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Growing up or growing out? How soil pH and light affect seedling growth of a relictual rainforest tree

机译:长大还是长大?土壤的pH值和光如何影响遗迹雨林树的幼苗生长

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Seedling growth rates can have important long-term effects on forest dynamics. Environmental variables such as light availability and edaphic factors can exert a strong influence on seedling growth. In the wild, seedlings of Wollemi pine (Wollemia nobilis) grow on very acid soils (pH ~4.3) in deeply shaded sites (~3 % full sunlight). To examine the relative influences of these two factors on the growth of young W. nobilis seedlings, we conducted a glasshouse experiment growing seedlings at two soil pH levels (4.5 and 6.5) under three light levels: low (5 % full sun), medium (15 %) and high (50 %). Stem length and stem diameter were measured, stem number and branch number were counted, and chlorophyll and carotenoid content were analysed. In general, increased plant growth was associated with increased light, and with low pH irrespective of light treatment, and pigment content was higher at low pH. Maximum stem growth occurred in plants grown in the low pH/high light treatment combination. However, stem number was highest in low pH/medium light. We hypothesize that these differences in stem development of W. nobilis among light treatments were due to this species' different recruitment strategies in response to light: greater stem growth at high light and greater investment in multiple stem production at low light. The low light levels in the W. nobilis habitat may be a key limitation on stem growth and hence W. nobilis recruitment from seedling to adult. Light and soil pH are two key factors in the growth of this threatened relictual rainforest species.
机译:幼苗生长速率可能会对森林动态产生重要的长期影响。环境变量(例如光的可用性和环境因子)可以对幼苗的生长产生很大的影响。在野外,Wollemi松树(Wollemia nobilis)的幼苗生长在阴暗处(日照量约3%)的非常酸性的土壤(pH〜4.3)上。为了研究这两个因素对年轻W. nobilis幼苗生长的相对影响,我们进行了温室试验,在两种土壤pH值(4.5和6.5)下,在三种光照水平下(低(5%阳光充足),中等) (15%)和高(50%)。测量茎长和茎直径,计算茎数和分支数,并分析叶绿素和类胡萝卜素含量。通常,无论光线处理如何,植物生长的增加与光照的增加有关,并且与低pH值有关,并且在低pH值下色素含量更高。在低pH /高光处理组合下生长的植物出现最大的茎生长。但是,茎数在低pH /中等光下最高。我们假设,光处理之间的紫茎泽兰茎发育的这些差异是由于该物种对光的响应不同的招募策略:高光下茎生长增加,低光下多茎生产增加了投资。 W. nobilis生境中的弱光水平可能是茎生长的关键限制,因此可能是W. nobilis从幼苗到成年的募集。光线和土壤的pH值是这种濒临灭绝的热带雨林物种生长的两个关键因素。

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