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黑麦草漆酶编码基因片段的克隆与序列分析
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作者 路运才 torben asp +2 位作者 黎裕 王天宇 Thomas Lübberstedt 《黑龙江大学自然科学学报》 CAS 北大核心 2007年第2期214-218,共5页
黑麦草中木质素的结构、含量是决定其饲用品质的主要因素。漆酶是木质素生物合成中的关键酶之一,属于多铜氧化酶基因家族。根据报道的植物漆酶编码基因的氨基酸序列中铜离子结合域及N-端糖基化位点两个保守区设计4对引物,以黑麦草总DNA... 黑麦草中木质素的结构、含量是决定其饲用品质的主要因素。漆酶是木质素生物合成中的关键酶之一,属于多铜氧化酶基因家族。根据报道的植物漆酶编码基因的氨基酸序列中铜离子结合域及N-端糖基化位点两个保守区设计4对引物,以黑麦草总DNA为模板,经PCR扩增、克隆、测序后得到3个有效序列,分别命名为Lac10-1、Lac8-1和Lac11-1。序列分析表明,3个基因片段的编码蛋白不仅含有保守的蓝铜氧化酶结合区域HAH和N-末端糖基化位点,而且分别与黄杨、黑麦草中分离的漆酶编码蛋白的氨基酸序列具有较高的同源性。因而,推断克隆到的3个基因片段是黑麦草漆酶基因家族的成员。 展开更多
关键词 黑麦草(Lolium perenne) 漆酶 序列分析 木质素
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Auxin Binding Protein 1 Reinforces Resistance to Sugarcane Mosaic Virus in Maize 被引量:4
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作者 Pengfei Leng Qing Ji +12 位作者 torben asp Ursula K. Frei Christina R. Ingvardsen Yongzhong Xing Bruno Studer Margaret Redinbaugh Mark Jones Priyanka Gajjar Sisi Liu Fei Li Guangtang Pan Mingliang Xu Thomas Lǖbberstedt 《Molecular Plant》 SCIE CAS CSCD 2017年第10期1357-1360,共4页
Dear Editor,Sugarcane mosaic virus (SCMV) causes severe viral diseases in maize worldwide (Fuchs and Gruntzig, 1995), resulting in significant losses in grain and forage yield in susceptible cultivars of maize and... Dear Editor,Sugarcane mosaic virus (SCMV) causes severe viral diseases in maize worldwide (Fuchs and Gruntzig, 1995), resulting in significant losses in grain and forage yield in susceptible cultivars of maize and related crops. The most promising solution is to cultivate resistant varieties, which contribute to sustainable crop production. Two epistatically interacting major SCMV resistance loci (Scmvl and Scmv2) are required to confer complete resistance against SCMV in the resistant nearisogenic line F7RPJRR (the letters left of the slash refer to the genotype at Scmv2 on chromosome 3 and those on the right refer to the genotype at Scmvl on chromosome 6, with R indicating a resistance allele and S a susceptibility allele) (Xing et al., 2006). 展开更多
关键词 Auxin Binding Protein 1 Reinforces Resistance Sugarcane Mosaic Virus MAIZE
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Selective Deactivation of Gibberellins below the Shoot Apex is Critical to Flowering but Not to Stem Elongation of Lolium 被引量:2
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作者 Rod W. King Lewis N. Mander +3 位作者 torben asp Colleen R MacMillan Cheryl A. Blundell Lloyd T. Evans 《Molecular Plant》 SCIE CAS CSCD 北大核心 2008年第2期295-307,共13页
Gibberellins (GAs) cause dramatic increases in plant height and a genetic block in the synthesis of GA1 explains the dwarfing of Mendel's pea. For flowering, it is GAs which is important in the long-day (LD) resp... Gibberellins (GAs) cause dramatic increases in plant height and a genetic block in the synthesis of GA1 explains the dwarfing of Mendel's pea. For flowering, it is GAs which is important in the long-day (LD) responsive grass, Loliurn. As we show here, GA1 and GA4 are restricted in their effectiveness for flowering because they are deactivated by C-2 hydroxylation below the shoot apex. In contrast, GAs is effective because of its structural protection at C-2. Excised vegetative shoot tips rapidly degrade [14C]GA1, [14C]GA4, and [14C]GA20 (〉80% in 6 h), but not [14C]GAs. CoincidentaUy, genes encoding two 2β-oxidases and a putative 16-17-epoxidase were most expressed just below the shoot apex (〈3 mm). Further down the immature stem (〉4 mm), expression of these GA deactivation genes is reduced, so allowing GA1 and GA4 to promote sub-apical stem elongation. Subsequently, GA degradation declines in florally induced shoot tips and these GAs can become active for floral development. Structural changes which stabilize GA4 confirm the link between florigenicity and restricted GA 2β-hydroxylation (e.g. 2α-hydroxylation and C-2 di-methylation). Additionally, a 2-oxidase inhibitor (Trinexapac Ethyl) enhanced the activity of applied GA4, as did limiting C-16,17 epoxidation in 16,17-dihydro GAs or after C-13 hydroxylation. Overall, deactivation of GA1 and GA4 just below the shoot apex effectively restricts their florigenicity in Loliurn and, conversely, with GAs, C-2 and C-13 protection against deactivation allows its high florigenicity. Speculatively, such differences in GA access to the shoot apex of grasses may be important for separating floral induction from inflorescence emergence and thus could influence their survival under conditions of herbivore predation. 展开更多
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