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首页> 外文期刊>Theoretical and Applied Genetics >Genetic mapping and QTL analysis of horticultural traits in cucumber (Cucumis sativus L.) using recombinant inbred lines
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Genetic mapping and QTL analysis of horticultural traits in cucumber (Cucumis sativus L.) using recombinant inbred lines

机译:利用重组自交系对黄瓜(Cucumis sativus L.)园艺性状进行遗传定位和QTL分析

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摘要

A set of 171 recombinant inbred lines (RIL) were developed from a narrow cross in cucumber (Cucumis sativus L.; 2n = 2x = 14) using the determinate (de), gynoecious (F), standard-sized leaf line G421 and the indeterminate, monoecious, little-leaf (ll) line H-19. A 131-point genetic map was constructed using these RILs and 216 F2 individuals to include 14 SSRs, 24 SCARs, 27 AFLPs, 62 RAPDs, 1 SNP, and three economically important morphological [F (gynoecy), de (determinate habit), ll (little leaf)] markers. Seven linkage groups spanned 706 cM with a mean marker interval of 5.6 cM. The location of F and de was defined by genetic linkage and quantitative trait locus (QTL) analysis to be associated with SSR loci CSWCT28 and CSWCTT14 at 5.0 cM and 0.8 cM, respectively. RIL-based QTL analysis of the number of lateral branches in three environments revealed four location-independent factors that cumulatively explained 42% of the observed phenotypic variation. QTLs conditioning lateral branching (mlb1.1), fruit length/diameter ratio (ldr1.2) and sex expression (sex1.2) were associated with de. Sex expression was influenced by three genomic regions corresponding to F and de both on linkage Group 1, and a third locus (sex6.1) on linkage Group 6. QTLs conditioning the number of fruit per plant (fpl1.2), the number of lateral branches (mlb1.4) and fruit length/diameter ratio (ldr1.3) were associated with ll. The potential value of these marker-trait associations (i.e., yield components) for plant improvement is portended by the relatively high LOD scores (2.6 to 13.0) and associated R2 values (1.5% to 32.4%) that are affiliated with comparatively few genetic factors (perhaps 3 to 10).
机译:使用确定的(de),雌性(F),标准大小的叶系G421和黄瓜的窄交系(黄瓜(Cucumis sativus L.; 2n = 2x = 14))开发了171个重组自交系(RIL)。不确定的,单身的,小叶(ll)线H-19。利用这些RIL和216个F2 个体构建了131点遗传图谱,包括14个SSR,24个SCAR,27个AFLP,62个RAPD,1个SNP和3个经济上重要的形态[F(gynoecy),de(de确定习惯),ll(小叶)]标记。七个连锁组跨越706 cM,平均标记间隔为5.6 cM。 F和de的位置通过遗传连锁和定量性状基因座(QTL)分析确定,分别与SSR基因座CSWCT28和CSWCTT14相关,分别为5.0 cM和0.8 cM。基于RIL的QTL分析在三种环境中的侧向分支数目揭示了四个与位置无关的因素,这些因素累计解释了所观察到的表型变异的42%。与侧向分枝(mlb1.1),果实长度/直径比(ldr1.2)和性别表达(sex1.2)相关的QTL与de相关。性别表达受到连锁群1上与F和de相对应的三个基因组区域以及连锁群6上的第三个基因座(sex6.1)的影响。QTL决定了每株植物的果实数(fpl1.2),侧枝(mlb1.4)和果实长度/直径比(ldr1.3)与ll相关。这些标记-性状关联(即产量构成部分)对植物改良的潜在价值是由相对较高的LOD得分(2.6至13.0)和与之相关的相关R2 值(1.5%至32.4%)预示的。遗传因素相对较少(可能是3到10)。

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