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Impacts of local adaptation of forest trees on associations with herbivorous insects: implications for adaptive forest management

机译:林木的局部适应对与食草昆虫的联系的影响:对适应性森林管理的影响

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摘要

Disruption of species interactions is a key issue in climate change biology. Interactions involving forest trees may be particularly vulnerable due to evolutionary rate limitations imposed by long generation times. One mitigation strategy for such impacts is Climate matching – the augmentation of local native tree populations by input from nonlocal populations currently experiencing predicted future climates. This strategy is controversial because of potential cascading impacts on locally adapted animal communities. We explored these impacts using abundance data for local native gallwasp herbivores sampled from 20 provenances of sessile oak (Quercus petraea) planted in a common garden trial. We hypothesized that non-native provenances would show (i) declining growth performance with increasing distance between provenance origin and trial site, and (ii) phenological differences to local oaks that increased with latitudinal differences between origin and trial site. Under a local adaptation hypothesis, we predicted declining gallwasp abundance with increasing phenological mismatch between native and climate-matched trees. Both hypotheses for oaks were supported. Provenance explained significant variation in gallwasp abundance, but no gall type showed the relationship between abundance and phenological mismatch predicted by a local adaptation hypothesis. Our results show that climate matching would have complex and variable impacts on oak gall communities.
机译:破坏物种相互作用是气候变化生物学中的关键问题。由于长世代的进化速率限制,涉及林木的相互作用可能特别脆弱。解决此类影响的一种缓解策略是气候匹配-通过当前正在经历预测的未来气候的非本地人口的投入来增加本地本地树木的人口。由于对当地适应的动物群落的潜在连锁影响,该策略引起争议。我们使用丰富的数据探索了这些影响,这些数据是从在普通花园试验中种植的20种无梗橡木(Quercus petraea)本地取样的当地天然gall虫草食动物采集的。我们假设非本地种源将表现出(i)随着种源与试验地点之间距离的增加,生长性能下降,以及(ii)与本地橡树的物候差异随来源与试验地点之间的纬度差异而增加。在局部适应性假设下,我们预测随着自然和气候匹配树木之间物候失配的增加,gall的丰度将下降。橡树的两个假设都得到了支持。种源解释了gall的丰度有显着变化,但是没有胆类型显示出丰度与局部适应性假设所预测的物候失配之间的关系。我们的结果表明,气候匹配将对橡树胆群落产生复杂而多变的影响。

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