首页> 外文期刊>Journal of Plant Physiology >The structure of starch from seeds and leaves of the fructan-accumulating ryegrass, Lolium temulentum L.
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The structure of starch from seeds and leaves of the fructan-accumulating ryegrass, Lolium temulentum L.

机译:富果聚糖黑麦草黑麦草种子和叶片中淀粉的结构。

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Starch granules isolated from leaves and seeds of Lolium temulentum L. were roughly spherical with an irregular perimeter having mean diameters of 1.7 and 4.1 mum respectively, On a dry mass basis, 47% of the seed and maximally 4% of the leaf were starch. Starch structures were deduced from a combination of data obtained using acid-hydrolysis/Smith degradation, glycosyl-linkage analysis/GC-MS, iodine complex formation, isoamylase digestion, high performance size exclusion chromatography and high performance anion exchange chromatography/pulsed amperometry. The mean degree of polymerisation (DIP) of seed starch was 4800 (Mr = 778 kDa) and consisted entirely of a highly branched, amylopectin-like polymer with an average chain length of DP = 46 +/- 6 and an average of 104 chains per molecule. Leaf starch was 98.8% by mass of a highly-branched, amylopectin-like polymer of DP = 5850 (AA 947kDa) containing on average, 136 chains of mean DP = 43 +/- 6. The remaining 1.2% of the leaf starch was isoamylase-resistant, of high Mr (5850kDa) and was designated amylose. Both starches were unusual in that the chain lengths were longer by a factor of 2, than is normal for amylopectins and also because they contained little or no long 1,4-linked chains, as determined by isoamylase digestion. HPAEC of isoamylase fragments from leaf starch revealed a bi-modal distribution of branch chain lengths which was not evident in the seed starch. With the exceptions of this bi-modality and the trace of amylose in the leaf starch, the structure of the starches from the two organs were very similar. Seed starch exhibited an anomalous reaction with iodine. The chromogen was deep blue with a km lambda(max) = 608 nm, indicative of the presence of long amylose chains. On digestion with isoamylase, all of the mass of starch was converted to low molecular mass with an iodine lambda(max) shifted to 567nm. Hence, short 1,4-linked glucan chains which were contiguous through 1,6-linkages formed blue chromogens and can give the appearance of amylose.
机译:从黑麦草的叶子和种子中分离出的淀粉颗粒为大致球形,具有不规则的周长,其平均直径分别为1.7和4.1μm。按干重计,种子的47%和叶的最大4%为淀粉。从酸水解/史密斯降解,糖基连接分析/ GC-MS,碘络合物形成,异淀粉酶消化,高效尺寸排阻色谱和高效阴离子交换色谱/脉冲安培法获得的数据的组合推导出淀粉结构。种子淀粉的平均聚合度(DIP)为4800(Mr = 778 kDa),完全由高度支化的类支链淀粉样聚合物组成,平均链长为DP = 46 +/- 6,平均有104条链每个分子。叶片淀粉为98.8%质量的DP = 5850(AA 947kDa)的高度支链,支链淀粉状聚合物,平均含有136条平均DP = 43 +/- 6链。其余1.2%为叶片淀粉耐高Mr(5850kDa)的异淀粉酶,被称为直链淀粉。两种淀粉都不同寻常,因为其链长比支链淀粉的正常长2倍,而且由于异淀粉酶消化法测定,它们几乎不包含或不包含长的1,4-连接链。来自叶淀粉的异淀粉酶片段的HPAEC显示出支链长度的双峰分布,这在种子淀粉中不明显。除了这种双峰形式和叶淀粉中的直链淀粉痕迹外,来自两个器官的淀粉的结构非常相似。种子淀粉与碘反应异常。色原为深蓝色,其kmλ(max)= 608 nm,表明存在长直链淀粉链。用异淀粉酶消化后,所有的淀粉质量都转化为低分子量,碘化λ(max)移至567nm。因此,短的1,4-连接的葡聚糖链通过1,6-连接是连续的,形成蓝色发色团并且可以给出直链淀粉的外观。

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