首页> 外文期刊>Physiologia plantarum >A large increase in IAA during development of rice grains correlates with the expression of tryptophan aminotransferase OsTAR1 and a grain-specific YUCCA.
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A large increase in IAA during development of rice grains correlates with the expression of tryptophan aminotransferase OsTAR1 and a grain-specific YUCCA.

机译:水稻籽粒发育过程中IAA的大量增加与色氨酸氨基转移酶OsTAR1和谷物特异性YUCCA的表达有关。

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The indole-3-acetic acid (IAA) content of developing grains of Oryza sativa subsp. japonica was measured by combined liquid chromatography, tandem mass spectrometry in multiple-reaction-monitoring mode. The increase from 50 ng g-1 fresh weight to 2.9 micro g g-1 fresh weight from 1 to 14 days after pollination was much larger than that previously reported by enzyme-linked immunoassay methods. The largest increase in IAA content coincided with the start of the major starch deposition phase of grain-fill. The increase in IAA content was strongly correlated with the expression of putative IAA biosynthesis genes, OsYUC9, OsYUC11 and OsTAR1, measured by quantitative reverse transcriptase polymerase chain reaction. These results confirm the importance of the tryptophan aminotransferase/YUCCA pathway in this system. All three genes were expressed in endosperm; expression of OsYUC11 appeared to be confined to endosperm tissue. Phylogenetic analysis indicated that OsYUC11 and AtYUC10 belong to a separate clade of YUCCAs, which do not have orthologues outside the Angiosperms. This clade may have evolved with a specific role in endosperm. Expression of tryptophan decarboxylase in developing rice grains did not correlate with IAA levels, indicating that tryptamine is unlikely to be important for IAA synthesis in this system. In light of these observations, we hypothesize that IAA production in developing rice grains is controlled via expression of OsTAR1, OsYUC9, OsYUC11 and that IAA may be important during starch deposition in addition to its previously suggested role early in grain development.
机译:稻(Aryza sativa)亚种发育中谷物的吲哚-3-乙酸(IAA)含量通过多重液相色谱-串联质谱法在多反应监测模式下测定粳稻。授粉后1到14天,从50 ng g -1 鲜重增加到2.9 micro gg -1 鲜重增加得比以前通过酶联法报道的要大得多。免疫测定方法。 IAA含量的最大增加与谷物填充主要淀粉沉积阶段的开始相吻合。通过定量逆转录酶聚合酶链反应测定,IAA含量的增加与推定的IAA生物合成基因OsYUC9,OsYUC11和OsTAR1的表达密切相关。这些结果证实了该系统中色氨酸氨基转移酶/ YUCCA途径的重要性。这三个基因均在胚乳中表达。 OsYUC11的表达似乎仅限于胚乳组织。系统发育分析表明,OsYUC11和AtYUC10属于YUCCA的独立分支,在被子植物外部没有直系同源物。该进化枝可能在胚乳中具有特定作用。发育中的水稻籽粒中色氨酸脱羧酶的表达与IAA水平无关,表明色胺在该系统中不太可能对IAA合成很重要。根据这些观察结果,我们假设发育中的稻谷中IAA的生产是通过OsTAR1,OsYUC9,OsYUC11的表达来控制的,并且IAA除先前在谷物发育中的作用外,可能在淀粉沉积过程中也很重要。

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