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野生茄属基因组整合对马铃薯淀粉纳米结构和糖苷生物碱含量相关特性的影响。

Influence of incorporated wild Solanum genomes on potato properties in terms of starch nanostructure and glycoalkaloid content.

作者信息

Väänänen Tiina, Ikonen Teemu, Rokka Veli-Matti, Kuronen Pirjo, Serimaa Ritva, Ollilainen Velimatti

机构信息

Department of Applied Chemistry and Microbiology, University of Helsinki, Finland.

出版信息

J Agric Food Chem. 2005 Jun 29;53(13):5313-25. doi: 10.1021/jf0501342.

Abstract

Interspecific somatic hybrids produced by protoplast fusion between two wild Solanum species (S. acaule, acl; S. brevidens, brd) and cultivated potato Solanum tuberosum (tbr) were analyzed in terms of the starch nanometer-range structure and glycoalkaloid (GA) contents. The crystallinity of starch granules, the average size of starch crystallites, and the lamellar distances were obtained from tuber samples using wide-angle and small-angle X-ray scattering methods. These measurements showed that incorporation of wild genomes from either nontuberous (brd) or tuberous (acl) Solanum species caused no significant modifications of the nanostructure of potato starch. In contrast, the GA profiles of the hybrids, which were analyzed by LC-ESI-MS in both tuber and foliage samples, differed considerably from those of cultivated potato. Regardless of the low total tuber GA concentrations (approximately 9 mg/100 g of fresh weight), the somatic hybrids contained GAs not detected in the parental species. A high proportion of spirotype GAs consisting of 5,6-dihydrogenated aglycons, for example, alpha-tomatine and tomatidine bound with solatriose, and chacotriose were found in the hybrids. In conclusion, the foliage of interspecific hybrids contained a higher variation in the structures of GAs than did the tubers.

摘要

对两种野生茄属植物(S. acaule,acl;S. brevidens,brd)与栽培马铃薯茄属块茎茄(tbr)通过原生质体融合产生的种间体细胞杂种,从淀粉纳米级结构和糖苷生物碱(GA)含量方面进行了分析。利用广角和小角X射线散射方法,从块茎样品中获得淀粉颗粒的结晶度、淀粉微晶的平均尺寸和层间距。这些测量结果表明,来自非块茎(brd)或块茎(acl)茄属物种的野生基因组的掺入对马铃薯淀粉的纳米结构没有显著改变。相比之下,通过LC-ESI-MS在块茎和叶片样品中分析的杂种的GA谱与栽培马铃薯的GA谱有很大差异。尽管块茎中GA的总浓度较低(约9毫克/100克鲜重),但体细胞杂种中含有亲本物种中未检测到的GA。例如,在杂种中发现了高比例的由5,6-二氢苷元组成的螺型GA,如与茄三糖结合的α-番茄碱和番茄次碱,以及查科三糖。总之,种间杂种的叶片中GA结构的变化比块茎中的更高。

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