College of Life Sciences, Nanjing Agricultural University, Nanjing 210095, China.
College of Resources and Environmental Sciences, Nanjing Agricultural University, Nanjing 210095, China.
Ecotoxicol Environ Saf. 2021 Dec 20;227:112920. doi: 10.1016/j.ecoenv.2021.112920. Epub 2021 Oct 20.
Cadmium (Cd) is one of the toxic heavy metals in soil, which not only suppresses crop production but also threatens human health. In this study, we aim to clarify the biological function of Cd-related gene BcHIPP16, so as to provide potential genetic solutions to decrease the Cd levels of pak choi. Tissue expression analysis showed that BcHIPP16 expressed in almost all the plant bodies. The transcriptional level of BcHIPP16 in roots was higher than that in shoots, which was significantly induced by copper (Cu) deficiency and Cd exposure conditions. Subcellular localization revealed that BcHIPP16 localized in plasma membrane. Expressing BcHIPP16 in yeast cells improved the sensitivity to Cu and Cd and improved their accumulation in yeast. Furthermore, the Cu and Cd content of Arabidopsis seedlings were increased and complemented, respectively when expressing BcHIPP16 in wild type (WT) and hip16 mutants. Non-invasive Micro-test Technology (NMT) was used to measure the real-time Cd influx from the root surface of BcHIPP16 transgenic Arabidopsis lines, and the result demonstrated that BcHIPP16 promoted Cd influx into Arabidopsis root cells. Taken together, our study showed that BcHIPP16 contributed to absorbing nutrient metal Cu and heavy metal Cd in planta.
镉(Cd)是土壤中有毒重金属之一,不仅抑制作物生长,还威胁人类健康。本研究旨在阐明与镉相关的基因 BcHIPP16 的生物学功能,以期为降低白菜体内镉含量提供潜在的遗传解决方案。组织表达分析表明,BcHIPP16 在几乎所有植物组织中表达。根中 BcHIPP16 的转录水平高于茎,且其受铜(Cu)缺乏和 Cd 暴露条件的显著诱导。亚细胞定位表明 BcHIPP16 定位于质膜上。在酵母细胞中表达 BcHIPP16 提高了对 Cu 和 Cd 的敏感性,并增加了它们在酵母中的积累。此外,在拟南芥野生型(WT)和 hip16 突变体中表达 BcHIPP16 时,其幼苗的 Cu 和 Cd 含量分别增加和得到补充。非侵入性微测技术(NMT)用于测量 BcHIPP16 转基因拟南芥系从根表面实时摄取 Cd 的情况,结果表明 BcHIPP16 促进了 Cd 进入拟南芥根细胞。总之,本研究表明 BcHIPP16 有助于植物吸收营养金属 Cu 和重金属 Cd。