Department of Botany, The University of Tennessee, Knoxville, Tennessee 37996-1100.
Plant Physiol. 1989 Feb;89(2):535-8. doi: 10.1104/pp.89.2.535.
The species-specific chemical messenger, antheridiogen A(Ce), mediates the differentiation of male gametophytes in the fern Ceratopteris. In order to investigate the biochemical origin of antheridiogen, the effect of the inhibitors, 2'-isopropyl-4'-(trimethylammoniumchloride)-5' -methylphenylpiperidine-1-carboxylate (AMO-1618), 2-chloroethyl trimethylammonium chloride (CCC), and alpha-cyclopropyl-alpha-(4-methoxyphenyl)-5-pyrimidine methyl alcohol (ancymidol) on gametophytic sex expression was determined in C. richardii. Both AMO-1618 and ancymidol blocked the production of male gametophytes in three genetically defined strains of C. richardii that exhibit different sensitivities to antheridiogen. Antheridiogen supplementation overcame inhibition by AMO-1618 and ancymidol, except in one strain (HaC18) that is insensitive to antheridiogen supplementation. These data suggest that the synthesis of Ceratopteris antheridiogen, a taxon that is insensitive to exogenously supplied gibberellins, occurs via a pathway that may include steps in common with gibberellin biosynthesis or involves similar reactions.
种特异性化学信使,雄配子体分化物 A(Ce),介导蕨类植物刺果蕨雄配子体的分化。为了研究雄配子体分化物的生化起源,我们研究了抑制剂 2'-异丙基-4'-(三甲基氯化铵)-5'-甲基苯基哌啶-1-羧酸酯(AMO-1618)、2-氯乙基三甲基氯化铵(CCC)和α-环丙基-α-(4-甲氧基苯基)-5-嘧啶甲醇(ancymidol)对刺果蕨配子体性别表达的影响。AMO-1618 和 ancymidol 都阻断了三种遗传上定义的刺果蕨品系产生雄配子体的过程,这三种品系对雄配子体分化物的敏感性不同。除了对雄配子体分化物补充不敏感的一株(HaC18)外,雄配子体分化物的补充克服了 AMO-1618 和 ancymidol 的抑制作用。这些数据表明,刺果蕨雄配子体分化物的合成,一种对外源赤霉素不敏感的分类群,可能通过一条途径发生,该途径可能包括赤霉素生物合成中的步骤,或涉及类似的反应。