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首页> 外文期刊>Trees. Structure and Function >Leaf age and the timing of leaf abscission in two tropical dry forest trees
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Leaf age and the timing of leaf abscission in two tropical dry forest trees

机译:两种热带旱林树木的叶龄和脱落的时间

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摘要

We used experimental defoliations to examine the effect of leaf age on the timing of leaf shedding in two tropical dry forest trees. Trees of the deciduous Bombacopsis quinata (bombacaceae, a.k.a. Pachira quinata) and the brevi-deciduous Astronium graveolens (anacardiaceae) were manually defoliated for three times during the rainy season. All trees started to produce a new crown of leaves 2 weeks after defoliation, and continued expanding leaves throughout the rainy season. At the transition to the dry season, the experimental groups consisted of trees with known differences in maximum leaf age. Defoliations resulted in declines in stem growth but did not affect the mineral content or water relations of the leaves subsequently produced. There was no effect of leaf age on the timing of leaf abscission in B. quinata. In A. graveolens, the initiation of leaf shedding followed in rank order, the maximum leaf age of the four treatments, but there was substantial coherence among treatments in the major period of leaf abscission such that trees completed leaf shedding at the same time. In the two species, leaf water potential (.L) and stomatal conducantce (g S) declined with the onset of the dry season, reaching minimum values of -0.9 MPa in P. quinata and <-2.0 MPa in A. graveolens. Within each species, leaves of different age exhibited similar .L and g S at the onset of drought, and then decreased at a similar rate as the dry season progressed. Overall, our study suggests that the environmental factors were more important than leaf age in controlling the timing of leaf shedding.
机译:我们使用实验性的落叶来检查叶龄对两种热带干燥林木中叶片脱落时间的影响。在雨季,将落叶的Bombacopsis quinata(bombacaceae,a.k.a. Pachira quinata)和短落叶的Astroniumgravolens(anacardiaceae)的树木人工脱叶三遍。落叶后两周,所有树木开始产生新的树冠,并在整个雨季继续扩大叶子。在向旱季过渡时,实验组由树木的最大叶龄差异已知。落叶导致茎生长下降,但不影响随后生产的叶片的矿物质含量或水分关系。叶龄对藜麦叶片脱落的时间没有影响。在A.graveolens中,叶片脱落的开始顺序是四种处理的最大叶龄,但是在主要的叶片脱落时期各处理之间存在相当的连贯性,以致树木同时完成叶片脱落。在这两个物种中,叶片水势(.L)和气孔导度(g S)随着干旱季节的开始而下降,在P. quinata中达到-0.9 MPa的最小值,在A.gravolens中达到<-2.0 MPa的最小值。在每个物种中,不同年龄的叶片在干旱开始时表现出相似的.L和g S,然后随着旱季的进行而以相似的速率下降。总体而言,我们的研究表明,在控制叶片脱落的时间方面,环境因素比叶片年龄更为重要。

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