首页> 美国卫生研究院文献>Annals of Botany >Accumulation of Glycinebetaine in Rice Plants that Overexpress Choline Monooxygenase from Spinach and Evaluation of their Tolerance to Abiotic Stress
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Accumulation of Glycinebetaine in Rice Plants that Overexpress Choline Monooxygenase from Spinach and Evaluation of their Tolerance to Abiotic Stress

机译:过量表达菠菜中胆碱单加氧酶的水稻中甘氨酸甜菜碱的积累及其对非生物胁迫的耐受性评估

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摘要

• Background and Aims Glycinebetaine (GB), a quaternary ammonium compound, is a very effective compatible solute. In higher plants, GB is synthesized from choline (Cho) via betaine aldehyde (BA). The first and second steps in the biosynthesis of GB are catalysed by choline monooxygenase (CMO) and by betaine aldehyde dehydrogenase (BADH), respectively. Rice (Oryza sativa), which has two genes for BADH, does not accumulate GB because it lacks a functional gene for CMO. Rice plants accumulate GB in the presence of exogenously applied BA, which leads to the development of a significant tolerance to salt, cold and heat stress. The goal in this study was to evaluate and to discuss the effects of endogenously accumulated GB in rice.• Methods Transgenic rice plants that overexpressed a gene for CMO from spinach (Spinacia oleracea) were produced by Agrobacterium-mediated transformation. After Southern and western blotting analysis, GB in rice leaves was quantified by 1H-NMR spectroscopy and the tolerance of GB-accumulating plants to abiotic stress was investigated.• Key Results Transgenic plants that had a single copy of the transgene and expressed spinach CMO accumulated GB at the level of 0·29–0·43 μmol g−1 d. wt and had enhanced tolerance to salt stress and temperature stress in the seedling stage.• Conclusions In the CMO-expressing rice plants, the localization of spinach CMO and of endogenous BADHs might be different and/or the catalytic activity of spinach CMO in rice plants might be lower than it is in spinach. These possibilities might explain the low levels of GB in the transgenic rice plants. It was concluded that CMO-expressing rice plants were not effective for accumulation of GB and improvement of productivity.
机译:•背景和目的甘氨酸甜菜碱(GB)是一种季铵化合物,是一种非常有效的相容溶质。在高等植物中,GB是通过甜菜碱醛(BA)由胆碱(Cho)合成的。 GB的生物合成的第一步和第二步分别由胆碱单加氧酶(CMO)和甜菜碱醛脱氢酶(BADH)催化。具有两个BADH基因的水稻(Oryza sativa)不会积累GB,因为它缺少CMO的功能基因。在外源施用BA的情况下,水稻植物会积累GB,这导致对盐,冷和热胁迫具有显着的耐受性。本研究的目的是评估和讨论内源累积的GB在水稻中的作用。•方法农杆菌介导的转化生产了过量表达菠菜(Spinacia oleracea)CMO基因的转基因水稻。经过Southern和Western印迹分析后,通过 1 H-NMR光谱对水稻叶片中的GB进行定量,并研究了积累GB的植物对非生物胁迫的耐受性。•主要结果具有单拷贝的转基因植物转基因和表达菠菜CMO的累积GB含量为0·29-0·43μmolg -1 d。结论在表达CMO的水稻植株中,菠菜CMO和内源BADHs的定位可能不同,并且/或者菠菜CMO在水稻中的催化活性可能不同。可能比菠菜要低。这些可能性可以解释转基因水稻植株中GB含量低的原因。结论是表达CMO的水稻植株对于GB的积累和生产力的提高无效。

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