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Titlebook: Genetics and Genomics of Linum; Christopher A. Cullis Book 2019 Springer Nature Switzerland AG 2019 Flax.genome.transcriptome.breeding.evo

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https://doi.org/10.1007/978-3-658-36857-9xtensively studied small RNAs in plant species are microRNAs (miRNAs), which regulate gene expression at the post-transcriptional level. In flax, miRNAs were predicted on the basis of genome and transcriptome sequencing data. Moreover, high-throughput sequencing of small RNAs and evaluation of miRNA
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https://doi.org/10.1007/978-3-8350-9539-7te (EMS) has been used to create large mutant populations that can be screened using TILLING to identify mutations in specific genes via a reverse genetics approach. Additionally, forward genetics can be used to identify mutants showing interesting phenotypes. Such approaches have been used to ident
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https://doi.org/10.1007/978-3-322-89656-8undamentals of how plants in general biochemically produce their protective seed coats (protecting the embryo until germination) are very poorly understood at the molecular level, in spite of its massive evolutionary importance. Flax is no exception..Herein, we address the natural product molecular
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https://doi.org/10.1007/978-3-8349-4121-3e a transgenic plant. Flax transformation is possible with techniques such as biolistic particles, ultrasound sonication or . infection by wounding and co-cultivation, followed by regeneration. These techniques not only yield low transformed plants but are also long and prone to being accompanied by
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https://doi.org/10.1007/978-3-662-43015-6e development of the gene-for-gene hypothesis of the interaction between a specific gene in the plant and its partner in the pathogen arose from the work on the interaction between flax and its pathogenic rust fungus, .. The genes involved were initially isolated through transposon tagging, but the
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https://doi.org/10.1007/978-3-658-13303-0rent agronomical practices associated with their cultivation. In particular, the plants for the fiber crop are grown at a high density. It has been observed for many centuries that subsequent generations of plants grown from seed of the fiber crop show rapid variations in phenotype in spite of the p
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Empirische Forschung und Datenerhebung,e due just to either random mutations or the movement of transposable elements but rather that the genome appears to be able to switch between two well-defined, different sequences at many loci. The genomes of nine lines, the progenitor line (Pl) and eight derived lines (genotrophs), have been compa
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Theoretische Grundlagen und Konzepte, stem for long fibers for linen (flax) production and a small shorter bushy phenotype for high seed yield (linseed). These two contrasting commercial phenotypes have more recently been augmented by the increasing use of flax as an important source of fiber, of omega-3 fatty acids, of plant estrogens
发表于 2025-3-31 21:58:47 | 显示全部楼层
https://doi.org/10.1007/978-3-030-23964-0Flax; genome; transcriptome; breeding; evolution; Systematic Botany
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