首页> 外文期刊>Plant physiology >The seeds of Lotus japonicus lines transformed with sense, antisense, and sense/antisense galactomannan galactosyltransferase constructs have structurally altered galactomannans in their endosperm cell walls
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The seeds of Lotus japonicus lines transformed with sense, antisense, and sense/antisense galactomannan galactosyltransferase constructs have structurally altered galactomannans in their endosperm cell walls

机译:用有义,反义和有义/反义半乳甘露聚糖半乳糖基转移酶构建体转化的Lotus japonicus系种子的胚乳细胞壁中的半乳甘露聚糖结构发生了改变

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Galactomannan biosynthesis in legume seed endosperms involves two Golgi membrane-bound glycosyltransferases, mannan synthase and galactomannan galactosyltransferase (GMGT). GMGT specificity is an important factor regulating the distribution and amount of (1-->6)-alpha-galactose (Gal) substitution of the (1-->4)-beta-linked mannan backbone. The model legume Lotus japonicus is shown now to have endospermic seeds with endosperm cell walls that contain a high-Gal galactomannan (mannose [Man]/Gal = 1.2-1.3). Galactomannan biosynthesis in developing L. japonicus endosperms has been mapped, and a cDNA encoding a functional GMGT has been obtained from L. japonicus endosperms during galactomannan deposition. L. japonicus has been transformed with sense, antisense, and sense/antisense ("hairpin loop") constructs of the GMGT cDNA. Some of the sense, antisense, and sense/antisense transgenic lines exhibited galactomannans with altered (higher) Man/Gal values in their (T-1 generation) seeds, at frequencies that were consistent with posttranscriptional silencing of GMGT. For T-1 generation individuals, transgene inheritance was correlated with galactomannan composition and amount in the endosperm. All the azygous individuals had unchanged galactomannans, whereas those that had inherited a GMGT transgene exhibited a range of Man/Gal values, up to about 6 in some lines. For Man/Gal values up to 4, the results were consistent with lowered Gal substitution of a constant amount of mannan backbone. Further lowering of Gal substitution was accompanied by a slight decrease in the amount of mannan backbone. Microsomal membranes prepared from the developing T-2 generation endosperms of transgenic lines showed reduced GMGT activity relative to mannan synthase. The results demonstrate structural modification of a plant cell wall polysaccharide by designed regulation of a Golgi-bound glycosyltransferase.
机译:豆类种子胚乳中的半乳甘露聚糖生物合成涉及两个高尔基体膜结合的糖基转移酶,甘露聚糖合酶和半乳甘露聚糖半乳糖基转移酶(GMGT)。 GMGT特异性是调节(1-> 4)-β-连接的甘露聚糖骨架的(1-> 6)-α-半乳糖(Gal)取代的分布和数量的重要因素。现在显示豆科植物日本莲的模型具有带有胚乳细胞壁的胚乳种子,胚乳细胞壁含有高Gal半乳甘露聚糖(甘露糖[Man] / Gal = 1.2-1.3)。已经绘制了发育中的日本乳杆菌胚乳中的半乳甘露聚糖生物合成,并且在半乳甘露聚糖沉积期间从日本乳杆菌胚乳获得了编码功能性GMGT的cDNA。用GMGT cDNA的有义,反义和有义/反义(“发夹环”)构建体转化了日本血吸虫。一些有义,反义和有义/反义转基因品系在其(T-1代)种子中表现出半乳甘露聚糖的Man / Gal值发生改变(较高),其频率与GMGT的转录后沉默一致。对于T-1代个体,转基因遗传与半乳甘露聚糖的组成和胚乳中的数量相关。所有的无食个体均未改变半乳甘露聚糖,而那些继承了GMGT转基因的个体则表现出一定的Man / Gal值范围,在某些品系中高达约6。对于高达4的Man / Gal值,结果与恒定量的甘露聚糖主链的Gal取代降低有关。 Gal取代的进一步降低伴随着甘露聚糖主链量的略微减少。从转基因品系的发育中的T-2代胚乳制备的微粒体膜相对于甘露聚糖合酶显示出降低的GMGT活性。结果表明通过高尔基体结合的糖基转移酶的设计调节对植物细胞壁多糖的结构修饰。

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