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Drought-induced responses of photosynthesis and antioxidant metabolism in higher plants

脱落酸 光合作用 非生物胁迫 耐旱性 渗透调节剂 生物 渗透压 鲁比斯科 气孔导度 非生物成分 脯氨酸 植物 生态学 生物化学 氨基酸 基因
作者
A. Ramachandra Reddy,K.V. Chaitanya,Munusamy Vivekanandan
出处
期刊:Journal of Plant Physiology [Elsevier BV]
卷期号:161 (11): 1189-1202 被引量:2218
标识
DOI:10.1016/j.jplph.2004.01.013
摘要

Environmental stresses trigger a wide variety of plant responses, ranging from altered gene expression and cellular metabolism to changes in growth rates and crop yields. A plethora of plant reactions exist to circumvent the potentially harmful effects caused by a wide range of both abiotic and biotic stresses, including light, drought, salinity, high temperatures, and pathogen infections. Among the environmental stresses, drought stress is one of the most adverse factors of plant growth and productivity. Understanding the biochemical and molecular responses to drought is essential for a holistic perception of plant resistance mechanisms to water-limited conditions. Drought stress progressively decreases CO2 assimilation rates due to reduced stomatal conductance. Drought stress also induces reduction in the contents and activities of photosynthetic carbon reduction cycle enzymes, including the key enzyme, ribulose-1,5-bisphosphate carboxylase/oxygenase. The critical roles of proline and glycine-betaine, as well as the role of abscisic acid (ABA), under drought stress conditions have been actively researched to understand the tolerance of plants to dehydration. In addition, drought stress-induced generation of active oxygen species is well recognized at the cellular level and is tightly controlled at both the production and consumption levels in vivo, through increased antioxidative systems. Knowledge of sensing and signaling pathways, including ABA-mediated changes in response to drought stress, is essential to improve crop management. This review focuses on the ability and strategies of higher plants to respond and adapt to drought stress.

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