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Regulation by Light of Chemotaxis to Nitrite during the Sexual Life Cycle in Chlamydomonas reinhardtii

机译:在莱茵衣藻的性生活周期中对趋化亚硝酸盐的调节。

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Nitrite plays an important role in the nitrogen metabolism of most cells, including Chlamydomonas reinhardtii. We have shown that vegetative cells of C. reinhardtii are attracted by nitrite. The Nia1nit2 mutant with defects in genes encoding the nitrate reductase and regulatory protein NIT2 respectively was found to exhibit normal chemotaxis to nitrite. The data suggest that chemotaxis events appear to be specific and independent of those involved in nitrate assimilation. Unlike vegetative cells and noncompetent pregametes, mature gametes did not show chemotaxis to nitrite. Just like gamete formation, the change in chemotaxis mode is controlled by the sequential action of two environmental cues, removal of nitrogen from the medium and light. Comparative analysis of wild-type and RNAi strains with reduced level of phototropin has indicated that switch-off of chemotaxis towards nitrite is dependent on phototropin. The studies revealed individual elements of the phototropin-dependent signal transduction pathway involved in the blue-light-controlled change in chemotaxis mode of C. reinhardtii during gamete formation: three protein kinases, one operating against signal flux and two that promote signal transduction. We have proposed a working model for the signaling pathway by which blue light controls chemotaxis towards attractants, which are nitrogen sources, during pregamete-to-gamete conversion of C. reinhardtii.
机译:亚硝酸盐在包括莱茵衣藻在内的大多数细胞的氮代谢中起着重要作用。我们已经表明,莱茵衣藻的营养细胞被亚硝酸盐吸引。发现Nia1nit2突变体分别在编码硝酸还原酶和调节蛋白NIT2的基因中存在缺陷,表现出对亚硝酸盐的正常趋化性。数据表明趋化性事件似乎是特异性的,并且与硝酸盐同化有关。与营养细胞和不称职的配子不同,成熟的配子对亚硝酸盐没有趋化性。就像配子的形成一样,趋化性模式的变化由两个环境线索(从介质和光中除去氮)的顺序作用来控制。对具有降低的光养蛋白水平的野生型和RNAi菌株进行的比较分析表明,趋化性向亚硝酸盐的转换取决于光养蛋白。研究揭示了配光蛋白依赖性信号转导途径的各个元素,在配子形成过程中参与了莱茵衣藻化学趋化模式的蓝光控制变化:三种蛋白激酶,一种对信号通量起作用,而两种对信号传导有促进作用。我们已经提出了信号传导途径的工作模型,通过该途径,蓝光可在莱因哈迪氏菌的配子到配子转化过程中控制对作为氮源的引诱剂的趋化性。

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