Laboratory of Hormonal Regulations in Plants, Institute of Experimental Botany of the Czech Academy of Sciences, Rozvojová 263, 165 02 Praha 6, Czech Republic.
Laboratory of Growth Regulators, Institute of Experimental Botany of the Czech Academy of Sciences, and Faculty of Science, Palacký University, Šlechtitelů 27, 783 71 Olomouc, Czech Republic.
Plant Physiol. 2021 Sep 4;187(1):103-115. doi: 10.1093/plphys/kiab242.
Together with auxin transport, auxin metabolism is a key determinant of auxin signaling output by plant cells. Enzymatic machinery involved in auxin metabolism is subject to regulation based on numerous inputs, including the concentration of auxin itself. Therefore, experiments characterizing altered auxin availability and subsequent changes in auxin metabolism could elucidate the function and regulatory role of individual elements in the auxin metabolic machinery. Here, we studied auxin metabolism in auxin-dependent tobacco BY-2 cells. We revealed that the concentration of N-(2-oxindole-3-acetyl)-l-aspartic acid (oxIAA-Asp), the most abundant auxin metabolite produced in the control culture, dramatically decreased in auxin-starved BY-2 cells. Analysis of the transcriptome and proteome in auxin-starved cells uncovered significant downregulation of all tobacco (Nicotiana tabacum) homologs of Arabidopsis (Arabidopsis thaliana) DIOXYGENASE FOR AUXIN OXIDATION 1 (DAO1), at both transcript and protein levels. Auxin metabolism profiling in BY-2 mutants carrying either siRNA-silenced or CRISPR-Cas9-mutated NtDAO1, as well as in dao1-1 Arabidopsis plants, showed not only the expected lower levels of oxIAA, but also significantly lower abundance of oxIAA-Asp. Finally, ability of DAO1 to oxidize IAA-Asp was confirmed by an enzyme assay in AtDAO1-producing bacterial culture. Our results thus represent direct evidence of DAO1 activity on IAA amino acid conjugates.
与生长素运输一起,生长素代谢是植物细胞中生长素信号输出的关键决定因素。参与生长素代谢的酶机制受到基于众多输入的调节,包括生长素本身的浓度。因此,表征改变的生长素可用性和随后的生长素代谢变化的实验可以阐明生长素代谢机制中各个元素的功能和调节作用。在这里,我们研究了依赖生长素的烟草 BY-2 细胞中的生长素代谢。我们揭示了在生长素饥饿的 BY-2 细胞中,含量最丰富的生长素代谢产物 N-(2-氧代吲哚-3-乙酰基)-l-天冬氨酸(oxIAA-Asp)的浓度急剧下降。对生长素饥饿细胞的转录组和蛋白质组分析揭示了拟南芥(Arabidopsis thaliana)DAO1(Arabidopsis thaliana DIOXYGENASE FOR AUXIN OXIDATION 1)的所有烟草(Nicotiana tabacum)同源物的显著下调,无论是在转录水平还是蛋白水平。在携带 siRNA 沉默或 CRISPR-Cas9 突变的 NtDAO1 的 BY-2 突变体或 dao1-1 拟南芥植物中进行生长素代谢 profiling,不仅显示了预期的 oxIAA 水平降低,而且 oxIAA-Asp 的丰度也显著降低。最后,通过在产生 AtDAO1 的细菌培养物中的酶测定证实了 DAO1 氧化 IAA-Asp 的能力。因此,我们的结果直接证明了 DAO1 对生长素氨基酸缀合物的活性。