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羽扇豆根瘤发育过程中L-天冬酰胺酶基因的抑制

Repression of the L-asparaginase gene during nodule development in Lupinus angustifolius.

作者信息

Vincze E, Reeves J M, Lamping E, Farnden K J, Reynolds P H

机构信息

Plant Improvement Division, Horticulture and Food Research Institute of New Zealand, Palmerston North.

出版信息

Plant Mol Biol. 1994 Oct;26(1):303-11. doi: 10.1007/BF00039541.

Abstract

Upon the establishment of an effective nitrogen-fixing symbiosis in amide-transporting plants the enzymatic activity and transcript levels of L-asparaginase are dramatically decreased. This decrease in L-asparaginase activity is essential for the correct functioning of the Rhizobium-legume symbiosis in lupin in which asparagine, synthesized from recently fixed nitrogen, is exported to aerial parts of the plant for use in growth and development. Concomitant with this decrease in L-asparaginase transcript a DNA-binding protein was detected in the nodules. This binding protein was not detectable in ineffective nodules, in nodules treated with nitrate, or in root tips, mature roots, developing flowers or developing seeds. The DNA-binding activity was shown to interact with a 59 bp sequence proximal to the transcription start site. Within this sequence a CTAAAAT direct repeat and a ACTGT/TGTCA incomplete inverted repeat were implicated in the binding of protein to the DNA by DNase I protection experiments. Competitive binding studies with synthesized binding sites were consistent with the CTAAAAT/TGTCA sequence pair proximal to the transcription start site having the highest affinity for the DNA-binding protein. We postulate that this DNA-binding protein is associated with repression of L-asparaginase gene expression in mature lupin root nodules.

摘要

在酰胺转运植物中建立有效的固氮共生关系后,L-天冬酰胺酶的酶活性和转录水平会显著降低。L-天冬酰胺酶活性的这种降低对于羽扇豆中根瘤菌 - 豆科植物共生关系的正常运作至关重要,在这种共生关系中,由新固定的氮合成的天冬酰胺被输送到植物地上部分用于生长和发育。与L-天冬酰胺酶转录本的这种减少同时,在根瘤中检测到一种DNA结合蛋白。在无效根瘤、用硝酸盐处理的根瘤、根尖、成熟根、发育中的花或发育中的种子中均未检测到这种结合蛋白。DNA结合活性显示与转录起始位点近端的一个59 bp序列相互作用。在该序列内,通过DNase I保护实验表明,一个CTAAAAT直接重复序列和一个ACTGT/TGTCA不完全反向重复序列与蛋白质与DNA的结合有关。用合成结合位点进行的竞争性结合研究表明,转录起始位点近端的CTAAAAT/TGTCA序列对与DNA结合蛋白具有最高亲和力。我们推测这种DNA结合蛋白与成熟羽扇豆根瘤中L-天冬酰胺酶基因表达的抑制有关。

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