Chemical Composition of thePrunus laurocerasusLeaf Surface. Dynamic Changes of the Epicuticular Wax Film during Leaf Development

表皮蜡 表皮(毛发) 植物 化学 植物角质层 化学成分 作文(语言) 生物 有机化学 语言学 遗传学 哲学
作者
Reinhard Jetter,Stefanie Schäffer
出处
期刊:Plant Physiology [Oxford University Press]
卷期号:126 (4): 1725-1737 被引量:310
标识
DOI:10.1104/pp.126.4.1725
摘要

Abstract The seasonal development of adaxial Prunus laurocerasus leaf surfaces was studied using newly developed methods for the mechanical removal of epicuticular waxes. During epidermal cell expansion, more than 50 μg leaf−1 of alkyl acetates accumulated within 10 d, forming an epicuticular wax film approximately 30 nm thick. Then, alcohols dominated for 18 d of leaf development, before alkanes accumulated in an epicuticular wax film with steadily increasing thickness (approximately 60 nm after 60 d), accompanied by small amounts of fatty acids, aldehydes, and alkyl esters. In contrast, the intracuticular waxes stayed fairly constant during development, being dominated by triterpenoids that could not be detected in the epicuticular waxes. The accumulation rates of all cuticular components are indicative for spontaneous segregation of intra- and epicuticular fractions during diffusional transport within the cuticle. This is the first report quantifying the loss of individual compound classes (acetates and alcohols) from the epicuticular wax mixture. Experiments with isolated epicuticular films showed that neither chemical conversion within the epicuticular film nor erosion/evaporation of wax constituents could account for this effect. Instead, transport of epicuticular compounds back into the tissue seems likely. Possible ecological and physiological functions of the coordinate changes in the composition of the plant surface layers are discussed.
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