Silicon Mitigates Negative Impacts of Drought and UV-B Radiation in Plants

丙二醛 过氧化氢酶 光合作用 化学 超氧化物歧化酶 非生物成分 过氧化物酶 脯氨酸 叶绿素 脂质过氧化 园艺 农学 抗氧化剂 食品科学 植物 生物 生态学 生物化学 有机化学 氨基酸
作者
Anja Mavrič Čermelj,Aleksandra Golob,Katarina Vogel‐Mikuš,Mateja Germ
出处
期刊:Plants [Multidisciplinary Digital Publishing Institute]
卷期号:11 (1): 91-91 被引量:44
标识
DOI:10.3390/plants11010091
摘要

Due to climate change, plants are being more adversely affected by heatwaves, floods, droughts, and increased temperatures and UV radiation. This review focuses on enhanced UV-B radiation and drought, and mitigation of their adverse effects through silicon addition. Studies on UV-B stress and addition of silicon or silicon nanoparticles have been reported for crop plants including rice, wheat, and soybean. These have shown that addition of silicon to plants under UV-B radiation stress increases the contents of chlorophyll, soluble sugars, anthocyanins, flavonoids, and UV-absorbing and antioxidant compounds. Silicon also affects photosynthesis rate, proline content, metal toxicity, and lipid peroxidation. Drought is a stress factor that affects normal plant growth and development. It has been frequently reported that silicon can reduce stress caused by different abiotic factors, including drought. For example, under drought stress, silicon increases ascorbate peroxidase activity, total soluble sugars content, relative water content, and photosynthetic rate. Silicon also decreases peroxidase, catalase, and superoxide dismutase activities, and malondialdehyde content. The effects of silicon on drought and concurrently UV-B stressed plants has not yet been studied in detail, but initial studies show some stress mitigation by silicon.
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