维普中文期刊产品整合服务
132篇 您的检索式:作者名="Tieman"
    题名 作者 年代 出处 被引量
1Genomics Approaches to Domestication Studies of Horticultural Crops显示文摘The majority of crops we eat today are derived from the domestication of their wild progenitors. Crop domestication satisfies the human need for food and nutrition. Characterization of the history and genetic basis of crop domestication is essential for us to conduct modern breeding practices. Genomics provide unprecedented opportunities for us to study domestication. In this review, the typical domestication syndromes of horticultural crops will be introduced. Using the tomato as a typical example, we will discuss how genetic and genomic data were used to decipher the origins, progenitors, and domestication processes of this crop. In the domestication exploration of the genetic basis especially,genome-scaled diversity scanning approaches have gained great popularity. Combining these approaches with QTL(Quantitative trait locus)-mapping, GWAS(Genome wide association study), metabolomics and homology-based searches as well as pan-genomics have demonstrated tremendous advantages and significantly contribute to our understanding of domestication. Genomics studies will accelerate domestication research and further breeding of crops.Zhongmin Yang Guixiang Li Denise Tieman Guangtao Zhu 2019Horticultural Plant Journal2019,5,6:6
2Catabolism of Branched Chain Amino Acids Supports Respiration but Not Volatile Synthesis in Tomato Fruits显示文摘分支链氨基酸 transaminases (BCAT ) 在分支链氨基酸白氨酸,异白氨酸,和缬氨酸的新陈代谢有一个关键角色。这些酶催化合成的最后步和这些氨基酸的降级的起始的步。尽管在植物的分叉的链氨基酸的 biosynthetic 小径广泛地被调查了,很多基因被描绘了,他们在植物的分解代谢完全还没被理解。我们以前在西红柿描绘了分叉的链氨基酸 transaminase 基因家庭,揭示 subcellular 本地化和六基因编码的酶的运动性质。这里,我们在水果开发期间检验了酶的可能的功能。我们进一步描绘了在分叉的链氨基酸 transaminases 的表示不同的转基因的植物 1 和 3,在线 overexpressing 任何一个 BCAT1 或 BCAT3 在在 BCAT1 和 volatiles 的层次缺乏的水果评估呼吸的率。我们测试的份量上经由喂实验的先锋和同位素,在水果 volatiles 的形成的分叉的链氨基酸和他们的相应 keto 酸的重要性。我们的结果不仅第一次在水果呼吸表明分叉的链氨基酸的重要性,而且揭示那 keto 酸,而非氨基酸,是为分叉的链风味 volatiles 的可能的先锋。Andrej Kochevenko Wagner L. Araujo Gregory S. Maloney Denise M. Tieman Phuc Thi Do Mark G. Taylor Harry J. Klee Alisdair R. Fernie 2012Molecular Plant2012,5,2:4
3Quantitative Trait Loci Analysis Identifies a Prominent Gene Involved in the Production of Fatty Acid-Derived Flavor Volatiles in Tomato显示文摘到进在西红柿的类脂化合物新陈代谢的基因规定的获得卓见,我们进行了跟随水果果皮和茄属 pennellii 基因渗入的叶织物介绍的 lipidomic 的分析衬里的新陈代谢的特点 loci (mQTL )(IL ) 。提高为选择水果特定的 mQTL 印射分辨率,我们在独立地导出的 S 的一个子集介绍了类脂化合物。pennellii 回交生来的线,以及在 near-isogenic sub-IL ? 人口。我们识别了控制班 III 脂肪分解酵素家庭, LIP1 和 LIP2 的几类脂化合物,和二个成员的层次的通常认为的 lecithin:cholesterol acyltransferase,那与 diacylglycerols (DAG ) 和 triacylglycerols (标签) 的减少的层次被联系。这个班的脂肪分解酵素从 acylglycerols 的甘油脊梁劈开丰满的酸。释放的丰满的酸用作风味 volatiles 的先锋。我们证明那 LIP1 表情与丰满的导出酸的不稳定的层次相关。我们进一步用转基因的植物在标签和 DAG 故障和不稳定的合成证实 LIP1 的功能。一起拿,我们的学习广泛地在西红柿描绘了脂性的混合物的基因建筑学并且在分子的水平证明从甘油脊梁的免费的丰满的酸的版本能在下游地不稳定的合成上有主要影响。Karolina Garbowicz Zhongyuan Liu Saleh Alseekh Denise Tieman Mark Taylor Anastasiya Kuhalskaya Itai Ofner Dani Zamir Harry J. Klee Alisdair R. Fernie Yariv Brotman 2018Molecular Plant2018,11,9:2
