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硒生物营养强化小麦在发芽过程中的生理特征研究 被引量:2

Study on Physiological Characterization of Selenium-biofortified Wheat During Germination
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摘要 选取硒生物营养强化种植获得的小麦品种扬麦16的低硒组A(硒含量5.245μg/g)、高硒组B(硒含量47.850μg/g)和非强化组CK(硒含量0.039μg/g)为研究对象,通过监测发芽过程中的发芽参数(芽长、根长、发芽率)、芽体的总硒和硒形态、酶[淀粉酶(AMS)、谷胱甘肽过氧化物酶(GSH-Px)、超氧化物歧化酶(SOD)]活力、总抗氧化能力(T-AOC)以及过氧化氢(H2O2)、丙二醛(MDA)含量的变化,探讨硒生物营养强化转化的内源硒对小麦发芽过程生理行为的影响。结果显示,内源硒对麦芽的根长、芽长没有明显影响,但适宜浓度的内源硒有助于提高小麦的发芽率。高硒小麦籽粒可以通过发芽过程将部分内源硒代蛋氨酸(Se Met)转化为硒代胱氨酸(Se Cys2)。内源硒有助于增强α-淀粉酶、抗氧化酶(GSH-Px和SOD)的活力,同时,可提高麦芽的总抗氧化能力(T-AOC)、降低麦芽体内H2O2和MDA的积累。 The selenium (Se)-biofortified wheat cultivar, Yangmai 16, with low-Se level A (5.245 μg Se/g), high-Se level B (47.850 μg Se/g) and control group CK (0.039 μg Se/g) were selected to germinate, and the germination parameters (root length, sprout length and germination rate), the total Se contents and Se species, and the physiological metabolism activities (AMS, GSH-Px, SOD, T-AOC, H2O2, MDA) were monitored during the different germination phases. The results revealed that there were no differences on root length and sprout length among the three groups, but increased germination rates could be observed with moderate Se contents in wheats. SeMet could be transformed into SeCys2 in high-Se level B during germination. Moreover, the biofortified Se in group A and B could obviously improve the activities of AMS, GSH-Px and SOD, increase the capacity of T-AOC, and reduce the accumulation of H2O2 and MDA.
作者 马丽佳 张泽洲 袁林喜 尹雪斌 MA Lijia ZHANG Zezhou YUAN Linxi YIN Xuebin(Jiangsu Bio-engineering Research Centre of Selenium, Jiangsu Suzhou 215123, China State Key Laboratory of Biogeology and Environmental Geology, China University of Geosciences, Wuhan 430074, China Suzhou Institute for Advanced Studies, University of Science and Technology of China, Jiangsu Suzhou 215123, China)
出处 《生物技术进展》 2017年第5期439-444,共6页 Current Biotechnology
基金 国家自然科学基金项目(31400091)资助
关键词 硒生物营养强化 小麦 发芽 谷胱甘肽过氧化物酶 总抗氧化能力 selenium biofortification wheat germination GSH-Px T-AOC
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