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Different subcellular localization and trafficking properties of KNOX class 1 homeodomain proteins from rice.

机译:水稻中KNOX 1类同源结构域蛋白的不同亚细胞定位和运输特性。

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Genes of the KN1-like homeobox (KNOX) class 1 encode transcription factors involved in shoot apical meristem development and maintenance. We studied the subcellular localization of Green Fluorescent Protein-tagged rice KNOX proteins (Oskn1-3) after particle bombardment of onion and rice cells and after transformation of Arabidopsis and rice with constitutive and inducible expression constructs. In all test systems, the three rice KNOX proteins showed nuclear and cytoplasmic localization patterns. However, Oskn1 additionally showed in some cells a distribution over punctae moving randomly in the cytosol. Use of an inducible expression system indicated a nuclear presence of Oskn1 in cells of the shoot apical meristem and post-transcriptional down-regulation in early leaf primordia. Arabidopsis and rice test systems were used to study effects of plant hormones and auxin transport inhibition on KNOX protein localization. Application of GA3 or 1-NAA shifted protein localization completely to the cytoplasm and resulted in loss of the punctae formed by Oskn1. Conversely, NPA application induced a complete nuclear localization of the KNOX proteins. To study intercellular movement of the KNOX proteins we set up a novel co-bombardment assay in which trafficking of untagged KNOX proteins was visualized through the co-trafficking of green fluorescent or blue fluorescent marker proteins. In multiple independent experiments Oskn1 trafficked more extensively to neighboring cells than Oskn2 and Oskn3. Differences in the localization and trafficking properties of Oskn1, Oskn2 and Oskn3 correlate with differences in mRNA localization patterns and functional differences between the rice KNOX genes and their putative orthologues from other species.
机译:类似于KN1的同源盒(KNOX)1类的基因编码参与茎尖分生组织发育和维持的转录因子。我们研究了绿色荧光蛋白标记的水稻KNOX蛋白(Oskn1-3)在洋葱和水稻细胞的粒子轰击后以及拟南芥和水稻转化后的组成型和诱导型表达构建体的亚细胞定位。在所有测试系统中,三种水稻KNOX蛋白均显示出核和细胞质定位模式。但是,Oskn1还在某些细胞中显示了在细胞质中随机移动的点状细胞上的分布。诱导型表达系统的使用表明,Oskn1核存在于茎尖分生组织的细胞中,并且在早期叶原基中转录后下调。拟南芥和水稻试验系统用于研究植物激素和生长素运输抑制对KNOX蛋白定位的影响。 GA3或1-NAA的应用将蛋白质的定位完全转移到了细胞质,并导致Oskn1形成的点状细胞丢失。相反,NPA的应用诱导了KNOX蛋白的完整核定位。为了研究KNOX蛋白的细胞间运动,我们建立了一种新型的共轰击测定法,其中通过共同贩运绿色荧光或蓝色荧光标记蛋白可视化未标记的KNOX蛋白的运输。在多个独立实验中,Oskn1比Oskn2和Oskn3更广泛地向邻近细胞贩运。 Oskn1,Oskn2和Oskn3的定位和运输特性的差异与水稻KNOX基因及其推定的直向同源物之间的mRNA定位模式和功能差异有关。

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