[Identification of drought tolerant germplasm and inheritance and QTL mapping of related root traits in soybean (Glycine max (L.) Merr.)].

Ying Liu, Jun-Yi Gai, Hui-Neng Lü, Yong-Jun Wang, Shou-Yi Chen
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Abstract

Fifty nine accessions of soybean (Glycine max (L.) Merr.) selected from 301 ones in Huang-Huai-Hai and Middle-Lower Changjiang Valleys were tested in two years for their tolerance to drought by using the mean membership index value averaged over those of plant height,leave number,dry root weight and dry stem and leaf weight. Four most tolerant accessions (Rank 1) and two most sensitive ones (Rank 5) were identified. There existed very significant correlations between drought tolerance and relative values of dry root weight,total root length, and root volume (per plant dry weight basis), respectively,which could be used as root indicators of drought tolerance. The RIL population derived from Kefeng 1 x Nannong 1138-2 was used to analyze the inheritance of the three related root traits by using the segregation analysis of quantitative traits under the major gene plus polygene mixed inheritance model. The results showed that between the two parents (Rank 1 x Rank 4), the relative values of dry root weight,total root length and root volume were respectively controlled by two major genes (linked together for the latter two traits, recombination value being 4.30% and 1.93%, respectively) plus polygenes with their major gene heritability values of 62.26%-91.81% and polygene heritability values 2.99%-24.75%, indicating that the major genes,especially the one with larger effect,accounted for a major part of the genetic variation between the two parents. It was identified that five, three, and five QTLs located on N6-C2, N8-D1b + W, N11-E, and N18-K linkage groups for relative dry root weight, total root length and root volume, respectively. Each of the traits appeared to have one locus (Dw1, R/1, and Rv1) with relatively large effect in comparison with their other loci, and those major ones were located near the same site of the same linkage group N6-C2. The results of segregation analysis and QTL mapping appeared pretty consistent with each other, which could be used as a demonstration of each other.

[大豆(Glycine max (L.) Merr.)耐旱种质的鉴定及相关根系性状的遗传和 QTL 绘图]。
从黄淮海流域和长江中下游流域的 301 个大豆(Glycine max (L.) Merr.)品系中选出 59 个品系,采用平均株高、叶片数、干根重和干茎叶重的成员指数值,分两年对其耐旱性进行了测试。结果发现了四个最耐旱的品种(排名 1)和两个最敏感的品种(排名 5)。耐旱性分别与干根重量、根总长度和根体积(单株干重)的相对值之间存在非常显著的相关性,可作为耐旱性的根指标。利用克丰1号×南农1138-2的RIL群体,采用主基因加多基因混合遗传模式下的数量性状分离分析,分析了三个相关根系性状的遗传情况。结果表明,在两个亲本(Rank 1 x Rank 4)之间,干根重、总根长和根体积的相对值分别受两个主基因(后两个性状的主基因连接在一起,重组值分别为 4.30% 和 1.主基因遗传力值为 62.26%-91.81% ,多基因遗传力值为 2.99%-24.75% ,表明主基因,尤其是效应较大的主基因占了双亲间遗传变异的大部分。结果表明,相对干根重、总根长和根量分别有 5 个、3 个和 5 个 QTL 位于 N6-C2、N8-D1b + W、N11-E 和 N18-K 连接组上。每个性状似乎都有一个位点(Dw1、R/1 和 Rv1)与其他位点相比具有相对较大的效应,而且这些主要位点位于同一连锁组 N6-C2 的同一位点附近。分离分析结果与 QTL 图谱结果相当一致,可以相互印证。
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