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关于兼性景天酸代谢和组成型景天酸代谢的本质:红厚壳属、伽蓝菜属和仙人掌属植物早期生长过程中景天酸代谢表达的环境与发育调控

On the nature of facultative and constitutive CAM: environmental and developmental control of CAM expression during early growth of Clusia, Kalanchöe, and Opuntia.

作者信息

Winter Klaus, Garcia Milton, Holtum Joseph A M

机构信息

Smithsonian Tropical Research Institute, PO Box 0843-03092, Balboa, Ancon, Republic of Panama.

出版信息

J Exp Bot. 2008;59(7):1829-40. doi: 10.1093/jxb/ern080. Epub 2008 Apr 24.

Abstract

The capacity to induce crassulacean acid metabolism developmentally (constitutive CAM) and to up-regulate CAM expression in response to drought stress (facultative CAM) was studied in whole shoots of seven species by measuring net CO(2) gas exchange for up to 120 day-night cycles during early growth. In Clusia rosea, CAM was largely induced developmentally. Well-watered seedlings began their life cycle as C(3) plants and developed net dark CO(2) fixation indicative of CAM after the initiation of the fourth leaf pair following the cotyledons. Thereafter, CAM activity increased progressively and drought stress led to only small additional, reversible increases in dark CO(2) fixation. In contrast, CAM expression was overwhelmingly under environmental control in seedlings and mature plants of Clusia pratensis. C(3)-type CO(2) exchange was maintained under well-watered conditions, but upon drought stress, CO(2) exchange shifted, in a fully reversible manner, to a CAM-type pattern. Clusia minor showed CO(2) exchange reponses intermediate to those of C. rosea and C. pratensis. Clusia cretosa operated in the C(3) mode at all times. Notably, reversible stress-induced increases of dark CO(2) fixation were also observed during the developmental progression to pronounced CAM in young Kalanchoë daigremontiana and Kalanchoë pinnata, two species considered constitutive CAM species. Drought-induced up-regulation of CAM was even detected in young cladodes of a cactus, Opuntia ficus-indica, an archetypal constitutive CAM species. Evidently, the defining characteristics of constitutive and facultative CAM are shared, to variable degrees, by all CAM species.

摘要

通过在早期生长过程中测量长达120个昼夜周期的净CO₂气体交换,研究了7种植物全株在发育过程中诱导景天酸代谢(组成型景天酸代谢)以及响应干旱胁迫上调景天酸代谢表达(兼性景天酸代谢)的能力。在红苞闭鞘姜中,景天酸代谢在很大程度上是由发育诱导的。水分充足的幼苗以C₃植物的形式开始其生命周期,在子叶后的第四对叶开始生长后,发育出表明景天酸代谢的净暗CO₂固定。此后,景天酸代谢活性逐渐增加,干旱胁迫仅导致暗CO₂固定有少量额外的、可逆的增加。相比之下,在草原闭鞘姜的幼苗和成熟植株中,景天酸代谢的表达绝大多数受环境控制。在水分充足的条件下维持C₃型CO₂交换,但在干旱胁迫下,CO₂交换以完全可逆的方式转变为景天酸代谢型模式。小闭鞘姜的CO₂交换反应介于红苞闭鞘姜和草原闭鞘姜之间。克里特闭鞘姜始终以C₃模式运行。值得注意的是,在被认为是组成型景天酸代谢物种的幼小落地生根和羽状落地生根向明显的景天酸代谢发育过程中,也观察到了暗CO₂固定的可逆胁迫诱导增加。在仙人掌类典型的组成型景天酸代谢物种梨果仙人掌的幼茎中甚至检测到干旱诱导的景天酸代谢上调。显然,所有景天酸代谢物种在不同程度上都具有组成型和兼性景天酸代谢的定义特征。

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