MSU/AEC Plant Research Laboratory, Michigan State University, 48824, East Lansing, Michigan, USA.
Planta. 1973 Jun;114(2):159-67. doi: 10.1007/BF00387473.
Barley leaves extracted 35 min after a 15-min pulse of 10(-6) M (14)C-labelled cis,trans-(±)-abscisic acid (ABA) showed very little breakdown of the ABA. Leaves extracted 2 h after a 30-min pulse of 10(-5) M labelled ABA showed at least 34% degradation of the hormone. The pattern of degradation was very similar for leaves kept in either light or darkness following the labelling pulse, and the products formed resembled those described in tomato fruit and bean axes. No detectable isomerization to the physiologically inactive trans,trans-(±)-ABA isomer occurred in these leaves during the 2-h period. ABA-induced stomatal closure is partially reduced 30 min after the pulse. The reversal cannot be attributed to catabolism of the hormone and must be explained by removal of the hormone into storage sites where it cannot act on the stomata.
大麦叶片在 10(-6) M (14)C 标记的顺式,反式-(±)-脱落酸(ABA)脉冲 15 分钟后提取 35 分钟,ABA 几乎没有分解。叶片在 10(-5) M 标记的 ABA 脉冲 30 分钟后提取 2 小时,激素至少降解 34%。标记脉冲后无论是在光照还是黑暗下保存的叶片,其降解模式非常相似,形成的产物与番茄果实和豆轴中描述的产物相似。在 2 小时内,这些叶片中没有检测到向生理上无活性的反式,反式-(±)-ABA 异构体的可检测异构化。脉冲 30 分钟后,ABA 诱导的气孔关闭部分减少。这种逆转不能归因于激素的分解代谢,必须通过将激素转移到储存部位来解释,在储存部位中它不能作用于气孔。