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10篇 您的检索式:作者名="LaToya"
    题名 作者 年代 出处 被引量
1植物生物技术:苏云金杆菌抗虫基因的研究和它对未来树木遗传工程的影响(英文)显示文摘许多不同的技术可以促进农业生产力的持续增长,生物技术是其中最重要和最有前途的方法。因为生物技术不仅可以增加生产力,而且在环境和自然资源的保护中起重要作用,应用生物技术可以生产高产、优质、高抗性和无病植物,同时也可以提高育种效率和促进食品的工业化生产。苏云金杆菌抗虫基因是目前生物技术领域中应用最广泛的例子之一,由此而产生的抗虫植物正在广泛应用于世界各地的商业化生产。本文综述了苏云金杆菌抗虫基因的研究进展和它在未来林木遗传工程中的应用。表4参68。唐巍 Latoya Harris Ronald J.Newton 2004Journal of Forestry Research2004,15,1:1
2Hospitalist experiences, practice, opinions, and knowledge regarding peripherally inserted central catheters: A michigan survey显示文摘Vineet Chopra Latoya Kuhn Charles E. Coffey Mohammad Salameh Jim Barron Sarah Krein Scott A. Flanders Sanjay Saint 2013J Hosp Med2013,,6:1
3Chemotaetie Chemokines Are Important in the Pathogenesis of Irritable Bowel Syn- drome显示文摘Charles Darkoh Latoya Comer Getie Zewdie 2014PLOS ONE2014,9,3:1
4Autonomic dysfunction in PD: A window to early detection?显示文摘David S. Goldstein LaToya Sewell Yehonatan Sharabi 2011Journal of the Neurological Sciences2011,,1:1
5Molecular Mechanism of Salinity Stress and Biotechnological Strategies for Engineering Salt Tolerance in Plants显示文摘Molecular mechanisms of plant responses to salinity stress and the physiological consequences of altered gene expression are reviewed. Extensive use of comparisons with halophytic plants and glycophytos provide a paradigm for many responses to salinity exhibited by stress sensitive plants. Osmolyte biosynthesis, water flux control, and membrane transport of ions are important for maintenance and re-establishment of homeostasis. Transgenic plant and mutant analyses in Arabidopsis improve the understanding of stress responses and elements of stress signal transduction pathways. The genomic DNA sequences and cell-specific transcript expression data, combined with determinant identification based on molecular genetics, will provide the infrastructure for functional physiological dissection of salt tolerance determinants in plants. Protein interaction analysis, genetic activation and suppression screens will lead inevitably to an understanding of the interrelationships of the multiple signaling systems that control stress-adaptive responses and provide more opportunity to engineer salt tolerance in plants.Wei Tang* Latoya Harris Ronald J. Newton Department of Biology, Howell Science Complex, East Carolina University, Greenville, NC 27858-4353, USA 2003Forestry Studies in China2003,5,2:1
6Antioxidants enhance in vitro plant regeneration by inhibiting the accumulation of peroxdase in Virginia pine显示文摘TANG W LATOYA C H VILAY O 2004Plant Cell Rep2004,22,:1
7Breast and cervical cancer screening in Hispanic women a literature review using the health belief model显示文摘LaToya T 2002women''s health issues2002,12,3:1
8The Flipped Classroom: A Course Redesign to Foster Learning and Engagement in a Health Professions School显示文摘Jacqueline E. McLaughlin Mary T. Roth Dylan M. Glatt Nastaran Gharkholonarehe Christopher A. Davidson LaToya M. Griffin Denise A. Esserman Russell J. Mumper 2014Academic Medicine2014,,2:1
9抗生素对火炬松的器官发生植株再生的影响(英文)显示文摘本文研究了氨苄青霉素、羧苄青霉素和头孢霉素等3种抗生素对火炬松愈伤组织的生长和分化及不定芽生根的影响。结果表明,头孢霉素最有利于愈伤组织的诱导和生长,羧苄青霉素最有利于芽的分化,氨苄青霉素降低了不定芽的生根频率。所有试验的3种抗生素提高愈伤组织的形成和芽再生,但降低了芽的生根频率。这些结果表明,选择合适的抗生素对优化火炬松遗传转化体系有重要作用。图3表4参25。Latoya Harris Ronald J.Newton 2003Journal of Forestry Research2003,14,3:0
10记者为什么需要学习人工智能显示文摘在人工智能同时影响我们的新闻编辑室和社会之前,记者需要培养对人工智能的熟悉度,为此,需要对那些人工智能工作的基础设施有充分的理解,这些基础设施指提供系统支持和信息来源曲数据集。Latoya Petevson 2018青年记者2018,0,34:0
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