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The full path of Janzen-Connell effects: Genetic tracking of seeds to adult plant recruitment

机译:Janzen-Connell效应的完整路径:从种子到成年植物募集的遗传追踪

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The Janzen-Connell (J-C) model (Janzen 1970; Connell 1971) has been a dominant yet controversial paradigm for forest community dynamics for four decades, especially in the tropics. With increasing distance from the parent plant, the density of dispersed seeds decreases and, because of a reduced impact of distance- and density-responsive seed and seedling enemies, propagule survival increases, resulting in peak recruitment at some distance from the parent and little recruitment near adult conspecifics. This spacing generates gaps near adult trees for the recruitment of heterospecifics, enhancing species coexistence and species richness. Field studies, primarily focused on seeds and young seedlings, have repeatedly demonstrated increasing survival with increasing distance from parents or decreasing density of propagules (e.g. Clark & Clark 1984; Gilbert 1994; Swamy & Terborgh 2010). Yet a meta-analysis of distance-dependent propagule survival failed to support a general pattern of survival increasing with distance from adult conspecifics, suggesting that there is no need for further experimental tests of the J-C hypothesis in terms of diversity enhancement-results are species-specific, not general (Hyatt 2003). However, a lack of consistent experimental results is not surprising. The outcome of tests of the hypothesis can vary as a function of many factors that can affect successive recruitment stages differently (Schupp 1992; Hyatt 2003; Swamy & Terborgh 2010). This highlights a critical gap-a full test of the J-C model requires data demonstrating that effects carry over to recruitment of new reproductive adults, yet few studies have gone beyond early stages. There is strong inferential evidence that adult trees can show the imprint of J-C effects (e.g. Nathan 2000; Howe & Miriti 2004), and focal individual modelling has clearly demonstrated that J-C effects can operate from sapling through adult stages in a significant number of species (Peters 2003). It is likely that such results are not unusual, but there have been few attempts to demonstrate J-C spacing at the adult stage. In this issue of Molecular Ecology, Steinitz (2011) studied the Mediterranean pine Pinus halepensis (Aleppo pine) and combined a unique situation with an innovative approach to provide the most elegant demonstration yet that adult recruits are spaced further from parents than expected from the initial seed distribution, clear evidence of a J-C effect carrying over to reproductive adults. A major advancement of this study is that it incorporates estimates of the initial patterns of seed dispersal and parentage analysis of adult-offspring relationships, illustrating the value of combined field and genetic approaches.
机译:Janzen-Connell(J-C)模型(Janzen 1970; Connell 1971)在过去的40年中一直是森林群落动态的主要但有争议的范例,特别是在热带地区。随着与亲本植物距离的增加,分散种子的密度降低,并且由于对距离和密度敏感的种子和幼苗敌人的影响降低,繁殖体存活率增加,从而导致在距亲本一定距离处达到峰值募集,而很少募集接近成年种。该间距在成年树木附近产生间隙,以募集异种,增强物种共存和物种丰富度。主要针对种子和幼苗的田间研究反复表明,随着与父母之间距离的增加或繁殖体密度的降低,存活率会不断提高(例如Clark&Clark 1984; Gilbert 1994; Swamy&Terborgh 2010)。然而,关于距离依赖的繁殖体存活率的荟萃分析未能支持随着成年个体的距离而增加的存活率的一般模式,这表明就多样性增强而言,无需进一步的JC假设的实验性检验-结果是物种-具体而非一般(Hyatt 2003)。然而,缺乏一致的实验结果不足为奇。假设检验的结果可能会因许多因素而有所不同,这些因素可能会不同程度地影响后续的招募阶段(Schupp 1992; Hyatt 2003; Swamy&Terborgh 2010)。这突显了一个关键的缺口-对J-C模型的全面测试需要数据证明其影响会延续到新生殖成年人的招募中,但很少有研究超出了早期阶段。有很强的推论证据表明,成年树可以显示JC效应的烙印(例如Nathan 2000; Howe&Miriti 2004),并且焦点的个体建模清楚地表明,JC效应可以在许多物种中从幼树到成年阶段起作用(彼得斯(2003)。这样的结果很可能并不罕见,但是几乎没有尝试在成年阶段证明J-C间距。在本期《分子生态学》中,Steinitz(2011)研究了地中海松Pinus halepensis(阿勒颇松),并结合了独特的情况和创新的方法,提供了最优雅的证明,即成年新兵与父母的距离比最初预计的要远种子的分布,清楚地证明了JC效应会延续到生殖成年。这项研究的主要进展是,它结合了种子传播初始模式的估计以及成年后代关系的亲子关系分析,从而说明了结合田间和遗传方法的价值。

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