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缺铁条件下花生中AhIRT1和AhNRAMP1金属转运蛋白的表达与镉吸收相关。

AhIRT1 and AhNRAMP1 metal transporter expression correlates with Cd uptake in peanuts under iron deficiency.

作者信息

Chen Chu, Xia Shenglan, Deng Rubo, Liu Caifeng, Shi Gangrong

机构信息

College of Life Sciences, Huaibei Normal University, Huaibei, P. R., China.

出版信息

PLoS One. 2017 Oct 5;12(10):e0185144. doi: 10.1371/journal.pone.0185144. eCollection 2017.

Abstract

Fe deficiency may increase Cd accumulation in peanuts. However, the mechanisms are not yet fully understood. In the present study, two contrasting peanut cultivars, Luhua 8 (low seed-Cd cultivar) and Zhenghong 3 (high seed-Cd cultivar) were used to investigate the effect of Fe deficiency on the uptake and accumulation of cadmium (Cd) by hydroponic experiments. Under Fe-sufficient conditions, compared with Luhua 8, Zhenghong 3 had higher specific root length (SRL) and proportion of fine roots with a lower Km for Cd and showed slightly higher expression of AhIRT1 and AhNRAMP1 in the roots. These traits may be responsible for high capacity for Cd accumulation in Zhenghong 3. Under Fe deficiency, the increase of Cd accumulation was much larger in Zhenghong 3 than in Luhua 8. Kinetics studies revealed that the Vmax for Cd influx was 1.56-fold higher in Fe-deficient plants than in Fe-sufficient plants for Zhenghong 3, versus 0.48-fold higher for Luhua 8. Moreover, the increased expression levels of AhIRT1 and AhNRAMP1 induced by Fe deficiency was higher in Zhenghong 3 than in Luhua 8. Yeast complementation assays suggested that the AhIRT1 and AhNRAMP1 may function as transporters involved in Cd uptake. In conclusion, the different Cd accumulation between the two cultivars under Fe deficiency may be correlated with Vmax value for Cd uptake and the expression levels of AhIRT1 and AhNRAMP1 in the roots.

摘要

缺铁可能会增加花生中镉的积累。然而,其机制尚未完全明确。在本研究中,选用了两个差异显著的花生品种,鲁花8号(低种子镉品种)和正红3号(高种子镉品种),通过水培实验研究缺铁对镉吸收和积累的影响。在铁充足的条件下,与鲁花8号相比,正红3号具有更高的比根长(SRL)和细根比例,对镉的Km值较低,且根系中AhIRT1和AhNRAMP1的表达略高。这些特性可能是正红3号镉积累能力强的原因。在缺铁条件下,正红3号镉积累的增加幅度远大于鲁花8号。动力学研究表明,对于正红3号,缺铁植株中镉流入的Vmax比铁充足植株高1.56倍,而鲁花8号仅高0.48倍。此外,缺铁诱导的AhIRT1和AhNRAMP1表达水平的增加在正红3号中高于鲁花8号。酵母互补试验表明,AhIRT1和AhNRAMP1可能作为参与镉吸收的转运蛋白发挥作用。总之,缺铁条件下两个品种间不同的镉积累可能与镉吸收的Vmax值以及根系中AhIRT1和AhNRAMP1的表达水平有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/33ce/5628823/1ed922370756/pone.0185144.g001.jpg

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