芸苔属
水杨酸
超量积累植物
谷胱甘肽
液泡
谷氨酸受体
生物
植物
化学
生物化学
植物修复
重金属
环境化学
酶
受体
细胞质
作者
Zhongwei Zhang,Zong-Lin Deng,Qi Tao,Hong-Qian Peng,Fan Wu,Yu‐Fan Fu,Xinyue Yang,Peizhou Xu,Yun Li,Changquan Wang,Yang‐Er Chen,Ming Yuan,Ting Lan,Xiaoyan Tang,Guangdeng Chen,Jian Zeng,Shu Yuan
出处
期刊:Chemosphere
[Elsevier BV]
日期:2021-12-29
卷期号:292: 133466-133466
被引量:15
标识
DOI:10.1016/j.chemosphere.2021.133466
摘要
Most hyperaccumulator plants have little economic values, and therefore have not been widely used in Cd-contaminated soils. Rape species are Cd hyperaccumulators with high economic values. Black mustard seed (Brassica juncea) has a higher accumulation ability and a higher tolerance for Cd than oilseed rape (Brassica napus), but its biomass is relatively low and its geographical distribution is limited. However, it is unknown why B. juncea (Bj) is more tolerant to and accumulates more Cd than B. napus (Bn). Here, we found that the differences in Cd accumulation and tolerance between the two species is mainly because Bj plants have higher levels of salicylic acid and glutamic acid than Bn plants. Exogenous salicylate and glutamate treatments enhanced Cd accumulation (salicylate + glutamate co-treatment doubled Cd accumulation level in Bn seedlings) but reduced oxidative stresses by increasing glutathione biosynthesis and activating phytochelatin-based sequestration of Cd into vacuoles. Our results provide a new idea to simultaneously improve Cd accumulation and Cd tolerance in B. napus.
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