Liu S T, Katz C D, Knight C A
Department of Molecular Biology, University of California, Berkeley, California 94720.
Plant Physiol. 1978 May;61(5):743-7. doi: 10.1104/pp.61.5.743.
The synthesis of indole-3-acetic acid (IAA) in the enzyme extracts of Nicotiana glauca, Nicotiana langsdorffii, their F1 hybrid, their amphidiploid hybrid, and the nontumorous mutant of the hybrid was investigated. Tryptamine, a possible precursor of IAA biosynthesis in Nicotiana tabacum, was not found in the callus tissue of N. glauca, N. langsdorffii, and their F1 hybrid.In petiole slices, the synthesis of IAA progressively increased during 5 hours of incubation in [(14)C]tryptophan. The rate of synthesis was about equal in the hybrid and N. langsdorffii but lower in N. glauca on either a cell or fresh weight basis. It was also found that tryptophan was about 25 times more efficient than tryptamine in promoting synthesis of IAA in petiole slices.It was found that indoleacetaldehyde oxidase, indoleacetaldehyde reductase, and tryptophan aminotransferase activities were present in all of the species examined; however, tryptophan decarboxylase activity was not found. The tryptophan aminotransferase activity in N. glauca, N. langsdorffii, and the nontumorous mutant required alpha-ketoglutaric acid and pyridoxal 5-phosphate whereas the addition of pyridoxal 5-phosphate seemed not to increase the enzyme activity in tumor plants.The tryptophan aminotransferase in the amphidiploid hybrid was partially purified by acetone precipitation. The enzyme activity had a temperature optimum at 49 C and a pH optimum at 8.9. It is suggested that there is an indolepyruvic acid pathway in the synthesis of IAA in the Nicotiana species examined.
对黄花烟草、郎氏烟草、它们的F1杂种、双二倍体杂种以及杂种的非肿瘤突变体的酶提取物中吲哚 - 3 - 乙酸(IAA)的合成进行了研究。在黄花烟草、郎氏烟草及其F1杂种的愈伤组织中未发现色胺(烟草中IAA生物合成的一种可能前体)。在叶柄切片中,用[¹⁴C]色氨酸孵育5小时期间,IAA的合成逐渐增加。以细胞或鲜重为基础,杂种和郎氏烟草中的合成速率大致相等,但黄花烟草中的合成速率较低。还发现,在促进叶柄切片中IAA的合成方面,色氨酸比色胺的效率高约25倍。结果发现,在所研究的所有物种中都存在吲哚乙醛氧化酶、吲哚乙醛还原酶和色氨酸转氨酶活性;然而,未发现色氨酸脱羧酶活性。黄花烟草、郎氏烟草和非肿瘤突变体中的色氨酸转氨酶活性需要α - 酮戊二酸和磷酸吡哆醛,而添加磷酸吡哆醛似乎并未增加肿瘤植物中的酶活性。双二倍体杂种中的色氨酸转氨酶通过丙酮沉淀进行了部分纯化。该酶活性的最适温度为49℃,最适pH为8.9。有人提出,在所研究的烟草属物种中,IAA的合成存在吲哚丙酮酸途径。