The effects of climate change associated abiotic stresses on maize phytochemical defenses

被引:86
|
作者
Vaughan, Martha M. [1 ]
Block, Anna [2 ]
Christensen, Shawn A. [2 ]
Allen, Leon Hartwell [2 ]
Schmelz, Eric A. [3 ]
机构
[1] ARS, Mycotoxin Prevent & Appl Microbiol Res Unit, Natl Ctr Agr Utilizat Res, USDA, 1815 N Univ St, Peoria, IL 61604 USA
[2] ARS, Chem Res Unit, Ctr Med Agr & Vet Entomol, USDA, 1600 SW 23rd Dr, Gainesville, FL 32608 USA
[3] Univ Calif San Diego, Sect Cell & Dev Biol, 9500 Gilman Dr, La Jolla, CA 92093 USA
关键词
Maize; Abiotic and biotic stress; Benzoxazinoids; Volatile organic compounds; Terpenoid phytoalexins; Climate resilience; ELEVATED CARBON-DIOXIDE; INDUCED PLANT VOLATILES; FUSARIUM HEAD BLIGHT; CHEMICAL DEFENSES; HYDROXAMIC ACIDS; INNATE IMMUNITY; CHANGE IMPACTS; RESISTANCE; EMISSION; GROWTH;
D O I
10.1007/s11101-017-9508-2
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Reliable large-scale maize production is an essential component of global food security; however, sustained efforts are needed to ensure optimized resilience under diverse crop stress conditions. Climate changes are expected to increase the frequency and intensity of both abiotic and biotic stress. Protective phytochemicals play an important role in both abiotic stress resilience and resistance to biotic challenges, yet the concentration and composition of these phytochemicals are also dependent on climate variables. We review the research on the effects of climate change associated abiotic stresses on three classes of maize defense metabolites, including benzoxazinoids, volatile organic compounds, and terpenoid phytoalexins. Despite significant knowledge gaps that still exist, it is evident that climate change will influence maize phytochemicals associated with resilient productivity. While broad generalizations are not yet possible, climate induced changes in phytochemicals are context specific and dependent upon developmental stage and tissue type. Under conditions of drought, maize modulates different classes of defense phytochemicals to protect the above-and belowground tissues. Aboveground the benzoxazinoid defenses are stimulated, but belowground terpenoid phytoalexins are predominantly deployed. Changes in the allocation or distribution of the different classes of defense metabolites or signaling molecules have the potential to further shape the biodiversity and abundance of pests within the maize agroecosystem. A better understanding of the underlying genetics, biosynthetic pathways, regulation and precise biological roles of maize phytochemicals modulated by arrays of climatic conditions will be required to ensure optimal plant resilience and productivity in the face of combined biotic and abiotic stresses.
引用
收藏
页码:37 / 49
页数:13
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