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应激诱导血红蛋白的表达影响紫花苜蓿根培养物在缺氧胁迫下产生的一氧化氮水平。

Expression of a stress-induced hemoglobin affects NO levels produced by alfalfa root cultures under hypoxic stress.

作者信息

Dordas Christos, Hasinoff Brian B, Igamberdiev Abir U, Manac'h Nathalie, Rivoal Jean, Hill Robert D

机构信息

Department of Plant Science, University of Manitoba, Winnipeg, Manitoba, R3T 2N2 Canada.

出版信息

Plant J. 2003 Sep;35(6):763-70. doi: 10.1046/j.1365-313x.2003.01846.x.

Abstract

Transgenic alfalfa root cultures expressing sense and antisense barley hemoglobin transcripts were examined under varying levels of atmospheric oxygen. Root cultures overexpressing the hemoglobin gene (Hb+) maintained root growth when placed under 3% oxygen, whereas control cultures or cultures underexpressing hemoglobin (Hb-) experienced 30-70% declines in growth under the same conditions. ATP levels and ATP/ADP ratios for Hb+ lines did not significantly differ in 40 and 3% oxygen, whereas the ATP levels and ATP/ADP ratios in control and Hb- lines were significantly lower under 3% oxygen. Large increases in the production of nitric oxide (NO) were measured in root cultures grown under hypoxic conditions compared to aerobic conditions. The amount of NO accumulated in an Hb- line was 2.5-fold higher than that in the Hb+ line. Treatment of transgenic root lines under 40% oxygen with NO resulted in significant declines in the ATP levels and ATP/ADP ratio of an Hb- line and the control line, with no significant change in an Hb+ line. The root cell structure of an Hb- line showed evidence of cell breakdown under hypoxic growth, whereas an Hb+ line had no evidence of cell breakdown under similar growth conditions. These results lead us to hypothesize that NO is involved in the response of plants to hypoxia and that hemoglobin modulates the levels of NO in the hypoxic cell.

摘要

在不同水平的大气氧条件下,对表达正义和反义大麦血红蛋白转录本的转基因苜蓿根培养物进行了检测。过表达血红蛋白基因的根培养物(Hb+)在置于3%氧气环境下时能维持根系生长,而对照培养物或血红蛋白表达不足的培养物(Hb-)在相同条件下生长下降了30%-70%。Hb+系在40%和3%氧气条件下的ATP水平和ATP/ADP比值没有显著差异,而对照系和Hb-系在3%氧气条件下的ATP水平和ATP/ADP比值显著更低。与需氧条件相比,在低氧条件下生长的根培养物中检测到一氧化氮(NO)的产量大幅增加。Hb-系中积累的NO量比Hb+系高2.5倍。在40%氧气条件下用NO处理转基因根系,导致Hb-系和对照系的ATP水平和ATP/ADP比值显著下降,而Hb+系没有显著变化。Hb-系的根细胞结构在低氧生长条件下显示出细胞解体的迹象,而Hb+系在类似生长条件下没有细胞解体的迹象。这些结果使我们推测,NO参与了植物对低氧的反应,并且血红蛋白调节低氧细胞中的NO水平。

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