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Genetic Analysis of the First Female Flower Node and the First Male Flower Node in Bitter Gourd
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作者 Ziji LIU Yu NIU +1 位作者 Yan YANG Baibi ZHU 《Agricultural Biotechnology》 CAS 2023年第1期1-3,7,共4页
Exploring genetic mechanism of the first female flower node and the first male flower node in bitter gourd has practical significance for formulating breeding strategy. In this article, a cross was made between CN19-1... Exploring genetic mechanism of the first female flower node and the first male flower node in bitter gourd has practical significance for formulating breeding strategy. In this article, a cross was made between CN19-1 and Thai4-6, and the F2segregation population was also constructed through F1selfing. The genetic characteristics of the first female flower node and the first male flower node were analyzed by adopting the major gene plus polygene mixed genetic model. The data analysis results showed that the first female flower node and the first male flower node were continuous distribution in the F2segregation population. E-2 model was the most suitable model for the genetic analysis of the first female flower node and the first male flower node. The additive effect values of the 2 pairs of major genes controlling the first female flower node were 2.722 and 1.862 8 respectively, the dominant effect values were-2.721 6 and-0.171 8, respectively. The additive effect value of polygene was-0.839 2, and the dominant effect value of polygene was 2.225 4. The heritability of major genes and polygene were 83.73% and 1.54%, respectively. The additive effect values of the 2 pairs of major genes controlling the first male flower node were 17.746 9 and 3.972, respectively, the dominant effect values were 5.191 6 and-3.972, respectively. The additive effect value of polygene was-20.530 5, and the dominant effect value was-4.141 4. The heritability of major genes and polygene was 92.34% and 4.7%, respectively. This study could provide a theoretical basis for bitter gourd breeding. 展开更多
关键词 Bitter gourd Genetic model The first female flower node The first male flower node Genetic analysis
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普通丝瓜第1雌、雄花分化时期的研究 被引量:3
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作者 苏小俊 徐海 +2 位作者 袁希汉 汪玉清 陈劲枫 《上海农业学报》 CSCD 2007年第4期38-41,共4页
用常规石蜡切片技术,对普通丝瓜早、中熟品种第1雄、雌花发育的不同阶段所对应的苗龄、叶龄进行了研究。结果表明:普通丝瓜子叶期茎尖已开始花芽分化,雄花先于雌花发育。早熟品种苗龄12d、幼苗2~3叶期,中熟品种苗龄16d、幼苗3~5... 用常规石蜡切片技术,对普通丝瓜早、中熟品种第1雄、雌花发育的不同阶段所对应的苗龄、叶龄进行了研究。结果表明:普通丝瓜子叶期茎尖已开始花芽分化,雄花先于雌花发育。早熟品种苗龄12d、幼苗2~3叶期,中熟品种苗龄16d、幼苗3~5叶期,雄蕊原基发生;早熟品种苗龄22d、幼苗5~7叶期,中熟品种苗龄30d,幼苗8~10叶期,雌蕊原基开始出现。中熟品种的第1雄花节位比早熟品种高1~3个节位、第1雌花节位相应高3~5个节位。 展开更多
关键词 普通丝瓜 雌花芽 苗龄 叶龄 第1雄 雌花节位
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苦瓜控制第1雄花节位的QTL定位 被引量:1
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作者 崔竣杰 彭家柱 +1 位作者 程蛟文 胡开林 《中国瓜菜》 CAS 北大核心 2021年第7期25-28,共4页
为了对控制苦瓜第1雄花节位的遗传位点进行定位,基于苦瓜K44×Dali-11的F2群体和04-17×47-2-1-1-3的F2群体构建遗传图谱,结合第1雄花节位的表型数据,对苦瓜第1雄花节位进行了QTL检测。结果表明,对于2个F2群体,都在相近的遗传... 为了对控制苦瓜第1雄花节位的遗传位点进行定位,基于苦瓜K44×Dali-11的F2群体和04-17×47-2-1-1-3的F2群体构建遗传图谱,结合第1雄花节位的表型数据,对苦瓜第1雄花节位进行了QTL检测。结果表明,对于2个F2群体,都在相近的遗传位置区域检测到控制苦瓜第1雄花节位的QTL位点fmfn,该位点位于苦瓜的MC06连锁群或拟染色体上10.66~14.32 Mb区间,候选区间的遗传距离和物理距离分别为11.65 cM和3.66 Mb,遗传贡献率为34.80%,其中包含195个注释基因。研究结果为进一步精细定位及克隆控制苦瓜第1雄花节位的基因提供了重要参考依据。 展开更多
关键词 苦瓜 第1雄花节位 QTL 候选区间
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