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利用重测序–BSA分析鉴定金柑油胞发育相关基因 被引量:10
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作者 刘梦雨 刘小丰 +5 位作者 江东 朱世平 申晚霞 余歆 薛杨 赵晓春 《园艺学报》 CAS CSCD 北大核心 2019年第5期841-854,共14页
为了鉴定与金柑油胞发育相关的基因,用多油胞的罗纹金柑[Fortunella japonica(Thunb.)Swingle,母本]和少油胞的滑皮金柑(Fortunella crassifolia Swingle ‘Huapi’,父本)进行杂交构建了F_1代分离群体,从159个F1代单株中挑选出高油胞密... 为了鉴定与金柑油胞发育相关的基因,用多油胞的罗纹金柑[Fortunella japonica(Thunb.)Swingle,母本]和少油胞的滑皮金柑(Fortunella crassifolia Swingle ‘Huapi’,父本)进行杂交构建了F_1代分离群体,从159个F1代单株中挑选出高油胞密度和低油胞密度的单株各30株,分别构建两个极端性状的DNA混池用于基因组重测序。利用重测序数据结合混合分组分析法(Bulked Segregant Analysis,BSA)进行遗传关联性分析,将控制油胞数量性状的位点定位在第9条染色体的25 980 001~29 160 001 bp的区域内。该区域包含511个有效的SNP,分布在301个基因位点上。同源性功能分析后获得11个与细胞程序性死亡、细胞壁功能和结构及细胞伸长和膨大等生理过程相关的候选基因(Ciclev10005243m.g、Ciclev10005288m.g、Ciclev10005338m.g、Ciclev10005441m.g、Ciclev10006448m.g、Ciclev10005804m.g、Ciclev10004719m.g、Ciclev10005888m.g、Ciclev10006502m.g、Ciclev10005197m.g和Ciclev10004431m.g),这些基因可能在柑橘油胞的发育过程中起重要作用。 展开更多
关键词 金柑 油胞发育 重测序–BSA分析 同源分析 功能注释
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Ultrastructural Studies on the Development of Oil Cells in Litsea pungens 被引量:2
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作者 初庆刚 胡正海 《Acta Botanica Sinica》 CSCD 2001年第4期339-347,共9页
The developmental process of oil cells in the shoot of Litsea pungens Hemsl. has been studied with transmission electron microscopy. According to the development of the three layers of cell wall, the developmental pro... The developmental process of oil cells in the shoot of Litsea pungens Hemsl. has been studied with transmission electron microscopy. According to the development of the three layers of cell wall, the developmental process could be divided into 4 stages. In stage 1, the cell wall consisted only of a primary (the outmost) cellulose layer, which might further be divided into two substages, the oil cell initial, and the vacuolizing oil cell. During this stage, there were some small electron translucent vesicles and dark osmiophilic droplets of variant sizes in the different-shaped plastids. It was observed that some dark and gray osmiophilic materials coalesced to vacuoles in the cytoplasm. In stage 2, a lamellated suberin layer accumulated inside the primary cellulose layer. In stage 3, a thicker and looser inner cellulose wall layer was formed gradually inside the suberin layer. Some dark osmiophilic droplets have been observed in this loose inner cellulose wall layer. The plasmodesmata were blocked up and became a special structure. Then, the big vacuole, which is the oil sac, was full of osmiophilic oil. In stage 4, the oil cell became matured and the cytoplasm disintegrated. The oil sac enveloped from plasmalemma was attached to the cupule, which was formed by the protuberance of the inner cellulose wall layer into the lumen. After the maturity of oil cell, the ground cytoplasm began to disintegrate and became electron opaque or exhibited in a disordered state, and the osmiophilic oil appeared light gray. 展开更多
关键词 Litsea pungens oil cells development ULTRASTRUCTURE suberin layer cupule
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