Department of Biological Sciences, Barnard College, Columbia University, New York, New York 10027.
Plant Physiol. 1977 Apr;59(4):579-86. doi: 10.1104/pp.59.4.579.
The effects of abscisic acid, zeatin, and gibberellic acid on the development of somatic embryos from cultured cells of caraway (Carum carvi L.) were observed.Somatic embryos complete development on a basal medium without exogenous hormones, but some are subject to developmental abnormalities including malformed cotyledons and accessory embryos. Both zeatin and gibberellic acid, especially in combination, stimulate growth and increase the frequency of aberrant forms. Zeatin causes the formation of multiple shoots, leafy and abnormal cotyledons, and in the dark, enlarged hypocotyls; gibberellic acid effects root elongation, polycotyledony, and some callus formation. In contrast, abscisic acid, at concentrations which do not inhibit embryo maturation, selectively suppresses abnormal proliferations. With abscisic acid, and especially in the dark, a high percentage of embryos complete development with two fleshy cotyledons on unelongated axes free of accessory embryos.In the light, zeatin eliminates abscisic acid inhibition while gibberellic acid only partially counters its effect, promoting elongated radicles and green rather than white cotyledons. In the dark, zeatin in combination with abscisic acid stimulates extensive callusing. Gibberellic acid does not reverse the effects of abscisic acid but rather enhances them and can counter the disruptive effects of zeatin.The results demonstrate that the balance between abscisic acid on the one hand and zeatin and gibberellic acid on the other can effectively control somatic embryo development and either disrupt or ensure normal maturation.
观察到脱落酸、玉米素和赤霉素对莳萝(Carum carvi L.)培养细胞体细胞胚发育的影响。体细胞胚在不含外源激素的基础培养基上完成发育,但有些会出现发育异常,包括畸形子叶和副胚。玉米素和赤霉素,特别是两者的组合,都能刺激生长并增加异常形态的频率。玉米素导致多芽形成、具叶和异常子叶,在黑暗中,下胚轴增大;赤霉素则促进根伸长、多子叶和一些愈伤组织的形成。相反,脱落酸在不抑制胚胎成熟的浓度下,选择性地抑制异常增殖。用脱落酸,特别是在黑暗中,很大比例的胚胎在无副胚的未伸长轴上完成发育,具有两个肉质子叶。在光照下,玉米素消除脱落酸的抑制作用,而赤霉素仅部分抵消其作用,促进伸长的胚根和绿色而不是白色的子叶。在黑暗中,玉米素与脱落酸结合可刺激广泛的愈伤组织形成。赤霉素不会逆转脱落酸的作用,反而会增强其作用,并能抵消玉米素的破坏作用。结果表明,一方面是脱落酸,另一方面是玉米素和赤霉素之间的平衡,可以有效地控制体细胞胚的发育,并可以破坏或确保正常成熟。