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通过遗传转化Rfo获得青花菜Ogura CMS恢复系
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作者 邢苗苗 许园园 +2 位作者 卢昱宇 严继勇 曾爱松 《中国农业科学》 CAS CSCD 北大核心 2023年第15期2966-2976,共11页
【目的】将来自萝卜的胞质不育恢复基因Rfo导入到青花菜Ogura细胞质雄性不育(cytoplasmic male sterility,CMS)主栽商业品种‘耐寒优秀’(命名为SFB45)中,获得Ogura CMS恢复系,打破Ogura CMS材料在生产上无法再利用的现状,为优异种质的... 【目的】将来自萝卜的胞质不育恢复基因Rfo导入到青花菜Ogura细胞质雄性不育(cytoplasmic male sterility,CMS)主栽商业品种‘耐寒优秀’(命名为SFB45)中,获得Ogura CMS恢复系,打破Ogura CMS材料在生产上无法再利用的现状,为优异种质的创制和改良提供新途径。【方法】利用基因合成的方法克隆萝卜Rfo的CDS及其启动子序列,构建表达载体pRfo::Rfo。通过农杆菌介导的遗传转化方法侵染SFB45的具柄子叶和下胚轴,进行再生、抗性苗筛选和PCR鉴定获得阳性植株,开花期观察转基因植株的育性恢复情况;用亚历山大染液分析对照组及阳性株的花粉活力;分别提取对照组及阳性株<3 mm和>3 mm花蕾的RNA并反转录成单链cDNA,设计特异引物,利用RT-PCR分析Rfo及绒毡层和花粉壁发育相关基因在SFB45及对应的育性恢复材料花蕾中的表达差异。【结果】通过遗传转化共获得10个阳性株系,其中8个株系育性得到不同程度的恢复,花粉活力为84.2%—90.4%。RT-PCR分析结果表明,育性恢复植株花蕾中Rfo表达,绒毡层发育关键调节因子DYT1和TDF1及花粉壁主要成分孢粉素合成所必需的基因ACOS5在育性恢复植株<3 mm花蕾中上调表达。绒毡层降解相关基因AMS、四分体胼胝质壁及花粉外壁发育所必需的基因CalS5和CYP703在育性恢复植株>3 mm花蕾中上调表达。分析阳性株系R-1、R-3和R-6自交及杂交后代发现转入的Rfo能稳定遗传,符合孟德尔遗传。【结论】通过遗传转化Rfo获得了优良青花菜Ogura CMS商品种SFB45的育性恢复系,且Rfo的转入使绒毡层及花粉壁发育相关基因恢复正常表达。 展开更多
关键词 青花菜 遗传转化 Ogura CMS Rfo 绒毡层和花粉壁发育相关基因
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Tapetum Degeneration Retardation is Critical for Aliphatic Metabolism and Gene Regulation during Rice Pollen Development 被引量:38
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作者 Da-Sheng Zhang Wan-Qi Liang +6 位作者 Zheng Yuan Na Li Jing Shi Jue Wang Yu-Min Liu Wen-Juan Yu Da-Bing Zhang 《Molecular Plant》 SCIE CAS CSCD 北大核心 2008年第4期599-610,共12页
As a complex wall system in flowering plants, the pollen outer wall mainly contains aliphatic sporopollenin; however, the mechanism for synthesizing these lipidic precursors during pollen development remains less well... As a complex wall system in flowering plants, the pollen outer wall mainly contains aliphatic sporopollenin; however, the mechanism for synthesizing these lipidic precursors during pollen development remains less well understood. Here, we report on the function of the rice tapetum-expressing TDR (Tapetum Degeneration Retardation) gene in aliphatic metabolism and its regulatory role during rice pollen development. The observations of transmission electron microscopy (TEM) and scanning electron microscopy (SEM) analyses suggested that pollen wall formation was significantly altered in the tdr mutant. The contents of aliphatic compositions of anther were greatly changed in the tdr mutant revealed by GC-MS (gas chromatography-mass spectrometry) testing, particularly less accumulated in fatty acids, primary alcohols, alkanes and alkenes, and an abnormal increase in secondary alcohols with carbon lengths from C29 to C3S in tdr. Microarray data revealed that a group of genes putatively involved in lipid transport and metabolism were significantly altered in the tdr mutant, indicating the critical role of TDR in the formation of the pollen wall. Also, a wide range of genes (236 in total--154 up-regulated and 82 down-regulated) exhibited statistically significant expressional differences between wild-type and tdr. In addition to its function in promoting tapetum PCD, TDR possibly plays crucial regulatory roles in several basic biological processes during rice pollen development. 展开更多
关键词 tapetum pollen wall aliphatic metabolism microarray gene expression RICE
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