Cu2+和Cr6+金属胁迫对萝卜幼苗多胺、生长素、脱落酸滴度和抗氧化酶活性的影响

S. Choudhary, R. Bhardwaj, B. D. Gupta, P. Dutt, Rajinder K. Gupta, M. Kanwar, Pitamber Dutt
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引用次数: 20

摘要

研究了铜和铬对莴苣内源多胺、生长素、脱落酸和抗氧化酶活性的影响。Pusa chetki幼苗。多胺中腐胺和亚精胺含量较对照组分别提高62.44µg g-1 f.w.和402.8µg g-1 f.w.。在Cu2+金属胁迫幼苗中,精子胺的浓度最高(1287.9µg g-1 f.w.),在对照中未见。另一方面,与对照和Cu2+金属处理的幼苗相比,Cr6+金属处理的幼苗腐胺(1.43µg g-1 f.w)、尸胺(0.09µg g-1 f.w)、亚精胺(277.99µg g-1 f.w)和精胺(2.29µg g-1 f.w)的含量降低。与对照相比,在Cu2+和Cr6+金属胁迫下,游离和结合IAA浓度显著下降。在Cu2+和Cr6+金属处理的幼苗中检测到对照幼苗中未记录的萘乙酸。Cu2+和Cr6+金属胁迫下愈创木酚过氧化物酶和过氧化氢酶活性显著降低。超氧化物歧化酶活性在Cr6+而非Cu2+金属处理下显著增强。此外,还测定了Cu2+和Cr6+金属对幼苗生长的毒性。数据表明,Cr6+比暴露于Cu2+金属更具有植物毒性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Changes induced by Cu2+ and Cr6+ metal stress in polyamines, auxins, abscisic acid titers and antioxidative enzymes activities of radish seedlings
The present study determined the effects of copper and chromium metals on the endogenous titers of polyamines, auxins, abscisic acid and antioxidative enzyme activities in Raphanus sativus L. cv. Pusa chetki seedlings. Among polyamines, putrescine and spermidine contents were enhanced by Cu2+ metal to 62.44 and 402.8 µg g-1 f.w. respectively over control. Spermine which was not observed in control was recorded in highest concentration (1287.9 µg g-1 f.w.) in Cu2+ metal stressed seedlings. On the other hand Cr6+ metal treated seedlings showed reduced contents of putrescine (1.43 µg g-1 f.w.), cadaverine (0.09 µg g-1 f.w.), spermidine (277.99 µg g-1 f.w.) and spermine (2.29 µg g-1 f.w.) when compared to control and Cu2+ metal treated seedlings. Significant decline in free and bound IAA concentration were found under Cu2+ and Cr6+ metal stress when compared to control. Naphthalene acetic acid not recorded in control seedlings was detected in seedlings treated with Cu2+ and Cr6+ metal. Activities of guaiacol peroxidase and catalase were reduced significantly under Cu2+ and Cr6+ metal stress in comparison to control. Superoxide dismutase activity enhanced significantly under Cr6+ rather than Cu2+ metal treatment. In addition the phytotoxicity of Cu2+ and Cr6+ metal on seedling growth was also determined. The data suggest that Cr6+ is more phytotoxic than exposure to Cu2+ metal.
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