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单性花(m)位点的一个新等位基因导致黄瓜(Cucumis sativus L.)果实形状细长且花发育完全。

A novel allele of monoecious (m) locus is responsible for elongated fruit shape and perfect flowers in cucumber (Cucumis sativus L.).

作者信息

Tan Junyi, Tao Qianyi, Niu Huanhuan, Zhang Zhen, Li Dandan, Gong Zhenhui, Weng Yiqun, Li Zheng

机构信息

College of Horticulture, Northwest A&F University, Yangling, 712100, Shaanxi, China.

Agricultural College, Heilongjiang Bayi Agriculture University, Daqing, 163319, Heilongjiang, China.

出版信息

Theor Appl Genet. 2015 Dec;128(12):2483-93. doi: 10.1007/s00122-015-2603-0. Epub 2015 Sep 8.

Abstract

A 14 bp deletion in CsACS2 gene encoding a truncated loss-of-function protein is responsible for elongated fruit shape and perfect flowers in cucumber. In cucumber (Cucumis sativus L.), sex expression and fruit shape are important components of biological and marketable yield. The association of fruit shape and sex expression is a very interesting phenomenon. The sex determination is controlled primarily by the F (female) and M (monoecy) loci. Homozygous recessive mm plants bear bisexual (perfect) flowers, and the fruits are often round shaped. CsACS2 encoding the 1-aminocyclopropane-1-carboxylic acid synthase has been shown to be the candidate gene for the m locus. We recently identified an andromonoecious cucumber line H38 that has bisexual flowers but elongated fruits. To rapidly clone this monoecious gene in H38, we developed a tri-parent mapping strategy, which took advantage of the high-density Gy14 × 9930 cucumber genetic map and the powder of bulk segregant analysis. Microsatellite markers from the Gy14 × 9930 map were used to screen two pairs of unisexual and bisexual bulks constructed from H38 × Gy14 and H38 × 9930 F2 populations. Polymorphic markers were identified and used to quickly develop a framework map and place the monoecious locus of H38 in cucumber chromosome 1. Further fine mapping allowed identification of a novel allele, m-1, at the monoecious locus to control the bisexual flower in H38, which was due to a 14 bp deletion in the third exon of the CsACS2 gene encoding a truncated loss-of-function protein of the cucumber 1-aminocyclopropane-1-carboxylic acid synthase. This new allele provides a valuable tool in understanding the molecular mechanisms of CsACS2 in the relationships of sex determination, fruit shape, and CsACS activities in cucumber.

摘要

黄瓜中,编码截短的功能缺失蛋白的CsACS2基因上一个14bp的缺失导致果实形状细长且花发育完全。在黄瓜(Cucumis sativus L.)中,性别表达和果实形状是生物学产量和市场产量的重要组成部分。果实形状与性别表达之间的关联是一个非常有趣的现象。性别决定主要由F(雌性)和M(雌雄同株)位点控制。纯合隐性mm植株开两性(完全)花,果实通常为圆形。编码1-氨基环丙烷-1-羧酸合酶的CsACS2已被证明是m位点的候选基因。我们最近鉴定出一个雄全同株黄瓜品系H38,其开两性花但果实细长。为了在H38中快速克隆这个雌雄同株基因,我们开发了一种三亲本定位策略,该策略利用了高密度的Gy14×9930黄瓜遗传图谱和混合分离群体分析法。来自Gy14×9930图谱的微卫星标记用于筛选由H38×Gy14和H38×9930 F2群体构建的两对单性花和两性花混合群体。鉴定出多态性标记并用于快速构建框架图谱,将H38的雌雄同株位点定位在黄瓜第1号染色体上。进一步的精细定位使得在雌雄同株位点鉴定出一个新的等位基因m-1,以控制H38中的两性花,这是由于CsACS2基因第三个外显子上一个14bp的缺失,该缺失编码一种截短的、功能缺失的黄瓜1-氨基环丙烷-1-羧酸合酶蛋白。这个新的等位基因为理解CsACS2在黄瓜性别决定、果实形状和CsACS活性关系中的分子机制提供了一个有价值的工具。

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