Marler Thomas E, Shaw Christopher A
College of Natural and Applied Sciences, UOG Station, University of Guam, Mangilao, Guam 96923.
HortScience. 2009;44(3):725-729.
The relationship between mature Cycas micronesica K.D. Hill seed sterol concentration and content and plant or seed phenotypic characteristics was established by multiple regression. Combined models were significant for free but not glycosylated sterols. Reduced models revealed leaf number as the only significant predictor. Free and glycosylated sterol concentrations were unaffected throughout the range of several predictors: tree height (1.7 to 5.8 m), seed fresh weight (48 to 120 g), seed load (one to 76 seeds per plant), and estimated tree age (32 to 110 years). The free and glycosylated sterol phenotypes were also not dependent on the presence/absence of developed embryos in mature seeds. The significant response to leaf number was subtle with an increase of 43 leaves associated with a 0.1-mg increase in free sterol per gram seed fresh weight. This is the first report for any cycad that discusses reproductive or physiological traits in the context of allometric relations. Results indicate a highly constrained phenotypic plasticity of Cycas gametophyte sterol and steryl glucoside concentration and seed content in relation to whole plant and organ size variation.
通过多元回归分析确定了成熟密克罗尼西亚苏铁种子甾醇浓度和含量与植株或种子表型特征之间的关系。组合模型对游离甾醇而非糖基化甾醇具有显著意义。简化模型显示叶片数量是唯一显著的预测因子。在几个预测因子的整个范围内,游离和糖基化甾醇浓度均未受影响,这些预测因子包括树高(1.7至5.8米)、种子鲜重(48至120克)、种子负载量(每株植物1至76粒种子)以及估计树龄(32至110年)。游离和糖基化甾醇表型也不依赖于成熟种子中发育胚的有无。对叶片数量的显著响应较为细微,每增加43片叶子,每克种子鲜重的游离甾醇增加0.1毫克。这是关于苏铁属植物在异速生长关系背景下讨论生殖或生理特征的首篇报道。结果表明,相对于整株植物和器官大小的变化,苏铁配子体甾醇和甾醇糖苷浓度以及种子含量的表型可塑性受到高度限制。