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番石榴(Psidium guajava L.)‘阿拉哈巴德萨费达’ב紫色番石榴(本地)’作图群体的遗传连锁图谱构建及叶片花青素着色特异性QTL定位

Construction of Genetic Linkage Map and Mapping QTL Specific to Leaf Anthocyanin Colouration in Mapping Population 'Allahabad Safeda' × 'Purple Guava (Local)' of Guava ( L.).

作者信息

Sohi Harjot Singh, Gill Manav Indra Singh, Chhuneja Parveen, Arora Naresh Kumar, Maan Sukhjinder Singh, Singh Jagmohan

机构信息

Department of Fruit Science, College of Horticulture and Forestry Punjab Agricultural University, Ludhiana 141004, India.

School of Agricultural Biotechnology, Punjab Agricultural University, Ludhiana 141004, India.

出版信息

Plants (Basel). 2022 Aug 2;11(15):2014. doi: 10.3390/plants11152014.

Abstract

In the present investigation, F1 hybrids were developed in guava ( L.) by crossing high leaf-anthocyanin reflective-index (1) content cultivars purple guava (local) 'PG', 'CISH G-1' and low leaf-1 content cultivar Seedless 'SL' with Allahabad Safeda 'AS'. On the basis of phenotypic observations, high 1 content was observed in the cross 'AS' × 'PG' (0.214). Further, an SSR-markers-based genetic linkage map was developed from a mapping population of 238 F1 individuals derived from cross 'AS' × 'PG'. The linkage map comprised 11 linkage groups (LGs), spanning 1601.7 cM with an average marker interval distance of 29.61 cM between adjacent markers. Five anthocyanin-content related gene-specific markers from apple were tested for parental polymorphism in the genotypes 'AS' and 'PG'. Subsequently, a marker, viz., '10F1', revealed a strong association with leaf anthocyanin content in the guava mapping population. QTL () on LG6 explains much of the variation (PVE = 11.51% with LOD = 4.67) in levels of leaf anthocyanin colouration. This is the first report of amplification/utilization of apple anthocyanin-related genes in guava. The genotypic data generated from the genetic map can be further exploited in future for the enrichment of linkage maps and for identification of complex quantitative trait loci (QTLs) governing economically important fruit quality traits in guava.

摘要

在本研究中,通过将高叶花青素反射指数(1)含量的品种紫番石榴(当地品种)“PG”、“CISH G-1”以及低叶1含量的品种无籽“SL”与阿拉哈巴德萨菲达“AS”杂交,培育出了番石榴(L.)的F1杂种。基于表型观察,在杂交组合“AS”דPG”中观察到高1含量(0.214)。此外,从“AS”דPG”杂交产生的238个F1个体的作图群体中构建了基于SSR标记的遗传连锁图谱。该连锁图谱由11个连锁群(LGs)组成,跨度为1601.7 cM,相邻标记之间的平均标记间隔距离为29.61 cM。对来自苹果的5个与花青素含量相关的基因特异性标记进行了“AS”和“PG”基因型的亲本多态性测试。随后,一个标记,即“10F1”,在番石榴作图群体中显示出与叶花青素含量有很强的关联。LG6上的QTL()解释了叶花青素着色水平的大部分变异(PVE = 11.51%,LOD = 4.67)。这是关于苹果花青素相关基因在番石榴中的扩增/利用的首次报道。遗传图谱产生的基因型数据未来可进一步用于丰富连锁图谱以及鉴定控制番石榴经济上重要果实品质性状的复杂数量性状位点(QTLs)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c367/9370526/953af697db59/plants-11-02014-g001.jpg

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