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Prolonged dry periods between rainfall events shorten the growth period of the resurrection plant Reaumuria soongorica.


ABSTRACT: The resurrection plant Reaumuria soongorica is widespread across Asia, southern Europe, and North Africa and is considered to be a constructive keystone species in desert ecosystems, but the impacts of climate change on this species in desert ecosystems are unclear. Here, the morphological responses of R. soongorica to changes in rainfall quantity (30% reduction and 30% increase in rainfall quantity) and interval (50% longer drought interval between rainfall events) were tested. Stage-specific changes in growth were monitored by sampling at the beginning, middle, and end of the growing season. Reduced rainfall decreased the aboveground and total biomass, while additional precipitation generally advanced R. soongorica growth and biomass accumulation. An increased interval between rainfall events resulted in an increase in root biomass in the middle of the growing season, followed by a decrease toward the end. The response to the combination of increased rainfall quantity and interval was similar to the response to increased interval alone, suggesting that the effects of changes in rainfall patterns exert a greater influence than increased rainfall quantity. Thus, despite the short duration of this experiment, consequences of changes in rainfall regime on seedling growth were observed. In particular, a prolonged rainfall interval shortened the growth period, suggesting that climate change-induced rainfall variability may have significant effects on the structure and functioning of desert ecosystems.

SUBMITTER: Zhang Z 

PROVIDER: S-EPMC5773312 | biostudies-literature | 2018 Jan

REPOSITORIES: biostudies-literature

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Prolonged dry periods between rainfall events shorten the growth period of the resurrection plant <i>Reaumuria soongorica</i>.

Zhang Zhengzhong Z   Shan Lishan L   Li Yi Y  

Ecology and evolution 20171212 2


The resurrection plant <i>Reaumuria soongorica</i> is widespread across Asia, southern Europe, and North Africa and is considered to be a constructive keystone species in desert ecosystems, but the impacts of climate change on this species in desert ecosystems are unclear. Here, the morphological responses of <i>R. soongorica</i> to changes in rainfall quantity (30% reduction and 30% increase in rainfall quantity) and interval (50% longer drought interval between rainfall events) were tested. St  ...[more]

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