Department of Biotechnology, Bioenergy Research Center, Chonnam National University, Gwangju, South Korea.
J Pineal Res. 2019 Mar;66(2):e12537. doi: 10.1111/jpi.12537. Epub 2018 Nov 26.
Melatonin-deficient rice with a semidwarf erect-leaf phenotype was created by suppressing serotonin N-acetyltransferase 2 (SNAT2). We generated an RNAi transgenic rice that suppressed tryptophan decarboxylase (TDC), which encodes the first TDC enzyme committed step for melatonin biosynthesis in plants catalyzing the conversion of tryptophan into tryptamine, to determine whether other transgenic rice with downregulated melatonin biosynthetic genes exhibited the same erect-leaf phenotype as the snat2 RNAi rice. The TDC RNAi rice produced significantly less melatonin than the wild type and exhibited a semidwarf phenotype, but no erect-leaf phenotype was observed. In contrast, tryptamine 5-hydroxylase (T5H) knockout Sekiguchi rice and caffeic acid O-methyltransferase (COMT) RNAi rice seedlings were semidwarf phenotypes with erect leaves, as was the snat2 RNAi rice due to a melatonin deficiency. All RNAi rice plants showing erect-leaf phenotypes had lower expression levels of the DWARF4 gene, which is a key enzyme for brassinosteroid (BR) biosynthesis, leading to lower BR levels than their respective wild types. Suppressing melatonin synthesis did not alter the contents of indole 3-acetic acid (IAA), suggesting the irrelevance of melatonin deficiency to IAA biosynthesis. These data indicate that a semidwarf seedling is a common rice phenotype by the lack of melatonin synthesis with or without BR suppression in a melatonin biosynthetic gene-specific manner.
褪黑素缺乏的半矮生性直立叶表型水稻是通过抑制色氨酸 N-乙酰转移酶 2 (SNAT2) 产生的。我们生成了一种 RNAi 转基因水稻,抑制色氨酸脱羧酶(TDC),该酶编码植物褪黑素生物合成中的第一个 TDC 酶,催化色氨酸转化为色胺,以确定其他下调褪黑素生物合成基因的转基因水稻是否表现出与 snat2 RNAi 水稻相同的直立叶表型。TDC RNAi 水稻产生的褪黑素明显少于野生型,表现出半矮生性表型,但未观察到直立叶表型。相比之下,色胺 5-羟化酶(T5H)敲除 Sekiguchi 水稻和咖啡酸-O-甲基转移酶(COMT)RNAi 水稻幼苗表现出半矮生性直立叶表型,与由于褪黑素缺乏的 snat2 RNAi 水稻一样。所有表现出直立叶表型的 RNAi 水稻植株的 DWARF4 基因表达水平较低,DWARF4 基因是油菜素内酯(BR)生物合成的关键酶,导致 BR 水平低于各自的野生型。抑制褪黑素合成不会改变吲哚乙酸(IAA)的含量,表明褪黑素缺乏与 IAA 生物合成无关。这些数据表明,半矮生性幼苗是一种常见的水稻表型,由于褪黑素生物合成基因特异性缺乏褪黑素合成,无论是否抑制 BR,都会表现出这种表型。