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砷胁迫下不同蓖麻基因型的生长、光合作用、氧化应激、金属积累和 NRAMP 基因的差异响应。

Differential responses of growth, photosynthesis, oxidative stress, metals accumulation and NRAMP genes in contrasting Ricinus communis genotypes under arsenic stress.

机构信息

Department of Life Sciences, Central University of Jharkhand, Brambe, Ranchi, Jharkhand, 835205, India.

Crop Development Centre, Department of Plant Sciences, University of Saskatchewan, 51 Campus Drive, Saskatoon, SK, S7N 5A8, Canada.

出版信息

Environ Sci Pollut Res Int. 2019 Oct;26(30):31166-31177. doi: 10.1007/s11356-019-06243-2. Epub 2019 Aug 28.

Abstract

Effect of arsenate [As(V)] on biomass, photosynthetic rate, stomatal conductance, transpiration, oxidative stress, accumulation of As, Fe, Zn, Cu and Mn and expression of NRAMP genes was investigated in As(V) tolerant and sensitive genotypes of bioenergy crop Ricinus communis. As(V) treatments (100 and 200 μM) led to significant reduction in root and leaf biomass, photosynthetic rate, stomatal conductance and transpiration in GCH 2 and GCH 4 genotypes but no significant change or increase was observed in WM and DCH 177 genotypes. No significant difference was observed in hydrogen peroxide content and lipid peroxidation in As(V)-treated tolerant genotypes compared to control, whereas these parameters enhanced significantly in As(V)-treated sensitive genotypes. GCH 2 accumulated around two times As in leaves and showed significant reduction in concentration of Zn and Mn in the leaves and roots due to 200 μM As(V) treatment compared to WM. NRAMP genes are critical for uptake and distribution of essential divalent metal cations, photosynthesis and controlled production of reactive oxygen species in plants. RcNRAMP2, RcNRAMP3 and RcNRAMP5 genes showed differential expression in response to 200 μM As(V) in GCH 2 and WM suggesting that NRAMP genes are associated with differential responses of WM and GCH 2 genotypes to As(V) stress.

摘要

砷酸盐 [As(V)] 对生物能源作物蓖麻耐受和敏感基因型的生物量、光合速率、气孔导度、蒸腾、氧化应激、砷、铁、锌、铜和锰的积累以及 NRAMP 基因表达的影响进行了研究。As(V)处理(100 和 200 μM)导致 GCH 2 和 GCH 4 基因型的根和叶生物量、光合速率、气孔导度和蒸腾作用显著降低,但 WM 和 DCH 177 基因型没有观察到显著变化或增加。与对照相比,耐受基因型中过氧化氢含量和脂质过氧化没有观察到显著差异,而在敏感基因型中这些参数显著增强。GCH 2 叶片中积累的砷约为 2 倍,由于 200 μM As(V)处理,叶片和根中的 Zn 和 Mn 浓度显著降低。NRAMP 基因对于植物中二价金属阳离子的摄取和分布、光合作用和活性氧的控制产生至关重要。RcNRAMP2、RcNRAMP3 和 RcNRAMP5 基因在 GCH 2 和 WM 对 200 μM As(V)的响应中表现出差异表达,表明 NRAMP 基因与 WM 和 GCH 2 基因型对 As(V)胁迫的不同响应有关。

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