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Enhancement of photosynthesis in post-disturbance resprouts of two co-occurring Mediterranean Erica species

机译:两种同时出现的地中海埃里卡物种的干扰后新芽中光合作用的增强

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The higher growth rates of resprouting shoots compared with those of mature plants in resprouter woody species are supported by higher rates of photosynthesis and transpiration. In this contribution we hypothesize that species with higher resprouting vigour will show a larger enhancement of photosynthesis in resprouting shoots. We test this hypothesis by comparing gas exchange and leaf parameters between resprouting and mature plants in Erica scoparia and E. australis. These two Erica species co-occur in Mediterranean heathlands of the Strait of Gibraltar. Erica scoparia has a higher rate of post-disturbance starch recovery than E. australis, which makes it more resistant to recurrent disturbance. We tested the hypothesis that enhancement of photosynthesis and water use characteristics of resprouting shoots compared with mature plants should be more pronounced in E. scoparia. In both species, resprouts had higher efficiency in the use of light and higher maximum net photosynthesis than mature shoots. However, contrary to expectations, differences in the photosynthetic performance between resprouts and mature plant shoots were larger in E. australis. Higher root to shoot ratios in resprouting E. australis plants, determined by their slower above-ground recovery, together with stronger demand from carbon sinks might explain this result.
机译:与较高的光合作用和蒸腾速率相比,具有较高生殖能力的木本物种中,与成熟植物相比,具有较高生殖能力的新芽生长速度更高。在此贡献中,我们假设具有较高再生活力的物种在再生芽中将表现出更大的光合作用增强。我们通过比较重生和成熟植物在Erica scoparia和E. australis中的气体交换和叶片参数来检验该假设。这两种埃里卡种同时出现在直布罗陀海峡的地中海荒地上。 Erica scoparia的干扰后淀粉回收率高于E.ustralis,这使其对复发性干扰的抵抗力更高。我们测试了这样一种假说:与成熟植物相比,重生芽的光合作用和水分利用特征在E. scoparia中更明显。在两个物种中,与成熟芽相比,新芽在光的利用上具有更高的效率,并且最大净光合作用更高。然而,与预期相反,南芽肠杆菌的新芽和成熟植物新芽之间的光合性能差异更大。重新萌芽的澳洲野葛植物的较高的根冠比,取决于其较慢的地上恢复速度,再加上碳汇的需求增加,可能解释了这一结果。

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