4Tomato phenylacetaldehyde reductases catalyze the last step in the synthesis of the aroma volatile 2-phenylethanol显示文摘Tieman D M Loucas H M Kim J Y 2007Phytochemistry2007,68,:1
5The tomato ethylene receptors NR and LeETR4 are negative regulators of ethylene response and exhibit functional compensation within a muhigene family显示文摘Tieman D E Taylor M G Ciardi J A et d 2000Proceedings of the National Academy of Sciences2000,97,:1
6A Heavily skewed pricing in twosided markets 显示文摘Bolt W Tieman 2008International Journal of Industrial Organization2008,26,5:1
7Differential expression of two novel members of the tomato ethylene-receptor family显示文摘I Tieman D M Klee H J 1999Plant Physiology1999,120,:1
8Ethylene receptor degradation controls the timing of ripening in tomato fruit 显示文摘Kevany B M Tieman D M Taylor M G 2007Plant J2007,51,3:1
9Differential expression of two novel members of the tomato ethylene-receptor family显示文摘Tieman D M Klee H J 1999Plant Physio- logy1999,120,:1
10Pectin methylesterase isoforms in tomato(Lycopersicon esculentum) tissues(effects of expression of a pectin methylesterase antisense gene)显示文摘Gaffe J Tieman D M Handa A K 1994Plant Physiology1994,105,1:1
11Differential regulation of the tomato ETR gene family throughout plant development显示文摘Lashbrook C Tieman D Klee H 1998Plant J1998,15,24:1
12Ethylene receptor degradation controls the timing of ripening in tomato fruit 显示文摘KEVANY B M TIEMAN D M TAYLOR M G 2007Plant J2007,51,3:1
13Differential expression of two novel members of the tomato ethylene - receptor family 显示文摘Tieman D Klee H 1999Plant Physiol1999,,16:1
14Acoustic Startle Eyeblink Response After Acute Exercise显示文摘James G. Tieman Lelon J. Peacock Kirk J. Cureton Rod K. Dishman 2001International Journal of Neuroscience (-)2001,,1:1
15Molecular cloning of tomato pectin methylesterase gene and its expression in Rutgers ripening inhibitor, nonripening, and never ripe tomato fruits显示文摘Harriman R W Tieman D M Handa A K 1991Plant Physiology1991,97,1:1
16Pectin methylesterase isoforms in tomato (Lycopersicon esculentum) tissues (effects of expression of a pectin methylesterase antisense gene) 显示文摘Gaffe J Tieman D M Handa A K 1994Plant Physiology1994,105,1:1
17Identification of genes inthe phenylalanine metabolic pathway by ectopic expression of aMYB transcription factor in tomato fruit 显示文摘Dal Cin V Tieman D M Tohge T 2011The Plant Cell2011,23,7:1
18Members of the tomato LeEIL(EIN3-like) gene family are functionally redundant and regulating ethylene responses throughout plant development显示文摘Tieman D M Ciardi J A Taylor M G 2001Plant J2001,26,:1
19Heavily skewed pricing in two-sided markets显示文摘Wilko Bolt Alexander F. Tieman 2007International Journal of Industrial Organization2007,,5:1
20Influence of the mycotoxins alpha-and beta-zearalenol and deoxynivalenol on the cell cycle of cultured porcine endometrial显示文摘Tieman U Viergutz T Jonas L 2003Reprod Toxiol2003,17,2:1
返回顶部 每页显示:
共7页 首页 上一页 第1页 下一页 末页 /7 跳转

网站首页 | 关于我们 | 联系我们 | 产品服务 | 客服中心 | 广告服务 | 版权声明 | 网站联盟 | 友情链接 | 售卡网点

版权所有© 渝B2-20050021-1 渝公网安备 50019002500403号 违法和不良信息举报中心

互联网出版许可证 新出网证(渝)字10号 全国400电话 - 免长途话费