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How to quantify plant tolerance to loss of biomass?

机译:如何量化植物对生物量损失的耐受性?

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Abstract In some plant species the whole shoot is occasionally removed, as a result of specialist herbivory, grazing, mowing, or other causes. The plant can adapt to defoliation by allocating more to tolerance and less to growth and defense. Plant tolerance to defoliation (TOL1) is typically measured as the ratio between the average dry weight of a group of damaged plants and a control group of undamaged plants, both measured some time after recovery. We develop a model to clarify what TOL1 actually measures. We advocate keeping regrowth (REG2) and shoot?¢????root ratio, both elements of TOL1, separate in the analysis. Based on a resource trade-off, exotic Jacobaea vulgaris plants from populations in the USA (no specialist herbivory) are expected to grow faster and be less tolerant than native Dutch populations (with specialist herbivory). Indeed Dutch plants had both a significantly larger fraction biomass in roots and faster regrowth (REG2), while US plants attained the highest weight in the control without defoliation. Using key-factor analysis, we illustrate how growth rates, regrowth, and shoot?¢????root ratio each contribute to final biomass (plant fitness). Our proposed method gives more insight in the mechanisms that underly plant tolerance against defoliation and how tolerance contributes to fitness.
机译:摘要在某些植物物种中,由于特殊的食草,放牧,割草或其他原因,有时会去除整个枝条。植物可以通过对耐性分配更多的资源而对生长和防御分配更少的资源来适应落叶。植物的抗脱叶能力(TOL1)通常用一组受损植物的平均干重与对照组中未受损植物的平均干重之比来衡量,二者均在恢复后的一段时间内测量。我们开发了一个模型来阐明TOL1实际测量的内容。在分析中,我们主张保持再生长(REG2)和射根率,这是TOL1的两个要素。基于资源的权衡,来自美国种群(无专门食草动物)的外来雅各花寻常植物预计比荷兰本土种群(有专门食草植物)生长更快且耐受性更差。的确,荷兰植物的根部生物量显着更大,并且再生长(REG2)更快,而美国植物的对照中达到最高重量而无落叶。使用关键因素分析,我们说明了生长速率,再生长和嫩枝根比如何分别影响最终生物量(植物适应性)。我们提出的方法提供了更多的知识,可以了解植物对脱叶的耐受性以及耐受性如何促进健康。

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