McCallum John, Clarke Andrew, Pither-Joyce Meeghan, Shaw Martin, Butler Ruth, Brash Don, Scheffer John, Sims Ian, van Heusden Sjaak, Shigyo Masayoshi, Havey Michael J
New Zealand Institute for Crop and Food Research Limited, Private Bag 4704, Christchurch, New Zealand.
Theor Appl Genet. 2006 Mar;112(5):958-67. doi: 10.1007/s00122-005-0199-5. Epub 2006 Jan 11.
The non-structural dry matter content of onion bulbs consists principally of fructose, glucose, sucrose and fructans. The objective of this study was to understand the genetic basis for the wide variation observed in the relative amounts of these carbohydrates. Bulb carbohydrate composition was evaluated in progeny from crosses between high dry matter storage onion varieties and sweet, low dry matter varieties. When samples were analysed on a dry weight basis, reducing sugar and fructan content exhibited high negative correlations and bimodal segregation suggestive of the action of a major gene. A polymorphic SSR marker, ACM235, was identified which exhibited strong disequilibrium with bulb fructan content in F(2:3) families from the 'W202A' x 'Texas Grano 438' mapping population evaluated in two environments. This marker was mapped to chromosome 8 in the interspecific population 'Allium cepa x A. roylei'. Mapping in the 'Colossal Grano PVP' x 'Early Longkeeper P12' F2 population showed that a dominant major gene conditioning high-fructan content lay in the same genomic region. QTL analysis of total bulb fructan content in the intraspecific mapping population 'BYG15-23' x 'AC43' using a complete molecular marker map revealed only one significant QTL in the same chromosomal region. This locus, provisionally named Frc, may account for the major phenotypic differences in bulb carbohydrate content between storage and sweet onion varieties.
洋葱鳞茎的非结构性干物质主要由果糖、葡萄糖、蔗糖和果聚糖组成。本研究的目的是了解这些碳水化合物相对含量存在广泛差异的遗传基础。对高干物质贮藏洋葱品种与甜质、低干物质品种杂交后代的鳞茎碳水化合物组成进行了评估。当以干重为基础分析样品时,还原糖和果聚糖含量呈现出高度负相关和双峰分离,这表明存在一个主基因的作用。鉴定出一个多态性SSR标记ACM235,在两个环境中评估的‘W202A’בTexas Grano 438’作图群体的F(2:3)家系中,该标记与鳞茎果聚糖含量表现出强烈的不平衡。该标记在种间群体‘Allium cepa×A. roylei’中被定位到8号染色体上。在‘Colossal Grano PVP’בEarly Longkeeper P12’F2群体中的定位表明,一个决定高果聚糖含量的显性主基因位于同一基因组区域。利用完整的分子标记图谱对种内作图群体‘BYG15-23’בAC43’的总鳞茎果聚糖含量进行QTL分析,结果显示在同一染色体区域仅发现一个显著的QTL。这个位点暂命名为Frc,可能是贮藏洋葱品种和甜洋葱品种鳞茎碳水化合物含量主要表型差异的原因。