State Key Laboratory of Vegetation and Environmental Change, Institute of Botany, Chinese Academy of Sciences, Beijing, China.
PLoS One. 2012;7(9):e42833. doi: 10.1371/journal.pone.0042833. Epub 2012 Sep 11.
Bunchgrasses are one of the most important plant functional groups in grassland ecosystems. Reproductive allocation (RA) for a bunchgrass is a hierarchical process; however, how bunchgrasses adjust their RAs along hierarchical levels in response to nutrient addition has never been addressed. Here, utilizing an 11-year nutrient addition experiment, we examined the patterns and variations in RA of Agropyron cristatum at the individual, tiller and spike levels. We evaluated the reproductive allometric relationship at each level by type II regression analysis to determine size-dependent and size-independent effects on plant RA variations. Our results indicate that the proportion of reproductive individuals in A. cristatum increased significantly after 11 years of nutrient addition. Adjustments in RA in A. cristatum were mainly occurred at the individual and tiller levels but not at the spike level. A size-dependent effect was a dominant mechanism underlying the changes in plant RA at both individual and tiller levels. Likewise, the distribution of plant size was markedly changed with large individuals increasing after nutrient addition. Tiller-level RA may be a limiting factor for the adjustment of RA in A. cristatum. To the best of our knowledge, this study is the first to examine plant responses in terms of reproductive allocation and allometry to nutrient enrichment within a bunchgrass population from a hierarchical view. Our findings have important implications for understanding the mechanisms underlying bunchgrass responses in RA to future eutrophication due to human activities. In addition, we developed a hierarchical analysis method for disentangling the mechanisms that lead to variation in RA for perennial bunchgrasses.
丛生禾草是草原生态系统中最重要的植物功能群之一。丛生禾草的生殖分配(RA)是一个层次过程;然而,丛生禾草如何根据养分添加在层次水平上调整其 RA 以响应养分添加,这一点尚未得到解决。在这里,我们利用一个为期 11 年的养分添加实验,研究了 Agropyron cristatum 在个体、分蘖和穗水平上的 RA 模式和变化。我们通过 II 型回归分析评估了每个水平的生殖权衡关系,以确定对植物 RA 变化的大小依赖性和大小独立性影响。我们的研究结果表明,在养分添加 11 年后,A. cristatum 中生殖个体的比例显著增加。A. cristatum 的 RA 调整主要发生在个体和分蘖水平上,但不在穗水平上。个体和分蘖水平上植物 RA 变化的主要机制是大小依赖性效应。同样,植物大小的分布也发生了明显变化,养分添加后大个体增加。分蘖水平上的 RA 可能是 A. cristatum 中 RA 调整的限制因素。据我们所知,这是首次从层次角度研究植物对养分富集的生殖分配和权衡反应。我们的研究结果对理解由于人类活动导致的未来富营养化条件下丛生禾草对 RA 的响应机制具有重要意义。此外,我们开发了一种层次分析方法,用于剖析导致多年生丛生禾草 RA 变化的机制。