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张静娴

作品数:6 被引量:33H指数:3
供职机构:中国科学院植物研究所更多>>
发文基金:国家自然科学基金更多>>
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6 条 记 录,以下是 1-5
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固氮相关的两个植物基因转化烟草及其表达
豆科植物凝集素基因和血红蛋白基因在对根瘤菌的识别作用和类菌体在低氧分压下的共生固氮中起重要作用。将豌豆(Pisum Sativum L.)凝集素基因和Parasponia andersonii血红蛋白基因的植物表达框架构...
张静娴荆玉祥沈世华王逸群高越峰单雪琴
关键词:转基因烟草基因表达
豌豆凝集素和血红蛋白基因对水稻的转化和表达
豆科植物凝集素对识别宿主的专一根瘤菌和豆血红蛋白在共生固氮保护固氮酶活性中去重要作用。为了扩大根瘤菌的宿主范围和试探根瘤菌在非豆科植物上的固氮作用,我们将豌豆凝集素(p1)基因和Parasponia andersonii...
张静娴荆玉祥沈世华王逸群高越峰单雪琴
关键词:基因枪转化基因表达转基因
Transformation of Two Nitrogen_fixation_related Plant Genes into Tobacco and Their Expressions被引量:7
2000年
Lectins and leghemoglobins in legumes play the important roles, respectively, in recognition of host plants to their own rhizobia, and lowering the oxygen partial pressure surround the bacteroids and protecting nitrogenase from oxygen in symbiotic nitrogen_fixing nodules.In order to investigate the non_leguminous recognition of rhizobial bacteria relating to nitrogen fixation, plant expression vectors containing pea lectin gene ( pl ) and Parasponia hemoglobin gene ( phb ) have been, respectively, constructed in a plasmid and the plasmid has been introduced into tobacco ( Nicotiana tabacum L.) using Agrobacterium tumefaciens (Smith et Townsend) Conn as a vehicle for transformation. PCR and Southern blot demonstrated that the two genes were integrated into the genome of the tobacco plants. Histochemical staining for GUS activity, Western blotting,and in situ hybridization of pea lectin showed that they were expressed at translational level in the plants. These results may provide a clue for exploring whether Rhizobium leguminosarum bv. viciae could extend its host range and make the transgenic tobacco plants have the possibility of being symbiotic, or associative to nitrogen fixation.
张静娴荆玉祥沈世华王逸群高越峰单雪琴
全文增补中
两个固氮相关的植物基因对烟草和水稻的转化及其表达
豆科植物凝集素基因和血红蛋白基因在对根瘤菌的识别作用和类菌体在低氧分压下的共生固氮中起重要作用.该文的目的是试图将这两个基因转移到非豆科植物烟草和水稻,使其能识别根瘤菌,探讨非豆科植物的共生和联合固氮的可能性.
张静娴
关键词:血红蛋白基因烟草水稻基因表达
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Transformation of Pea Lectin Gene and Parasponia Haemoglobin Gene into Rice and Their Expressions被引量:14
2001年
Lectin and leghemoglobin in legumes play the important roles, respectively, in recognition of host plants to their rhizobial bacteria, and lowering the oxygen partial pressure around bacteroids and protecting nitrogenase from oxygen in symbiotic nitrogen-fixing nodules. In order to extend the host range of the rhizobial bacteria and to make them fix nitrogen in non-legumes, pea lectin gene (pl) and Parasponia hemoglobin gene ( phl,) have been constructed into a plant expression vector (pCBHUL) and the vector pCBHUL was introduced into rice calli from immature young embryos by particle bombardment. After the calli were regenerated into plantlets on the resistant-selecting media containing hygromycin, they were identified by PCR and Southern blot hybridization. It was indicated that the pi and phb genes were integrated into nucleic genome of the transformed rice plants. GUS activity and the product of the pi gene were determined by GUS staining, Western blot and in situ hybridization at translational level. Eighteen out of 40 plants resistant to hygromycin were positively identified by PCR analysis with the rate of 45%. The pi gene was expressed in 3 out of 18 plants with 17% and 7.5% in 40 plants. The results may provide a clue for exploring whether Rhizobium leguminosarum by. viceae could extend its host range and make the transgenic rice plants have the possibility of being symbiotic, or associative to nitrogen fixation.
张静娴王忆平沈世华王逸群高越峰单雪琴荆玉祥
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