蒋立希
主要从事植物分子生理与作物种质创新方面的研究。
个性化签名
- 姓名:蒋立希
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学术头衔:
博士生导师
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学科领域:
声学
- 研究兴趣:主要从事植物分子生理与作物种质创新方面的研究。
蒋立希(),男,生于1964年9月,现任浙江大学农业与生物技术学院教授、博士生导师。1986年毕业于浙江农业大学农学系遗传育种专业并获得学士学位,1996-2001年赴德国哥廷根大学留学,先后于1998年、2001年获得硕士、博士学位。2001-2005年先后在新加坡国立大学农业分子生物研究院(IMA)、分子与细胞生物研究院(IMCB)任博士后、研究员等职。2005年后加盟浙江大学农业与生物技术学院。
主要从事植物分子生理与作物种质创新方面的研究。先后克隆了控制拟南芥花粉管在雌体生殖通道中伸长的VGD1基因、控制雌配子体发育的KD96基因等,并作为主要贡献人之一参与了调控花药绒毡层细胞分化的TPD1基因的克隆等。其中VGD1是国际上第一个在植物中认定的控制花粉管在雌体生殖通道中泳动的主效基因;该基因的克隆第一次揭示了果胶甲酯酶与花粉管伸长、发育之间的关系,从而明确了花粉管在雌体生殖通道中延长的分子机制,有关论文在Plant Cell杂志上发表并获专栏突出介绍。在种质创新领域的贡献包括甘蓝型油菜、白菜、甘蓝等芸苔属作物裂荚基因的克隆与操纵,在芸苔属植物中克隆了裂荚控制基因并创造了油菜抗裂荚新种质。其它贡献包括无花瓣油菜遗传规律、产量生理与避病机制等的研究;有关系列论文已在国际刊物上发表,种质材料被多家国际育种公司引用。
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蒋立希, Q. Zhao, L. Jiang, H.C. Becker, G. Wolf
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-1年11月30日
Apetalous genotypes of oilseed rape may be less infected from some diseases, in particular Sclerotinia sclerotiorum, which are distributed by petals when they wilt and drop on leaves tissue. In our study, (1) three apetalous lines, one partial apetalous l
Brassica napus,, apetalous flowers,, Sclerotinia disease,, enzyme test,, protease,, xylanase
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【期刊论文】Effect of apetalous flowers on crop physiology in winter oilseed rape (Brassica napus) Einflu
蒋立希, L. Jiang and H.C. Becker
,-0001,():
-1年11月30日
The transmission of radiation to the leaf canopy of oilseed rape is reduced during flowering by the highly reflective yellow floral layer. Apetalous types may show a higher light assimilation and an increased yield. Crop physiology of a genetically apetal
Brassica napus,, apetalous flower,, crop physiology,, photosynthesis,, leaf area index
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【期刊论文】Environmental effects on expression of apetalous flowers in oilseed Rape (Brassica napus)
蒋立希, L. Jiang, , H.C. Becker
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-1年11月30日
Apetalous genotypes may be of interest in oilseed rape breeding because of a more efficient photosynthesis and a lower susceptivity to pathogens infecting the petals. Petalous degree was, however, found unstable during flowering. Two types of environmenta
environmental effect-phytohormone-apetalous flower-Brassica napus-mutation
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【期刊论文】Inheritance of a mutant with apetalous flowers in oilseed rape (Brassica napus)
蒋立希, L. Jiang, , H.C. Becker
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-1年11月30日
The inheritance of apetalous flowers in the mutant 'ap-Tengbe' was investigated. 'Ap-Tengbe' was crossed with the German cultivar 'Falcon'. The F1, both BC1 generations and their reciprocal forms, as well as the F2 were grown for investigation of Petalous
mutagenesis-apetalous flower-Brassica napus-cytoplasmic effect
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【期刊论文】The TAPETUM DETERMINANT1 Gene Is Required for Cell Specialization in the Arabidopsis Anther
蒋立希, Shu-Lan Yang, a, Li-Fen Xie, Hui-Zhu Mao, , Ching San Puah, Wei-Cai Yang, b, Lixi Jiang, Venkatesan Sundaresan, c and De Ye a
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-1年11月30日
In flowering plants, pollen formation depends on the differentiation and interaction of two cell types in the anther: the reproductive cells, called microsporocytes, and somatic cells that form the tapetum. The microsporocytes generate microspores, wherea
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蒋立希, Shu-Lan Yang, Lixi Jiang, Ching San Puah, Li-Fen Xie, Xue-Qin Zhang, Li-Qun Chen, Wei-Cai Yang, and De Ye*
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-1年11月30日
Previously, we reported that the TAPETUM DETERMINANT1 (TPD1) gene is required for specialization of tapetal cells in the Arabidopsis (Arabidopsis thaliana) anther. The tpd1 mutant is phenotypically identical to the excess microsporocytes1 (ems1)/extra spo
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蒋立希, Lixi Jiang, a, , Shu-Lan Yang, Li-Fen Xie, Ching San Puah, Xue-Qin Zhang, b, Wei-Cai Yang, c, Venkatesan Sundaresan, d and De Yea
The Plant Cell, Vol. 17, 584-596, February 2005,-0001,():
-1年11月30日
In flowering plants, penetration of the pollen tube through stigma, style, and transmitting tract is essential for delivery of sperm nuclei to the egg cells embedded deeply within female tissues. Despite its importance in plant reproduction, little is kno
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【期刊论文】The apetalous mutants in Brassica oilseeds
蒋立希, Lixi JIANG*, Yuan-Long LI, Hua-Bing MENG
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-1年11月30日
Apetalous genotypes might be of interest in the breeding programs of Brassica oilseeds because of their more efficient photosynthesis, reallocation of the photosynthesized assimilates, and a lower probability of infection from the pathogens distributed by
apetalous flowers, Brassica oilseeds, inheriting mode, yield physiology, Sclerotinia infection
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