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参与果实形状超亲分离的数量性状位点向‘piel de sapo’甜瓜(黄瓜)的定位与渐渗[已校正]

Mapping and introgression of QTL involved in fruit shape transgressive segregation into ‘piel de sapo’ melon (cucumis melo l.) [corrected].

作者信息

Díaz Aurora, Zarouri Belkacem, Fergany Mohamed, Eduardo Iban, Alvarez José M, Picó Belén, Monforte Antonio J

机构信息

Instituto de Biología Molecular y Celular de Plantas (IBMCP). Universidad Politécnica de Valencia (UPV)-Consejo Superior de Investigaciones Científicas (CSIC), Valencia, Spain.

Laboratorio de Biología Molecular. Dpto. Investigación Agroalimentaria. Instituto Madrileño de Investigación y Desarrollo Rural, Agrario y Alimentario (IMIDRA), Alcalá de Henares, Madrid, Spain.

出版信息

PLoS One. 2014 Aug 15;9(8):e104188. doi: 10.1371/journal.pone.0104188. eCollection 2014.

Abstract

A mapping F2 population from the cross 'Piel de Sapo' × PI124112 was selectively genotyped to study the genetic control of morphological fruit traits by QTL (Quantitative Trait Loci) analysis. Ten QTL were identified, five for FL (Fruit Length), two for FD (Fruit Diameter) and three for FS (Fruit Shape). At least one robust QTL per character was found, flqs8.1 (LOD = 16.85, R2 = 34%), fdqs12.1 (LOD = 3.47, R2 = 11%) and fsqs8.1 (LOD = 14.85, R2 = 41%). flqs2.1 and fsqs2.1 cosegregate with gene a (andromonoecious), responsible for flower sex determination and with pleiotropic effects on FS. They display a positive additive effect (a) value, so the PI124112 allele causes an increase in FL and FS, producing more elongated fruits. Conversely, the negative a value for flqs8.1 and fsqs8.1 indicates a decrease in FL and FS, what results in rounder fruits, even if PI124112 produces very elongated melons. This is explained by a significant epistatic interaction between fsqs2.1 and fsqs8.1, where the effects of the alleles at locus a are attenuated by the additive PI124112 allele at fsqs8.1. Roundest fruits are produced by homozygous for PI124112 at fsqs8.1 that do not carry any dominant A allele at locus a (PiPiaa). A significant interaction between fsqs8.1 and fsqs12.1 was also detected, with the alleles at fsqs12.1 producing more elongated fruits. fsqs8.1 seems to be allelic to QTL discovered in other populations where the exotic alleles produce elongated fruits. This model has been validated in assays with backcross lines along 3 years and ultimately obtaining a fsqs8.1-NIL (Near Isogenic Line) in 'Piel de Sapo' background which yields round melons.

摘要

对杂交组合“Piel de Sapo”×PI124112的F2群体进行选择性基因分型,通过QTL(数量性状位点)分析研究果实形态性状的遗传控制。共鉴定出10个QTL,其中5个与果实长度(FL)相关,2个与果实直径(FD)相关,3个与果实形状(FS)相关。每个性状至少发现一个稳定的QTL,分别为flqs8.1(LOD = 16.85,R2 = 34%)、fdqs12.1(LOD = 3.47,R2 = 11%)和fsqs8.1(LOD = 14.85,R2 = 41%)。flqs2.1和fsqs2.1与基因a(雄全同株)共分离,该基因负责花性别的决定,并对果实形状有多重效应。它们表现出正的加性效应(a)值,因此PI124112等位基因会使果实长度和形状增加,产生更长的果实。相反,flqs8.1和fsqs8.1的负a值表明果实长度和形状减小,导致果实更圆,即使PI124112产生的是非常长的甜瓜。这是由于fsqs2.1和fsqs8.1之间存在显著的上位性相互作用,其中位点a上等位基因的效应被fsqs8.1处PI124112的加性等位基因减弱。最圆的果实是由fsqs8.1处纯合的PI124112产生的,这些植株在位点a上不携带任何显性A等位基因(PiPiaa)。还检测到fsqs8.1和fsqs12.1之间存在显著的相互作用,fsqs12.1处的等位基因会产生更长的果实。fsqs8.1似乎与在其他群体中发现的QTL等位,在这些群体中,外来等位基因会产生更长的果实。该模型已在连续3年的回交系试验中得到验证,并最终获得了“Piel de Sapo”背景下的fsqs8.1近等基因系(NIL),其结出的是圆形甜瓜。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1879/4134209/d1c4848e3a1d/pone.0104188.g001.jpg

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