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7篇 您的检索式:作者名="Mohan B. Singh"
    题名 作者 年代 出处 被引量
1Transcriptome-Based Examination of Putative Pollen Allergens of Rice (Oryza sativa ssp. japonica)显示文摘花粉变应原在富有地植物的生活历史上抄录并且翻译产品的大多数之中,并且特别地草。在米饭识别不同花粉变应原,通常认为的变应原在用 Affymetrix 57K 米饭 GeneChip microarray 描绘的米饭染色体和他们的表示被识别。在最丰富的花粉特定的候选人抄本之中是 Ory s 1 beta-expansin, Ory s 2, Ory s 7 EF 手, Ory s 11, Ory s 12 profilin A, Ory s 23, glycosyl hydrolase 家庭 28 (polygalacturonase ) ,并且一度时髦的风尚有约束力的蛋白质。高度表示的花粉蛋白质经常是在多重拷贝数字的现在,有时与位于相反的 DNA 海滨的附近的区域的镜像。这些中的许多是 intronless 并且作为保留他们的规章的元素的将近准确的拷贝的拷贝插入。23 反映的 Ory s 低可变性和高拷贝数,建议最近的基因扩大。一些拷贝包含 pseudogenes,它可以通过 retrotransposition 的活动反映他们的起源;一些通常认为的引起过敏症的序列与 transposable 元素(LTR ) 的重复序列忍受熔化产品。附近的许多重复序列, transposable 元素的激活,和 mRNA 抄本的高生产看起来在花粉与一致并且可以贡献高度抄录的蛋白质可以为翻译与优化特征在被拷贝并且插入的症候群,包括组织和 introns 的移动。Scott D. Russell Prem L. Bhalla Mohan B. Singh 2008Molecular Plant2008,1,5:3
2Identification of pronp1, a tobacco profilin gene activated in tip-growing cells显示文摘Ines Swoboda Prem L. Bhalla Huiling Xu Yan Zhang Irene Mittermann Rudolf Valenta Mohan B. Singh 2001Plant Molecular Biology2001,,5:1
3Generative cells ofLilium longiflorum possess translatable mRNA and functional protein synthesis machinery显示文摘Cecilia K. Blomstedt R. Bruce Knox Mohan B. Singh 1996Plant Molecular Biology1996,,5:1
4Inhibiting the Programmed Death 1 Pathway Rescues Mycobacterium tuberculosis–Specific Interferon γ–Producing T Cells From Apoptosis in Patients With Pulmonary Tuberculosis显示文摘Amar Singh Anant Mohan Aparajit B. Dey Dipendra K. Mitra 2013Journal of Infectious Diseases2013,,4:1
5Molecular repertoire of flowering plant male germ cells显示文摘Mohan B. Singh Prem L. Bhalla Scott D. Russell 2008Sexual Plant Reproduction2008,,1:1
6Transcriptome profiling of Lilium longiflorum generative cells by cDNA microarray显示文摘Takashi Okada Mohan B. Singh Prem L. Bhalla 2007Plant Cell Reports2007,,7:1
7Unique and conserved features of floral evocation in legumes显示文摘Legumes, with their unique ability to fix atmospheric nitrogen, play a vital role in ensuring future food security and mitigating the effects of climate change because they use less fossil energy and produce less greenhouse gases compared with N-fertilized systems. Grain legumes are second only to cereal crops as a source of human and animal food, and they contribute approximately one third of the protein consumed by the human population. The productivity of seed crops, such as grain legumes, is dependent on flowering. Despite the genetic variation and importance of flowering in legume production, studies of the molecular pathways that control flowering in legumes are limited.Recent advances in genomics have revealed that legume flowering pathways are divergent from those of such model species as Arabidopsis thaliana. Here, we discuss the current understanding of flowering time regulation in legumes and highlight the unique and conserved features of floral evocation in legumes.Lim Chee Liew Mohan B. Singh Prem L. Bhalla 2014Journal of Integrative Plant Biology2014,56,8:1
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