Applied biotechnology to improve Mediterranean rice varieties = Biotecnologia aplicada a la millora de varietats d’arròs mediterrànies

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Universitat de Barcelona. Departament de Biologia Vegetal
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Serrat Gurrera, Xavier
dc.date.accessioned
2016-10-20T06:56:10Z
dc.date.available
2016-10-20T06:56:10Z
dc.date.issued
2016-09-30
dc.identifier.uri
http://hdl.handle.net/10803/396188
dc.description.abstract
The current world population is over 7.4 billion and expected to exceed 9 billion in 2040, causing a 70% increase in food demand. Global environmental degradation, in the form of salinization, pollution and global warming, has also reduced the availability of suitable arable land and water sources, contributing to promote crop improvement in order to increase the potential yields. Rice (Oryza sativa) is the most widely consumed staple food for a large proportion of the world population. Classical rice breeding programs use its natural variability to create new allelic combinations which are screened for selecting those presenting superior agronomic traits such as improved yield. Those improved lines are stabilized through inbreeding to maintain the phenotype in their progeny. Certified seed producers systematically select and propagate registered varieties year by year in order to maintain their uniformity and the original registered cultivar traits, since natural mutations, spontaneous breeding between varieties and alien grain contamination can introduce undesirable variability at this stage. Nowadays biotechnology is used to drive the improvement of rice traits such as increased yield and grain quality. Moreover it helps to rapidly bestow tolerance to biotic (diseases and insects) and abiotic (drought, salinity, cold temperatures, nutrients deficiency) factors. Some of the available biotechnological techniques applied for crop improvement are i) the genetic engineering, which allows the addition of foreign genes in the rice genome although being controversial due to the social and environmental concerns, ii) the anther culture, which fasten and improves the selection of new breeding lines, and iii) the Targeting Induced Local Lesions IN Genomes (TILLING) which combines the production of large mutant populations with the detection of mutants in genes of interest through molecular screening. The main aim of the thesis is to study different biotechnological tools and their applications to the improvement of Mediterranean rice varieties. To achieve this biotechnology is used to study the pollen dispersion of a genetically engineered rice line, to accelerate the stabilization process through anther culture technique and to introduce new variability using a mutagenesis protocol followed by molecular detection of mutants. In this thesis we first studied the pollen-mediated gene flow between wild rice, conventional rice and an herbicide resistant transgenic rice line in order to determine gene flow rates in relation to the distance and the prevailing wind speed and direction. Results showed that pollen dispersal is dramatically effected by the distances between rice plants and the speed and direction of the prevailing wind. Furthermore, the enhanced pollen dispersal capability of weedy rice can also play an important role in transgenic pollen dispersal, which unfortunately had been underestimated. Then, we adapted an anther culture protocol in order to efficiently obtain commercial dihaploid lines from a Mediterranean japonica variety. Furthermore, we described the greenhouse and field trials used to select the best lines for registration which are now being successfully commercialized. Finally, we developed a fast protocol for obtaining mutants with agronomic interest. This protocol is based on ethyl methanesulfonate mutagenesis of seed-derived calli. The in vitro regenerated mutant population plants were directly screened for senescence-related genes, allowing to shorten in more than eight months the common seed mutagenesis protocol. The molecular screening protocol was also optimized and several potential delayed senescence mutants were identified and tested.
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dc.format.extent
209 p.
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application/pdf
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eng
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dc.publisher
Universitat de Barcelona
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ADVERTIMENT. L'accés als continguts d'aquesta tesi doctoral i la seva utilització ha de respectar els drets de la persona autora. Pot ser utilitzada per a consulta o estudi personal, així com en activitats o materials d'investigació i docència en els termes establerts a l'art. 32 del Text Refós de la Llei de Propietat Intel·lectual (RDL 1/1996). Per altres utilitzacions es requereix l'autorització prèvia i expressa de la persona autora. En qualsevol cas, en la utilització dels seus continguts caldrà indicar de forma clara el nom i cognoms de la persona autora i el títol de la tesi doctoral. No s'autoritza la seva reproducció o altres formes d'explotació efectuades amb finalitats de lucre ni la seva comunicació pública des d'un lloc aliè al servei TDX. Tampoc s'autoritza la presentació del seu contingut en una finestra o marc aliè a TDX (framing). Aquesta reserva de drets afecta tant als continguts de la tesi com als seus resums i índexs.
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TDX (Tesis Doctorals en Xarxa)
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Biotecnologia agrícola
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dc.subject
Biotecnología agrícola
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Agricultural biotechnology
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dc.subject
Arròs
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Arroz
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Rice
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Mutagènesi
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dc.subject
Mutagénesis
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dc.subject
Mutagenesis
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dc.subject
Cultius (Biologia)
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Cultivos (Biología)
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Cultures (Biology)
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Enginyeria genètica vegetal
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Ingeniería genética vegetal
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dc.subject
Plant genetic engineering
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dc.subject.other
Ciències Experimentals i Matemàtiques
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dc.title
Applied biotechnology to improve Mediterranean rice varieties = Biotecnologia aplicada a la millora de varietats d’arròs mediterrànies
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dc.type
info:eu-repo/semantics/doctoralThesis
dc.type
info:eu-repo/semantics/publishedVersion
dc.subject.udc
58
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dc.contributor.director
Nogués Mestres, Salvador
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Lalanne, Eric
dc.embargo.terms
cap
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dc.rights.accessLevel
info:eu-repo/semantics/openAccess


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