Department of Biology, Al-Hussein Bin Talal University, Maan, Jordan.
Department of Biology, Faculty of Science, Al-Albayt University, Mafraq, Jordan.
Appl Biochem Biotechnol. 2022 Oct;194(10):4673-4682. doi: 10.1007/s12010-022-04047-8. Epub 2022 Jul 8.
The reverse genetic approach has uncovered indole synthase (INS) as the first enzyme in the tryptophan (trp)-independent pathway of IAA synthesis. The importance of INS was reevaluated suggesting it may interact with tryptophan synthase B (TSB) and therefore involved in the trp-dependent pathway. Thus, the main aim of this study was to clarify the route of INS through the analysis of Arabidopsis genome. Analysis of the top 2000 co-expression gene lists in general and specific conditions shows that TSA is strongly positively co-expressed with TSB in general, hormone, and abiotic conditions with mutual ranks of 89, 38, and 180 respectively. Moreover, TSA is positively correlated with TSB (0.291). However, INS was not found in any of these coexpressed gene lists and negatively correlated with TSB (- 0.046) suggesting unambiguously that these two routes are separately and independently operated. So far, the remaining steps in the INS pathway have remained elusive. Among all enzymes reported to have a role in IAA synthesis, amidase was found to strongly positively co-expressed with INS in general and light conditions with mutual ranks of 116 and 141 respectively. Additionally, amidase1 was found to positively correlate with INS (0.297) and negatively coexpressed with TSB concluding that amidase may exclusively involve in the trp-independent pathway.
反向遗传学方法揭示吲哚合酶(INS)是色氨酸(trp)独立途径中 IAA 合成的第一个酶。重新评估了 INS 的重要性,表明它可能与色氨酸合酶 B(TSB)相互作用,因此参与了 trp 依赖途径。因此,本研究的主要目的是通过分析拟南芥基因组阐明 INS 的途径。在一般和特定条件下对前 2000 个共表达基因列表的分析表明,TSA 通常与 TSB 在激素和非生物条件下强烈正共表达,相互排名分别为 89、38 和 180。此外,TSA 与 TSB 呈正相关(0.291)。然而,在这些共表达基因列表中均未发现 INS,并且与 TSB 呈负相关(-0.046),这明确表明这两条途径是分开和独立运作的。到目前为止,INS 途径中的其余步骤仍然难以捉摸。在所有报道参与 IAA 合成的酶中,酰胺酶被发现通常与 INS 以及光照条件强烈正共表达,相互排名分别为 116 和 141。此外,酰胺酶 1 与 INS 呈正相关(0.297),与 TSB 负共表达,表明酰胺酶可能专门参与 trp 非依赖途径。