Salicylic Acid and Abiotic Stress Responses in Rice

水杨酸 肉桂酸 非生物胁迫 脯氨酸 谷胱甘肽还原酶 非生物成分 耐旱性 植物 生物化学 生物 园艺 化学 谷胱甘肽 氨基酸 基因 谷胱甘肽过氧化物酶 古生物学
作者
Magda Pál,Viktória Kovács,G. Szalai,Vilmos Soós,Xin Ma,H. Liu,Hanwei Mei,Tibor Janda
出处
期刊:Journal of Agronomy and Crop Science [Wiley]
卷期号:200 (1): 1-11 被引量:80
标识
DOI:10.1111/jac.12037
摘要

Abstract Among plant species rice ( O ryza sativa L.) leaves can be characterised with a very high level of salicylic acid content; however, its exact role is still poorly understood. In the present work, rice genotypes with different levels of drought tolerance have been subjected to PEG ‐induced drought or cold stress at 10 °C in order to find relationship between the salicylic acid metabolism and the level of stress tolerance; and between the salicylic acid level and other protective mechanisms. Although the drought‐sensitive genotypes usually contained slightly higher amount of salicylic acid than the tolerant ones, there was no strong correlation between the salicylic acid contents and the degree of drought tolerance. Because the expression pattern of the chorismate synthase and isochorismate synthase genes did not correlate with the level of salicylic acid, but there was a correlation between the levels of salicylic acid and ortho‐ hydroxy‐cinnamic, it is assumed that the salicylic acid synthesis via ortho‐ hydroxy‐cinnamic acid may play a more decisive role than the chorismate–isochorismate–salicylic acid pathway in rice. While the activity of the glutathione reductase enzyme did not show correlation with drought tolerance, the glutathione S ‐transferase activities were usually higher in the leaves of the drought‐tolerant varieties than in the sensitive ones. The salicylic acid contents in the leaves were not substantially affected by the applied stress conditions; however, other stress‐related compounds polyamines showed marked, stress‐specific responses. Correlation data suggest that there is no direct link between the abiotic stress‐induced polyamine changes and the salicylic acid metabolism in rice.
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