和rolB在转化的原生质体中有很强的协同作用。出人意料的是,在rolB mRNA的最大积累之前几个小时就观察到了敏感性的最大提高,这表明生长素对rolB转化的原生质体中生长素对戏剧性生长素敏感性的显着控制只需要低水平的rolB表达即可。针对玉米主要生长素结合蛋白ZmER-abp1的抗体差异性地改变了rolB转化的和正常的原生质体电反应的生长素敏感性。这表明在rolB转化的原生质体质膜上的生长素接收-转导途径的改变可能是其生长素敏感性增加的原因。

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