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171篇 您的检索式:作者名="WALBOT"
    题名 作者 年代 出处 被引量
1水稻BT型不育系与保持系线粒体DNA的酶切电泳带型显示文摘采用加长组合琼脂糖凝胶电泳,可以有效地分辨水稻BT型不育系(寒丰A)和保持系(寒丰B)线粒体DNA HindⅢ,BamH Ⅰ和Sal Ⅰ酶切片段的数目和分子量。寒丰不育系和保持系线粒体基因组DNA最小长度约300kb,无显著差异。用9个玉米和水稻线粒体基因探针与酶切条带杂交发现,不育系与保持系线粒体DNA的相同大小酶切片段含有相似的顺序。两种mtDNA均存在rrn18S的重复顺序。不育系与保持系线粒体DNA HindⅢ,BamH Ⅰ和Sal Ⅰ酶切产生的相同片段分别为70%,64%和71%。杨金水 葛扣麟 Virginia Walbot 1992上海农业学报1992,8,1:9
2水稻线粒体DNA酶切带型研究显示文摘水稻IR36线粒体DNA经6种限制酶酶切,用脉冲电泳和长距离琼脂糖凝胶电泳分离酶切片段,获得高分辨率的清晰带型。每组酶切片段加和测得水稻IR36线粒体基因组大小分别为227kb(HindⅢ)、253kb(EcoRⅠ)、253kb(XhoⅠ)、294kb(BamHⅠ)、239kb(SalⅠ)和283kb(xbal)采用9个来自水稻和玉米线粒体基因组的基因探针与酶切条带杂交发现,水稻线粒体基因组含有包括编码基因在内的重复顺序。杨金水 Virginia Walbot 1993Acta Genetica Sinica1993,20,3:9
3Transcription of the gene coding for subunit 9 of ATP synthase in rice mitochondria 显示文摘Kaleikau E K Andre C P Walbot V 1993Plant Mol Biol1993,22,:1
4Arabidopsis and nicotiana antho- cyanin production activated by maize regulators R and Cl 显示文摘Lloyd A M Walbot V Davis R W 1992Sci- ence1992,258,:1
5Translational genomics for bioen-ergy production from fuelstock grasses : maize as the modelspecies 显示文摘Lawrence C J Walbot V 2007Plant Cell2007,19,7:1
6Rapid genomic change in higher plants 显示文摘Walbot V Cullis C A 1985AnnuRevPlantPhysiol1985,36,1:1
7Plant glutathione - S - transferases : enzymes with multiple function in sick- ness and in health 显示文摘Edwards R Dixon D P Walbot V 2000Trends in Plant Science2000,5,5:1
8Intron enhancement of gene expression and the splicing efficiency of introns in maize cdls显示文摘Luehrsen K R Walbot V 1991Mol Gen Genet1991,225,:1
9The TTG gene is required to specify epidermal cell fate and cell patterning in the Arabidopsis root显示文摘Galway ME Masucci JD Lloyd AM Walbot V Davis RW Schiefelbein JW 1994Dev Biol1994,166,2:1
10Translational genomics for bioenergy production from fuelstock grasses:maixe as the model species显示文摘LAWRENCE C J WALBOT V 0,,07:1
11The late developmental pattern of Mu trasnposon excision is conferred by a cauliflower mosaic virus 35S-driven MURA cDND in transgenic maize显示文摘 Walbot V 2000Plant Cell2000,,12:1
12Introns increase gene expre- sion in cultured maize cells显示文摘Callis J Formm M Walbot V 1957Genes Dev1957,1,10:1
13Unresolved issues in premeiotic anther development 显示文摘Kelliher T Egger R L Zhang H Walbot V 2004Frontiers in Plant Science2004,21,5:1
14Mutator activity in Maize correlates with the presence and expression of the Mu transposable element Mug 显示文摘 Warren C A Walbot V 1991Proc Natl Acad Sci1991,,10:1
15Disease lesion mimics in maize显示文摘Hoisington D A Neuffer M G Walbot V 1982Developmental biology1982,93,:1
16Plant glutathione S-transferases: enzymes with multiple functions in sickness and in health显示文摘Edwards R Dixon D P Walbot V 2000Trends Plant Sci2000,5,:1
17Sequence similarity of putative t ransposases links the Maize Mutator autonomous element and a group of bacterial in sertion sequences显示文摘 Benito M-I Walbot V 1994Nucleic Acids Res1994,,22:1
18Maize mutants for the 21st century显示文摘Walbot V 1991The Plant Cell1991,,3:1
19Stable transformation of maize after gene transfer by electroporation显示文摘FROMM ME TAYLOR LP WALBOT V 1986Nature1986,319,:1
20Impact of low-temperature stress on general phenylpropanoid and anthocya- nin pathways: enhancement of transcript abundance and anthocyanin pigmentation in maize seedlings 显示文摘Christie P J Alfenito M R Walbot V 1994Planta1994,,194:1
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