Sondheimer E, Tzou D S
Department of Chemistry, Plant Physiology Biochemistry Group, SUNY College of Forestry at Syracuse University, Syracuse, New York 13210.
Plant Physiol. 1971 Apr;47(4):516-20. doi: 10.1104/pp.47.4.516.
8-(14)C-Zeatin is taken up rapidly and is extensively metabolized by excised bean axes during a 12-hour incubation at 26 C. Most of the radioactivity is found in the 80% ethanol soluble fraction and consists of zeatin, zeatin riboside, zeatin-5'-ribotide, as well as corresponding dihydrozeatin derivatives. The characterization of (14)C-dihydrozeatin included crystallization to constant specific radioactivity. No cleavage of the zeatin side chain to adenine, hypoxanthine, their ribosides, or glycylpurine was detected. Dihydrozeatin has been previously isolated from yellow lupin seeds, and our experiments indicate that it can be derived through reduction of the side chain from preexisting cytokinin. While the total amount of zeatin metabolized is not affected by growth-inhibiting concentrations of abscisic acid or cycloheximide, the conversion to dihydrozeatin derivatives is curtailed. Although somewhat less effective than zeatin and zeatin riboside, dihydrozeatin and dihydrozeatin riboside also counteract the abscisic acid-induced growth inhibition.
8-(14)C-玉米素在26℃下经12小时孵育后,被切除的菜豆轴迅速吸收并广泛代谢。大部分放射性存在于80%乙醇可溶部分,由玉米素、玉米素核苷、玉米素-5'-核糖核苷酸以及相应的二氢玉米素衍生物组成。(14)C-二氢玉米素的表征包括结晶至恒定比放射性。未检测到玉米素侧链裂解为腺嘌呤、次黄嘌呤、它们的核苷或甘氨酰嘌呤。二氢玉米素先前已从黄羽扇豆种子中分离出来,我们的实验表明它可以通过侧链从预先存在的细胞分裂素还原而来。虽然玉米素代谢的总量不受脱落酸或环己酰亚胺生长抑制浓度的影响,但向二氢玉米素衍生物的转化受到抑制。虽然二氢玉米素和二氢玉米素核苷的效果略逊于玉米素和玉米素核苷,但它们也能抵消脱落酸诱导的生长抑制。