A transposition-active Phyllostachys edulis long terminal repeat (LTR) retrotransposon
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[1] P. Suprasanna,et al. Moving through the Stressed Genome: Emerging Regulatory Roles for Transposons in Plant Stress Response , 2016, Front. Plant Sci..
[2] E. Danchin,et al. Adaptation to Global Change: A Transposable Element-Epigenetics Perspective. , 2016, Trends in ecology & evolution.
[3] Sudhir Kumar,et al. MEGA7: Molecular Evolutionary Genetics Analysis Version 7.0 for Bigger Datasets. , 2016, Molecular biology and evolution.
[4] Mingbing Zhou,et al. Endo-1,4-β-glucanase gene involved into the rapid elongation of Phyllostachys heterocycla var. pubescens , 2016, Trees.
[5] Dong Lili,et al. Expression and Function of PeSCR Gene from Phyllostachys edulis , 2016 .
[6] A. Marchais,et al. Reconstructing de novo silencing of an active plant retrotransposon , 2013, Nature Genetics.
[7] Ying Lu,et al. The draft genome of the fast-growing non-timber forest species moso bamboo (Phyllostachys heterocycla) , 2013, Nature Genetics.
[8] Hailan Liu,et al. Development of universal genetic markers based on single-copy orthologous (COSII) genes in Poaceae , 2012, Plant Cell Reports.
[9] B. Meyers,et al. A 5-methylcytosine DNA glycosylase/lyase demethylates the retrotransposon Tos17 and promotes its transposition in rice , 2011, Proceedings of the National Academy of Sciences.
[10] José M. Sempere,et al. The Gypsy Database (GyDB) of mobile genetic elements: release 2.0 , 2010, Nucleic Acids Res..
[11] D. Weigel,et al. Selective epigenetic control of retrotransposition in Arabidopsis , 2009, Nature.
[12] A. Moya,et al. Relationships of gag-pol diversity between Ty3/Gypsy and Retroviridae LTR retroelements and the three kings hypothesis , 2008, BMC Evolutionary Biology.
[13] A. Schulman,et al. BARE retrotransposons produce multiple groups of rarely polyadenylated transcripts from two differentially regulated promoters. , 2008, The Plant journal : for cell and molecular biology.
[14] T. Eickbush,et al. The diversity of retrotransposons and the properties of their reverse transcriptases. , 2008, Virus research.
[15] Michele Morgante,et al. Transposable elements and the plant pan-genomes. , 2007, Current opinion in plant biology.
[16] J. Zhai,et al. SDG714, a Histone H3K9 Methyltransferase, Is Involved in Tos17 DNA Methylation and Transposition in Rice[W] , 2007, The Plant Cell Online.
[17] H. Hirochika,et al. Epigenetic regulation of the rice retrotransposon Tos17 , 2006, Molecular Genetics and Genomics.
[18] S. Jackson,et al. Retrotransposon accumulation and satellite amplification mediated by segmental duplication facilitate centromere expansion in rice. , 2005, Genome research.
[19] Ian T. Baldwin,et al. Use of real-time PCR for determining copy number and zygosity in transgenic plants , 2004, Plant Cell Reports.
[20] Robert C. Edgar,et al. MUSCLE: multiple sequence alignment with high accuracy and high throughput. , 2004, Nucleic acids research.
[21] John F. McDonald,et al. LTR_STRUC: a novel search and identification program for LTR retrotransposons , 2003, Bioinform..
[22] Cédric Feschotte,et al. Plant transposable elements: where genetics meets genomics , 2002, Nature Reviews Genetics.
[23] Kathleen Marchal,et al. PlantCARE, a database of plant cis-acting regulatory elements and a portal to tools for in silico analysis of promoter sequences , 2002, Nucleic Acids Res..
[24] Thomas D. Schmittgen,et al. Analysis of relative gene expression data using real-time quantitative PCR and the 2(-Delta Delta C(T)) Method. , 2001, Methods.
[25] D J Ingham,et al. Quantitative real-time PCR assay for determining transgene copy number in transformed plants. , 2001, BioTechniques.
[26] H. Hirochika,et al. A 13-bp cis-regulatory element in the LTR promoter of the tobacco retrotransposon Tto1 is involved in responsiveness to tissue culture, wounding, methyl jasmonate and fungal elicitors. , 1999, The Plant journal : for cell and molecular biology.
[27] J. Ellis,et al. In planta Agrobacterium mediated gene transfer by infiltration of adult Arabidopsis thaliana plants , 1993 .
[28] K. Ueda,et al. Flowering, Seeding, Germination, and Flowering Periodicity of Phyllostachys pubescens , 1982 .
[29] W. F. Thompson,et al. Rapid isolation of high molecular weight plant DNA. , 1980, Nucleic acids research.
[30] Daniel H. Janzen,et al. Why Bamboos Wait So Long to Flower , 1976 .
[31] B. Mcclintock,et al. Chromosome organization and genic expression. , 1951, Cold Spring Harbor symposia on quantitative biology.