Global ETD Search
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Showing 1 to 6 of 6 for “"nitrogen and carbon metabolism"”.
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Identifizierung und Analyse von Maismutanten mit Defekten im C 4-Zyklus
The C4-metabolism in Maize (Zea mays) serves to efficiently concentrate CO2 near the enzyme RuBisCo. Therefore the photorespiration, as we can find in C3-plants, is suppressed. Although numerous investigations deal with the regulation of the C4-photosynthesis, a lot of factors which take part in it …
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Einfluss der Wandtemperatur auf die Stoß-Grenzschicht-Wechselwirkung an einer Rampe im Hyperschall
The C4-metabolism in Maize (Zea mays) serves to efficiently concentrate CO2 near the enzyme RuBisCo. Therefore the photorespiration, as we can find in C3-plants, is suppressed. Although numerous investigations deal with the regulation of the C4-photosynthesis, a lot of factors which take part in it …
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Functional genomics of nodulins in the model legume Lotus japonicus
… genes involved in SNF, validate their expression and functionally characterise them. An existing 5.6K cDNA array (Colebatch et al., 2004) was extended to produce the 9.6K LjNEST array, while a second array, the 11.6K LjKDRI array, was also produced. Furthermore, the protocol for array …
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Nitrogen signalling in Arabidopsis thaliana
Nitrogen is an essential macronutrient for plants and nitrogen fertilizers are indispensable for modern agriculture. Unfortunately, we know too little about how plants regulate their use of soil nitrogen, to maximize fertilizers-N use by crops and pastures. This project took a dual approach, …
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Discovery of novel regulators and genes in nitrogen utilization pathways in maize
Nitrogen (N) is a key limiting plant nutrient and its availability is expected to have significant impacts on the expression of genes that function in nitrogen metabolism and growth responses to N. Although a key target for improving maize yield response to nitrogen, relatively little is known …
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Änderung der Glycindecarboxylase- und Serinhydroxymethyltransferase-Aktivität in Blättern:
… zu überexprimieren. Außerdem wurde anhand mesophyllspezifischer P-Antisense- und blattspezifischer SHMT-Antisense-Kartoffelpflanzen untersucht, welche Auswirkungen einer Reduktion der Kapazität der Umwandlung von Serin in Glycin auf die Photosynthese und den C- und N-Metabolismus hat, …