College of Resources and Environmental Sciences, Southwest University, Chongqing, 400715, People's Republic of China.
College of Agronomy and Biotechnology, Southwest University, Chongqing, 400715, People's Republic of China.
Environ Sci Pollut Res Int. 2019 May;26(14):13717-13724. doi: 10.1007/s11356-018-2509-x. Epub 2018 Jun 16.
Pot experiment was conducted to study the difference of cadmium uptake and OAS and IRT genes' expression between the two ryegrass varieties under cadmium stress. The results showed that with the increase of cadmium levels, the dry weights of roots of the two ryegrass varieties, and the dry weights of shoots and plants of Abbott first increased and then decreased. When exposed to 75 mg kg Cd, the dry weights of shoot and plant of Abbott reached the maximum, which increased by 11.13 and 10.67% compared with the control. At 75 mg kg Cd, cadmium concentrations in shoot of the two ryegrass varieties were higher than the critical value of Cd hyperaccumulator (100 mg kg), 111.19 mg kg (Bond), and 133.69 mg kg (Abbott), respectively. The OAS gene expression in the leaves of the two ryegrass varieties showed a unimodal curve, which was up to the highest at the cadmium level of 150 mg kg, but fell back at high cadmium levels of 300 and 600 mg kg. The OAS gene expression in Bond and Abbott roots showed a bimodal curve. The OAS gene expression in Bond root and Abbott stem mainly showed a unimodal curve. The expression of IRT genes family in the leaves of ryegrass varieties was basically in line with the characteristics of unimodal curve, which was up to the highest at cadmium level of 75 or 150 mg kg, respectively. The IRT expression in the ryegrass stems showed characteristics of bimodal and unimodal curves, while that in the roots was mainly unimodal. The expression of OAS and IRT genes was higher in Bond than that in Abbott due to genotype difference between the two varieties. The expression of OAS and IRT was greater in leaves than that in roots and stems. Ryegrass tolerance to cadmium can be increased by increasing the expression of OAS and IRT genes in roots and stems, and transfer of cadmium from roots and stems to the leaves can be enhanced by increasing expression OAS and IRT in leaves.
采用盆栽试验研究了镉胁迫下两种黑麦草品种对镉的吸收差异及 OAS 和 IRT 基因表达的变化。结果表明,随着镉水平的增加,两种黑麦草品种的根干重、茎干重和地上部干重先增加后减少。在 75mgkg Cd 处理时,Abbott 的地上部和地上部干重均达到最大值,较对照分别增加了 11.13%和 10.67%。在 75mgkg Cd 处理时,两种黑麦草地上部镉浓度均高于 Cd 超积累植物(100mgkg)的临界值,分别为 111.19mgkg(Bond)和 133.69mgkg(Abbott)。两种黑麦草叶片 OAS 基因表达呈单峰曲线,在 150mgkg Cd 时达到最高,但在 300 和 600mgkg Cd 时又有所下降。Bond 和 Abbott 根系 OAS 基因表达呈双峰曲线。Bond 根系和 Abbott 茎部 OAS 基因表达主要呈单峰曲线。两种黑麦草叶片 IRT 基因家族表达基本呈单峰曲线特征,在 75 或 150mgkg Cd 时达到最高。黑麦草茎部 IRT 表达呈双峰和单峰曲线特征,而根部主要呈单峰曲线。由于两种品种间基因型差异,Bond 的 OAS 和 IRT 基因表达高于 Abbott。OAS 和 IRT 基因在叶片中的表达高于根系和茎部,而在根系和茎部中的表达高于叶片。通过增加根和茎部 OAS 和 IRT 基因的表达,可以提高黑麦草对镉的耐受性,并通过增加叶片中 OAS 和 IRT 的表达来增强镉从根和茎部向叶片的转移。