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1.
Plant Mol Biol ; 108(4-5): 469-480, 2022 Mar.
Artículo en Inglés | MEDLINE | ID: mdl-34994920

RESUMEN

KEY MESSAGE: Association analysis resulted in the identification of specific StGWD alleles causing either an increase or decrease in starch phosphate content which was verified in diploid and tetraploid potato mapping populations. Potatoes are grown for various purposes like French fries, table potatoes, crisps and for their starch. One of the most important aspects of potato starch is that it contains a high amount of phosphate ester groups which are considered to be important for providing improved functionalization after derivatization processes. Little is known about the variation in phosphate content as such in different potato varieties and thus we studied the genetic diversity for this trait. From other studies it was clear that the phosphate content is controlled by a quantitative trait locus (QTL) underlying the candidate gene α-Glucan Water Dikinase (StGWD) on chromosome 5. We performed direct amplicon sequencing of this gene by Sanger sequencing. Sequences of two StGWD amplicons from a global collection of 398 commercial cultivars and progenitor lines were used to identify 16 different haplotypes. By assigning tag SNPs to these haplotypes, each of the four alleles present in a cultivar could be deduced and linked to a phosphate content. A high value for intra-individual heterozygosity was observed (Ho = 0.765). The average number of different haplotypes per individual (Ai) was 3.1. Pedigree analysis confirmed that the haplotypes are identical-by-descent (IBD) and offered insight in the breeding history of elite potato germplasm. Haplotypes originating from introgression of wild potato accessions carrying resistance genes could be traced. Furthermore, association analysis resulted in the identification of specific StGWD alleles causing either an increase or decrease in starch phosphate content varying from 12 nmol PO4/mg starch to 38 nmol PO4/mg starch. These allele effects were verified in diploid and tetraploid mapping populations and offer possibilities to breed and select for this trait.


Asunto(s)
Fosfatos/metabolismo , Fosfotransferasas (Aceptores Pareados)/genética , Solanum tuberosum/genética , Solanum tuberosum/metabolismo , Almidón/metabolismo , Tetraploidía , Alelos , Variación Genética , Haplotipos , Linaje , Fosfotransferasas (Aceptores Pareados)/metabolismo , Polimorfismo de Nucleótido Simple
2.
Transgenic Res ; 21(1): 39-50, 2012 Feb.
Artículo en Inglés | MEDLINE | ID: mdl-21465166

RESUMEN

The development and testing in the field of genetically modified -so called- orphan crops like cassava in tropical countries is still in its infancy, despite the fact that cassava is not only used for food and feed but is also an important industrial crop. As traditional breeding of cassava is difficult (allodiploid, vegetatively propagated, outbreeding species) it is an ideal crop for improvement through genetic modification. We here report on the results of production and field testing of genetically modified low-amylose transformants of commercial cassava variety Adira4 in Indonesia. Twenty four transformants were produced and selected in the Netherlands based on phenotypic and molecular analyses. Nodal cuttings of these plants were sent to Indonesia where they were grown under biosafety conditions. After two screenhouse tests 15 transformants remained for a field trial. The tuberous root yield of 10 transformants was not significantly different from the control. Starch from transformants in which amylose was very low or absent showed all physical and rheological properties as expected from amylose-free cassava starch. The improved functionality of the starch was shown for an adipate acetate starch which was made into a tomato sauce. This is the first account of a field trial with transgenic cassava which shows that by using genetic modification it is possible to obtain low-amylose cassava plants with commercial potential with good root yield and starch quality.


Asunto(s)
Amilosa/genética , Manihot/genética , Plantas Modificadas Genéticamente , Almidón Sintasa/genética , Almidón/análogos & derivados , Agricultura/métodos , Amilosa/análisis , Clonación Molecular , Resistencia a los Herbicidas/genética , Indonesia , Manihot/fisiología , Raíces de Plantas/genética , Almidón/genética , Transformación Genética
3.
Plant Mol Biol ; 60(5): 647-62, 2006 Mar.
Artículo en Inglés | MEDLINE | ID: mdl-16649104

RESUMEN

In the past, silencing of granule-bound starch synthase (GBSSI) in potato was achieved by antisense technology, where it was observed that inclusion of the 3' end of the GBSSI coding region increased silencing efficiency. Since higher silencing efficiencies were desired, GBSSI inverted repeat constructs were designed and tested in potato. First, large inverted repeats comprising the 5' and the 3' half of the GBSSI cDNA were tested. The 5' IR construct gave a significantly higher silencing efficiency than the 3' IR construct. Since it was not known whether the observed difference was due to the sequence or the orientation of the inverted repeat, the GBSSI cDNA was divided into three regions, after which each region was tested in small inverted repeats in two orientations. To this end large numbers of independent transformants were produced for each construct. The results suggested that there was no effect of inverted repeat orientation on silencing efficiency. The percentage of transformants showing strong inhibition varied from 48% for a 3'-derived construct to 87% for a 5' as well as a middle region-derived construct. Similar to the large inverted repeats, the 3' sequences induced the least efficient silencing implying that the observed differences in silencing efficiency are caused by sequence differences. The small inverted repeat constructs with a repeat size of 500-600 bp and a spacer of about 150 bp were more efficient silencing inducers than the large inverted repeat constructs where the size of the repeat was 1.1 or 1.3 kb whilst the size of spacer was 1.3 or 1.1 kb. The results presented here show that size and sequence of the inverted repeat influenced silencing efficiency.


Asunto(s)
Interferencia de ARN , Secuencias Repetitivas de Ácidos Nucleicos/genética , Solanum tuberosum/enzimología , Almidón Sintasa/genética , Northern Blotting , ADN sin Sentido/genética , ADN Bacteriano/genética , ADN Complementario/genética , Regulación Enzimológica de la Expresión Génica , Regulación de la Expresión Génica de las Plantas , Plantas Modificadas Genéticamente , ARN de Planta/genética , ARN de Planta/metabolismo , Solanum tuberosum/genética , Solanum tuberosum/metabolismo , Almidón/metabolismo , Almidón Sintasa/metabolismo
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