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Identification of the Gravitropism-Related Rice Gene LAZY1 and Elucidation of LAZY1-Dependent and -Independent Gravity Signaling Pathways

机译:引力相关水稻基因LAZY1的鉴定及对LAZY1依赖性和非依赖性重力信号通路的阐明

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We identified the gene responsible for three allelic lazy1 mutations of Japonica rice (Oryza sativa L.) by map-based cloning, complementation and RNA interference. Sequence analysis and database searches indicated that the wild-type gene (LAZY1) encodes a novel and unique protein (LAZY1) and that rice has no homologous gene. Two lazy1 mutants were LAZY1 null. Confirming and advancing the previously reported results on lazy1 mutants, we found the following. (i) Gravitropism is impaired, but only partially, in lazy1 coleoptiles. (ii) Circumnutation, observed in dark-grown coleoptiles, is totally absent from lazy1 coleoptiles. (iii) Primary roots of lazy1 mutants show normal gravitropism and circumnutation. (iv) LAZY1 is expressed in a tissue-specific manner in gravity-sensitive shoot tissues (i.e. coleoptiles, leaf sheath pulvini and lamina joints) and is little expressed in roots. (v) The gravitropic response of lazy1 coleoptiles is kinetically separable from that absent from lazy1 coleoptiles. (vi) Gravity-induced lateral translocation of auxin, found in wild-type coleoptiles, does not occur in lazy1 coleoptiles. Based on the genetic and physiological evidence obtained, it is concluded that LAZY1 is specifically involved in shoot gravitropism and that LAZY1-dependent and -independent signaling pathways occur in coleoptiles. It is further concluded that, in coleoptiles, only the LAZY1-dependent gravity signaling involves asymmetric distribution of auxin between the two lateral halves and is required for circumnutation.
机译:我们通过基于图的克隆,互补和RNA干扰,确定了负责粳稻(Oryza sativa L.)的三个等位基因lazy1突变的基因。序列分析和数据库搜索表明,野生型基因(LAZY1)编码一种新颖而独特的蛋白质(LAZY1),而水稻没有同源基因。两个lazy1突变体为LAZY1 null。证实并推进了先前报告的关于lazy1突变体的结果,我们发现了以下内容。 (i)在懒惰的胚芽鞘中,重力运动受到损害,但仅部分受到损害。 (ii)lazy1胚芽鞘完全没有在暗生的胚芽鞘中观察到环化。 (iii)lazy1突变体的初生根表现出正常的重力运动和环化作用。 (iv)LAZY1在重力敏感的嫩芽组织(即胚芽鞘,叶鞘pulvini和椎板关节)中以组织特异性方式表达,在根中很少表达。 (v)lazy1胚芽鞘的重力响应与lazy1胚芽鞘的重力响应在动力学上是可分离的。 (vi)在野生型胚芽鞘中发现的重力诱导的生长素横向移位不在lazy1胚芽鞘中发生。根据获得的遗传和生理证据,可以得出结论,LAZY1专门与芽引力有关,而胚芽鞘中存在LAZY1依赖性和非依赖性信号传导途径。进一步得出的结论是,在胚芽鞘中,仅依赖LAZY1的重力信号传导涉及到两个侧半部分之间生长素的不对称分布,并且需要进行环育。

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