Shelton Angela L
Department of Environmental Studies, University of California, Santa Cruz, CA 95064, USA.
J Chem Ecol. 2005 Aug;31(8):1711-32. doi: 10.1007/s10886-005-5922-9.
Variation in chemical defenses remains underexplored. In particular, little is known about patterns of variation at small scales within leaves and spatial variation of induction. I examined variation in glucosinolate concentrations in the leaves of Raphanus sativus at several different spatial scales in two related experiments. I used samples equivalent in area to the amount an intermediate-sized caterpillar might eat in 1 d, a smaller scale than used in most previous studies. I examined variation due to induction and leaf age and small-scale spatial variation within leaves. The mean and variance of glucosinolate concentrations were higher in induced plants, young leaves, and the proximal half of leaves. Higher glucosinolate concentrations in the proximal half of leaves are previously unreported. Small-scale variation was extreme, accounting for 57% of the total random variation, and spatially random. There was no spatial autocorrelation found at scales as small as 1-2 cm. The high degree of small-scale, spatially random variation in glucosinolate concentrations in leaves is previously unreported. This small-scale variation and the variation caused by induction may have significant effects on herbivores and could be an important component of plant defense.
化学防御的变异仍未得到充分研究。特别是,对于叶片内小尺度的变异模式以及诱导作用的空间变异了解甚少。在两项相关实验中,我在几个不同的空间尺度上研究了萝卜叶片中硫代葡萄糖苷浓度的变异。我使用的样本面积相当于一只中等大小的毛虫一天可能吃掉的量,这是一个比大多数先前研究中使用的尺度更小的尺度。我研究了诱导作用、叶片年龄以及叶片内小尺度空间变异所导致的变异。硫代葡萄糖苷浓度的均值和方差在诱导植物、幼叶以及叶片的近端半部中更高。叶片近端半部中硫代葡萄糖苷浓度较高这一情况此前未见报道。小尺度变异非常显著,占总随机变异的57%,且在空间上是随机的。在小至1 - 2厘米的尺度上未发现空间自相关性。叶片中硫代葡萄糖苷浓度高度的小尺度、空间随机变异此前未见报道。这种小尺度变异以及由诱导作用引起的变异可能对食草动物有显著影响,并且可能是植物防御的一个重要组成部分。