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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
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-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
,-0001,():
-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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