首页> 外文期刊>Genes & Genetic Systems >Molecular and biochemical identification of alien chromosome additions in shallot (Allium cepa L. Aggregatum group) carrying extra chromosome(s) of bunching onion (A. fistulosum L.)
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Molecular and biochemical identification of alien chromosome additions in shallot (Allium cepa L. Aggregatum group) carrying extra chromosome(s) of bunching onion (A. fistulosum L.)

机译:葱(洋葱葱)的外来染色体添加的分子和生物化学鉴定,洋葱带有聚束洋葱(A. fistulosum L.)的额外染色体

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摘要

To develop the bunching onion (Allium fistulosum L.; genomes, FF) chromosome-specific genetic markers for identifying extra chromosomes, eight shallot (A. cepa L. Aggregatum group; genomes, AA) - A. fistulosum monosomic addition plants (AA+nF) and 62 shallot - A. fistulosum single-alien deletion plants (AAF-nF) were analyzed by 23 different chromosome-specific genetic markers of shallot. The eight monosomic addition plants consisted of one AA+2F, two AA+6F, and five AA+8F. Of the 62 single-alien deletion plants, 60 could be identified as six different single-alien deletion lines (AAF-1F, -3F, -4F, -6F, -7F, and -8F) out of the eight possible types. Several single-alien deletion lines were classified on the basis of leaf and bulb characteristics. AAF-8F had the largest number of expanded leaves of five deletion plants. AAF-7F grew most vigorously, as expressed by its long leaf blade and biggest bulb size. AAF-4F had very small bulbs. AAF-7F and AAF-8F had different bulbs from those of shallot as well as other types of single-alien deletion lines in skin and outer scale color. Regarding the sugar content of the bulb tissues, the single-alien deletion lines showed higher fructan content than shallot. Moreover, shallot could not produce fructan with degree of polymerization (DP) 12 or higher, although the single-alien deletion lines showed DP 20 or higher. The content of S-alk(en)yl-L-cysteine sulfoxide (ACSO) in the single-alien deletion lines was significantly lower than that in shallot. These results indicated that chromosomes from A. fistulosum might carry anonymous factors to increase the highly polymerized fructan production and inhibit the synthesis of ACSO in shallot bulbs. Accordingly, alien chromosomes from A. fistulosum in shallot would contribute to modify the quality of shallot bulbs.
机译:为了开发聚束洋葱(Allist fistulosum L .;基因组,FF)特定于染色体的遗传标记来鉴定额外的染色体,使用了八个葱(cepa L. Aggregatum group;基因组,AA)-A. fistulosum单体加成植物(AA + nF)和62株葱-A. fistulosum单一外来缺失植物(AAF-nF)通过23种不同的葱的染色体特异性遗传标记进行了分析。八个单体加成植物由一个AA + 2F,两个AA + 6F和五个AA + 8F组成。在这62种单外源缺失植物中,有60种可以被鉴定为八种可能类型中的六种不同的单外源缺失系(AAF-1F,-3F,-4F,-6F,-7F和-8F)。根据叶片和鳞茎的特性,对几种单外星缺失系进行了分类。在五种缺失植物中,AAF-8F的扩张叶片数量最多。 AAF-7F的生长最为强劲,表现出其长长的叶片和最大的鳞茎尺寸。 AAF-4F的灯泡非常小。 AAF-7F和AAF-8F的鳞茎与小葱以及其他类型的单外星人缺失系的鳞茎在皮肤和外部鳞片颜色上都不相同。关于球茎组织的糖含量,单异源缺失系显示出比胡葱更高的果聚糖含量。此外,胡葱不能产生聚合度(DP)12或更高的果聚糖,尽管单外源缺失系显示DP 20或更高。单链外源缺失系中S-烷(烯)基-L-半胱氨酸亚砜(ACSO)的含量明显低于胡葱中的含量。这些结果表明,来自A. fistulosum的染色体可能携带匿名因子,以增加高度聚合的果聚糖的产量,并抑制胡葱鳞茎中ACSO的合成。因此,来自青葱中瘘管的外来染色体将有助于改变青葱鳞茎的质量。

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