MSU/AEC Plant Research Laboratory, Michigan State University, East Lansing.
Planta. 1971 Jun;98(2):164-76. doi: 10.1007/BF00385349.
When radioactive gibberellin A5 ((3)H-GA5) was applied to the apices and surrounding young leaves of the long-day plant Silene armeria, it was partially converted to at least two other acidic substances. One of them was similar to GA3 in chromatographic, but not in biological properties. The other metabolite was more polar than GA3 and inactive in the dwarf d-5 corn assay.The rate of (3)H-GA5 conversion was influenced by the photoperiod under which Silene plants were grown. Exposure to 2 long days significantly increased (3)H-GA5 metabolism over that in control plants kept under short days. The increased conversion of (3)H-GA5 persisted for at least a few days after transferring Silene plants back from long to short days. Likewise, stem growth induced by long photoperiods continued for a considerable period of time under subsequent short days.Application of the growth retardant AMO-1618 to Silene reduced the levels of two endogenous GA-like substances, one of them with GA5-like properties, more under long than under short days. These results indicate that long photoperiods, which induce flower formation and stem elongation in Silene, increase the turnover of endogenous gibberellins.
当放射性赤霉素 A5((3)H-GA5)被应用于长日植物矢车菊的顶端和周围的嫩叶时,它会部分转化为至少两种其他酸性物质。其中一种物质在色谱性质上与 GA3 相似,但在生物性质上不同。另一种代谢物比 GA3 更具极性,在矮玉米 d-5 测定中没有活性。(3)H-GA5 的转化速率受 Silene 植物生长的光周期影响。与短日照下的对照植物相比,暴露于 2 个长日照下显著增加了(3)H-GA5 的代谢。Silene 植物从长日照转回短日照后,至少在几天内,(3)H-GA5 的转化率持续增加。同样,长光周期诱导的茎生长在随后的短日照下也会持续相当长的一段时间。将生长抑制剂 AMO-1618 施用于矢车菊会降低两种内源性 GA 样物质的水平,其中一种具有 GA5 样性质,在长日照下比在短日照下降低得更多。这些结果表明,长光周期诱导矢车菊开花和茎伸长,增加了内源性赤霉素的周转率。