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四个大豆品种幼苗期镉的亚细胞分布及化学形态比较

Comparison of subcellular distribution and chemical forms of cadmium among four soybean cultivars at young seedlings.

作者信息

Wang Peng, Deng Xiaojuan, Huang Yian, Fang Xiaolong, Zhang Jie, Wan Haibo, Yang Cunyi

机构信息

Guangdong Provincial Key Laboratory of Plant Molecular Breeding, Guangdong Sub-center of National Center for Soybean Improvement, College of Agriculture, South China Agricultural University, Guangzhou, 510642, Guangdong, China.

出版信息

Environ Sci Pollut Res Int. 2015 Dec;22(24):19584-95. doi: 10.1007/s11356-015-5126-y. Epub 2015 Aug 15.

Abstract

The hydroponic experiment was carried out to investigate the Cd subcellular distribution and chemical forms in roots and shoots among four soybean seedling cultivars with two Cd treatments. HX3 and GC8, two tolerant and low-grain-Cd-accumulating cultivars, had the lowest Cd concentration in roots and high Cd concentration in shoots, while BX10 and ZH24, two sensitive and high-grain-Cd-accumulating cultivars, had the highest Cd concentration in roots and the lowest Cd concentration in shoots at young seedling stage. Furthermore, the sequence of Cd subcellular distribution in roots at two Cd levels was cell wall (53.4-75.5 %) > soluble fraction (15.8-40.4 %) > organelle fraction (2.0-14.7 %), but in shoots, was soluble fraction (39.3-74.8 %) > cell wall (16.0-52.0 %) > organelle (4.8-19.5 %). BX10 and ZH24 had higher Cd concentration in all subcellular fractions in roots, but HX3 and GC8 had higher Cd concentration of soluble fraction in shoots. The sequence of Cd chemical forms in roots was FNacl (64.1-79.5 %) > FHAC (3.4-21.5 %) > Fd-H2O (3.6-13.0 %) > Fethanol (1.4-21.8) > FHCl (0.3-1.6 %) > Fother (0.2-1.4 %) at two Cd levels but, in shoots, was FNacl (19.7-51.4 %) ≥ FHAC (10.2-31.4 %) ≥ Fd-H2O (8.8-28.2 %) ≥ Fethanol (8.9-38.6 %) > FHCl (0.2-9.6 %) > Fother (2.5-11.2 %). BX10 and ZH24 had higher Cd concentrations in each extracted solutions from roots, but from shoots for GC8 and HX3. Taken together, the results uncover that root cell walls and leaf vacuoles might play important roles in Cd detoxification and limiting the symplastic movement of Cd.

摘要

通过水培实验研究了两个镉处理下四个大豆幼苗品种根和地上部中镉的亚细胞分布及化学形态。HX3和GC8是两个耐镉且籽粒镉积累量低的品种,在幼苗期根中镉浓度最低,地上部镉浓度高;而BX10和ZH24是两个对镉敏感且籽粒镉积累量高的品种,根中镉浓度最高,地上部镉浓度最低。此外,两个镉水平下根中镉的亚细胞分布顺序为细胞壁(53.4 - 75.5%)>可溶性组分(15.8 - 40.4%)>细胞器组分(2.0 - 14.7%),但在地上部,顺序为可溶性组分(39.3 - 74.8%)>细胞壁(16.0 - 52.0%)>细胞器(4.8 - 19.5%)。BX10和ZH24根中所有亚细胞组分的镉浓度较高,但HX3和GC8地上部可溶性组分的镉浓度较高。两个镉水平下根中镉的化学形态顺序为氯化钠提取态(64.1 - 79.5%)>醋酸提取态(3.4 - 21.5%)>去离子水提取态(3.6 - 13.0%)>乙醇提取态(1.4 - 21.8)>盐酸提取态(0.3 - 1.6%)>其他提取态(0.2 - 1.4%),但在地上部,顺序为氯化钠提取态(19.7 - 51.4%)≥醋酸提取态(10.2 - 31.4%)≥去离子水提取态(8.8 - 28.2%)≥乙醇提取态(8.9 - 38.6%)>盐酸提取态(0.2 - 9.6%)>其他提取态(2.5 - 11.2%)。BX10和ZH24根中各提取液的镉浓度较高,但GC8和HX3地上部提取液的镉浓度较高。综上所述,结果表明根细胞壁和叶液泡可能在镉解毒及限制镉的共质体运输中起重要作用。

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