首页> 外文期刊>Planta: An International Journal of Plant Biology >Two types of mutations in the HEUKCHEEM gene functioning in cucumber spine color development can be used as signatures for cucumber domestication
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Two types of mutations in the HEUKCHEEM gene functioning in cucumber spine color development can be used as signatures for cucumber domestication

机译:Heukcheem Gene中的两种类型的突变在黄瓜脊柱颜色开发中运作,可用作黄瓜驯化的签名

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Main conclusionThe HEUKCHEEM gene plays an important role in spine color formation. A white spine occurs due to two mutations in HEUKCHEEM and is closely related to the regional distribution of these mutants.AbstractMapping analysis revealed that the HEUKCHEEM gene is co-segregated with the B locus in the regulation of black spine color development in cucumber fruit. HEUKCHEEM induced the expression of the genes involved in the anthocyanin biosynthetic pathway, leading to the accumulation of anthocyanins in black spines. The transiently over-expressed HEUKCHEEM in cucumber and tobacco plants enhanced the expression of anthocyanin biosynthesis-related genes, leading to anthocyanin accumulation. However, two mutations-insertion of the 6994 bp mutator-like transposable element (MULE) sequence into the second intron and one single-nucleotide polymorphism (SNP) of C to T in the second exon of HEUKCHEEM-were identified in white spines, leading to no accumulation of anthocyanin biosynthesis-related gene transcripts and anthocyanins. Furthermore, association analysis using 104 cucumber accessions with different geographical origins revealed that the types of mutations in HEUKCHEEM are strongly linked to geographical origins. The MULE insertion is found extensively in cucumbers with white spines in East Asia and Australia. However, cucumbers with white spines in other areas could be significantly influenced by a single SNP mutation. Our results provide fundamental information on spine color development in cucumber fruits and spine color-based cucumber breeding programs.
机译:主要结论Heukcheem Gene在脊柱颜色形成中发挥着重要作用。由于Heukcheem中的两个突变而发生了白色脊柱,与这些突变体的区域分布密切相关.AbstractMapping分析显示,Heukcheepe基因在黄瓜果实中的黑脊状肤色发育中的调节中与B座进行共同分离。 Heukcheeem诱导参与花青素生物合成途径的基因的表达,导致黑刺的花青素积累。黄瓜和烟草植物中的瞬时过度表达的地衣增强了花青素生物合成相关基因的表达,导致花青素积累。然而,在Heukcheeme的第二个外显子中,将6994bp突变剂样转移元素(muLe)序列插入到Heukcheem的第二个外显子中的第二内含子和一个单一核苷酸多态性(SNP)。不积累花青素生物合成相关的基因转录物和花青素。此外,使用具有不同地理起源的104根黄瓜戒指的关联分析表明,Heukcheem中的突变类型与地理起源有关。骡子插入在亚洲和澳大利亚的白刺的黄瓜中广泛发现。然而,在其他区域中具有白色刺的黄瓜可能受到单一SNP突变的显着影响。我们的结果提供了有关黄瓜水果和脊柱颜色的黄瓜育种计划的脊柱色彩发育的基本信息。

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