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Titlebook: Genetic Engineering of Plants; An Agricultural Pers Tsune Kosuge,Carole P. Meredith,Claire M. Wilson Book 1983 Springer Science+Business Me

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ro­ tein so as to make the seed a more efficient food source. A second strategy is to isolate a gene from one species and transfer it to another species where it produces a desirable feature. An example might be the transfer of a gene which encodes a more efficient pho­ tosynthetic enzyme from a wild relative978-1-4684-4546-6978-1-4684-4544-2
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Der Vergleich nach der Vergleichsordnung,its, of 14,000 daltons, are encoded by nuclear DNA (1,2). The small subunit is synthesized as a 20,000 dalton precursor, on free cytoplasmic ribosomes (3–6). This precursor functions in the post-translational transport of the small subunit from the site of synthesis into chloroplasts (5,6).
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,Risiken im Umgang mit Komplexität,ant viruses are considered as candidates for plant gene vectors. Additional genetic material incorporated into the genome of a plant virus might be replicated and expressed in the plant cell along with the other viral genes.
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Solidarnormen: Ein theoretischer Rahmen,ling elements” by B. McClintock (10,11,12,15). The tremendous amount of genetic and physiological information accumulated by McClintock, Peterson, Brink, Rhoades, and other authors led to the understanding of the capabilities of the maize transposable elements.
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https://doi.org/10.1007/978-3-531-19642-8dity in 1901 that ushered in the idea that humankind could recombine genes from natural sources into combinations that were desired for agricultural or horticultural production, but could not be found in natural populations.
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Plant Gene Structure,to subfamilies. 2) The sequence data obtained also allows us to determine the protein sequence and the sequence variation among the zein proteins which has occurred during evolution. 3) Comparing the zein genes and other known plant genes, we have identified potential signal sequences which can be distinguished from those of animal genes.
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Book 1983st in exploiting the new technologies to genetically engineer new forms of plants. A purpose of this meeting is to assess the possibilities. The papers that follow are concerned with the analysis of single genes or small gene families. We will read about genes found within the nucleus, plastids, and
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