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中纬度旱地草原的气候变化与C4和C3禾本科植物

Climate change and C and C grasses in a midlatitude dryland steppe.

作者信息

Anderson Robert C, Martyn Trace E, Renne Rachel R, Burke Ingrid C, Lauenroth William K

机构信息

Yale School of the Environment New Haven Connecticut USA.

Oregon State University La Grande Oregon USA.

出版信息

Ecol Evol. 2024 Aug 1;14(8):e70103. doi: 10.1002/ece3.70103. eCollection 2024 Aug.

Abstract

Climate change is projected to alter the structure of plant communities due to increasing temperatures and changes to precipitation patterns, particularly in midlatitude dryland ecosystems. Modifications to climatic suitability may lead to major community changes such as altered dominant plant functional types. Previous studies have indicated that climatic suitability is likely to increase for C grasses and decrease for C grasses in the Western United States. However, if no C grass species currently exist to serve as a propagule source, expansion into areas of increased suitability will be limited. We conducted a field and modeling study in the Upper Green River Basin (UGRB) of Western Wyoming to determine if (1) C grasses are present to provide a propagule source and (2) C grasses are likely to increase in importance relative to C grasses due to climatic changes. We searched 44 sites for C grasses to establish presence, and modeled suitability at 35 sites using 17 Global Climate Models, two greenhouse gas Representative Concentration Pathways (RCPs; 4.5 and 8.5), and two time periods (mid- and late century; 2030-2060 and 2070-2099, respectively). We found C grasses at 10 of the 44 sites, indicating that there is a present propagule source. Our model projected increases in suitability for both C and C grasses across sites for all RCPs and time periods. In the mid-century RCP 4.5 scenario, the C functional type increased in projected biomass in 29 of 35 sites, and the C type increased in 31 sites. In this scenario, C grasses increased in projected biomass by a median 4 g m (5% change), and C grass biomass increased by a median 8 g m (21% change). Our study suggests that climate change will increase climatic suitability for grasses across the UGRB, and that all requirements are in place for C grasses to increase in abundance.

摘要

预计气候变化将因气温升高和降水模式变化而改变植物群落结构,特别是在中纬度旱地生态系统中。气候适宜性的改变可能导致主要的群落变化,如优势植物功能类型的改变。先前的研究表明,美国西部C4草本植物的气候适宜性可能增加,而C3草本植物的气候适宜性可能降低。然而,如果目前不存在C4草本植物物种作为繁殖体来源,那么向适宜性增加区域的扩张将受到限制。我们在怀俄明州西部的上格林河盆地(UGRB)进行了一项实地和建模研究,以确定(1)是否存在C4草本植物作为繁殖体来源,以及(2)由于气候变化,C4草本植物相对于C3草本植物的重要性是否可能增加。我们在44个地点搜索C4草本植物以确定其存在情况,并使用17个全球气候模型、两种温室气体代表性浓度路径(RCPs;4.5和8.5)以及两个时间段(本世纪中叶和后期;分别为2030 - 2060年和2070 - 2099年)对35个地点的适宜性进行建模。我们在44个地点中的10个发现了C4草本植物,表明存在当前的繁殖体来源。我们的模型预测,对于所有RCPs和时间段,各地点C3和C4草本植物的适宜性都会增加。在本世纪中叶RCP 4.5情景下,35个地点中有29个的C4功能类型预测生物量增加,31个地点的C3类型增加。在此情景下,C4草本植物预测生物量中位数增加4 g m²(5%变化),C3草本植物生物量中位数增加8 g m²(21%变化)。我们的研究表明,气候变化将增加UGRB地区草本植物的气候适宜性,并且C4草本植物数量增加的所有条件都已具备。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d9be/11294577/8ac936a15983/ECE3-14-e70103-g004.jpg

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