Engineering Research Center of Ecology and Agricultural Use of Wetland, Ministry of Education, Yangtze University, Jingzhou 434023, China; Hubei Collaborative Innovation Center for Grain Industry, Yangtze University, Jingzhou 434023, China.
China National Rice Research Institute, Hangzhou 310006, China.
Ecotoxicol Environ Saf. 2018 Jan;147:913-918. doi: 10.1016/j.ecoenv.2017.09.064. Epub 2017 Oct 2.
The remobilization of cadmium (Cd) from shoots to grain is the key process to determine the Cd accumulation in grain. The apoplastic pH of plants is an important factor and signal in influencing on plant responding to environmental variation and inorganic elements uptake. It is proposed that pH of rice plants responds and influences on Cd remobilization from shoots to grain when rice is exposed to Cd stress. The results of hydroponic experiment showed that: pH of the rice leaf vascular bundles among 3 cultivars was almost increased, pH value of 1 cultivar was slightly increasing when rice plants were treated with Cd. The decrease degree of H concentration in leaf vascular bundles was different among cultivars. The cultivar with higher decreasing in H concentration, showed higher Cd transfer efficiency from shoots to grain. The H concentration of leaf vascular bundles under normal condition was negatively correlated to cadmium accumulation in leaf. Moreover, pH change was related to Cd accumulation in shots and remobilization from shoots to grain. Uncovering the role of pH response is a key component for the understanding Cd uptake and remobilization mechanism for rice production.
镉(Cd)从茎叶向籽粒的再转移是决定籽粒镉积累的关键过程。植物质外体 pH 值是影响植物对环境变化和无机元素吸收的重要因素和信号。当水稻受到镉胁迫时,有人提出水稻对镉再转移的反应和影响。水培实验结果表明:在 3 个品种中,水稻叶片维管束的 pH 值几乎都升高,当水稻受到镉处理时,1 个品种的 pH 值略有升高。叶片维管束中 H 浓度的降低程度在品种间存在差异。H 浓度降低程度较高的品种,从茎叶向籽粒转移 Cd 的效率越高。正常条件下叶片维管束中的 H 浓度与叶片中镉的积累呈负相关。此外,pH 值的变化与 Cd 在茎叶中的积累和从茎叶中的再转移有关。揭示 pH 值响应的作用是了解水稻生产中 Cd 吸收和再转移机制的关键组成部分。