globalchange  > 气候减缓与适应
DOI: 10.1002/fes3.152
WOS记录号: WOS:000459001300003
论文题名:
Impacts of abiotic stresses on the physiology and metabolism of cool-season grasses: A review
作者: Loka, Dimitra1,2; Harper, John2; Humphreys, Mike2; Gasior, Dagmara2; Wootton-Beard, Peter2; Gwynn-Jones, Dylan2; Scullion, John2; Doonan, John2; Kingston-Smith, Alison2; Dodd, Rosalind3; Wang, Jinyang3; Chadwick, David3; Hill, Paul3; Jones, Davey3; Mills, Gina4; Hayes, Felicity4; Robinson, David4
通讯作者: Kingston-Smith, Alison
刊名: FOOD AND ENERGY SECURITY
ISSN: 2048-3694
出版年: 2019
卷: 8, 期:1
语种: 英语
英文关键词: abiotic stresses ; climate change ; cool-season grasses ; metabolism ; physiology
WOS关键词: LOLIUM-PERENNE L. ; ELEVATED CARBON-DIOXIDE ; KENTUCKY BLUEGRASS CULTIVARS ; CREEPING BENTGRASS CULTIVARS ; IMPROVED DROUGHT TOLERANCE ; INDUCED OXIDATIVE STRESS ; TALL FESCUE CULTIVARS ; SOURCE-SINK RELATIONS ; HEAT-STRESS ; WATER-DEFICIT
WOS学科分类: Agronomy ; Food Science & Technology
WOS研究方向: Agriculture ; Food Science & Technology
英文摘要:

Grasslands cover more than 70% of the world's agricultural land playing a pivotal role in global food security, economy, and ecology due to their flexibility and functionality. Climate change, characterized by changes in temperature and precipitation patterns, and by increased levels of greenhouse gases in the atmosphere, is anticipated to increase both the frequency and severity of extreme weather events, such as drought, heat waves, and flooding. Potentially, climate change could severely compromise future forage crop production and should be considered a direct threat to food security. This review aimed to summarize our current understanding of the physiological and metabolic responses of temperate grasses to those abiotic stresses associated with climate change. Primarily, substantial decreases in photosynthetic rates of cool-season grasses occur as a result of high temperatures, water-deficit or water-excess, and elevated ozone, but not CO2 concentrations. Those decreases are usually attributed to stomatal and non-stomatal limitations. Additionally, while membrane instability and reactive oxygen species production was a common feature of the abiotic stress response, total antioxidant capacity showed a stress-specific response. Furthermore, climate change-related stresses altered carbohydrate partitioning, with implications for biomass production. While water-deficit stress, increased CO2, and ozone concentrations resulted in higher carbohydrate content, the opposite occurred under conditions of heat stress and flooding. The extent of damage is greatly dependent on location, as well as the type and intensity of stress. Fortunately, temperate forage grass species are highly heterogeneous. Consequently, through intra- and in particular inter-specific plant hybridization (e.g., Festuca x Lolium hybrids) new opportunities are available to harness, within single genotypes, gene combinations capable of combating climate change.


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资源类型: 期刊论文
标识符: http://119.78.100.158/handle/2HF3EXSE/128349
Appears in Collections:气候减缓与适应

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作者单位: 1.DEMETER, Larisa, Greece
2.Aberystwyth Univ, IBERS, Aberystwyth, Ceredigion, Wales
3.Bangor Univ, Environm Ctr Wales, Bangor, Gwynedd, Wales
4.Environm Ctr Wales, Ctr Ecol & Hydrol, Bangor, Gwynedd, Wales

Recommended Citation:
Loka, Dimitra,Harper, John,Humphreys, Mike,et al. Impacts of abiotic stresses on the physiology and metabolism of cool-season grasses: A review[J]. FOOD AND ENERGY SECURITY,2019-01-01,8(1)
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