Molecular Characterization of Genes Involved in Apocarotenoid Biosynthetic Pathway for The Production of Crocin in Crocus Sativus L

dc.contributor.guideSAHOO, K.K.
dc.coverage.spatial
dc.creator.researcherMUDULI, NAMITA
dc.date.accessioned2025-11-11T06:37:22Z
dc.date.available2025-11-11T06:37:22Z
dc.date.awarded2024
dc.date.completed2024
dc.date.registered2018
dc.description.abstractCrocus sativus L. is a herbaceous, perennial, sterile plant. It is commonly known as Sattron. newlineThe dried stigma of its flower is one of the most expensive spices and produces unique newlinecharacteristics compounds including crocin, picrocrocin, and safranal which have many newlineeconomic values. Saffron plants propagated vegetatively through corms. To study Saffron plant newlinegrowth under ex vitro conditions, corms were planted in pot and field conditions at Ravenshaw newlineUniversity, Cuttack, Odisha. In pot, the corms were planted in soil with cow manure, and newlinechemical fertilizer (NPK; 20:20:20), and without treatment. In this tropical climatic condition, newlineno flowers were observed in any of the conditions. However, vegetative growth and cormlet newlineproduction were observed in both conditions, In pot conditions, well-vegetative growth, and newlinegood qualities of daughter corms with higher weight (5.32 + 0.392 g/corm) were obtained from newlineplants grown under cow manure-treated soil. The plant grown under NPK-treated soil showed newlinehigher shoot growth but exhibited a lower weight of daughter corm production than corms of newlinecow dung-treated plants. The corms produced from open field conditions were small in size newlineand had infections. The organic fertilizer had a significant effect on cormlet production. newlineAfter observing the above results, the corms were planted in the pots under growth chamber newlineconditions, that provided the natural climatic conditions for the growth of the Saffron plant and newlinethe production of flowers. The flowering process and flower metabolite synthesis are regulated newlineby many factors. However, in these processes, the availability of limited knowledge renders newlinethe understanding of the regulatory factors and the downstream process of accumulation. Thus, newlinein the current investigation, the Saffron flower samples were collected for the proteomics newlineanalysis. This study resulted in the identification and expression studies of stage-specific newlineproteins of Saffron flower by integrating mass spectrometry data of five different stages of newlineSaffron flower like cor
dc.description.noteCrocus sativus L. is a herbaceous, perennial, sterile plant. It is commonly known as Sattron. The dried stigma of its flower is one of the most expensive spices and produces unique characteristics compounds including crocin, picrocrocin, and safranal which have many economic values. Saffron plants propagated vegetatively through corms. To study Saffron plant growth under ex vitro conditions, corms were planted in pot and field conditions at Ravenshaw University, Cuttack, Odisha. In pot, the corms were planted in soil with cow manure, and chemical fertilizer (NPK; 20:20:20), and without treatment. In this tropical climatic condition, no flowers were observed in any of the conditions. However, vegetative growth and cormlet production were observed in both conditions, In pot conditions, well-vegetative growth, and good qualities of daughter corms with higher weight (5.32 + 0.392 g/corm) were obtained from plants grown under cow manure-treated soil. The plant grown under NPK-treated soil showed higher shoot growth but exhibited a lower weight of daughter corm production than corms of cow dung-treated plants. The corms produced from open field conditions were small in size and had infections. The organic fertilizer had a significant effect on cormlet production. After observing the above results, the corms were planted in the pots under growth chamber conditions, that provided the natural climatic conditions for the growth of the Saffron plant and the production of flowers. The flowering process and flower metabolite synthesis are regulated by many factors. However, in these processes, the availability of limited knowledge renders the understanding of the regulatory factors and the downstream process of accumulation. Thus, in the current investigation, the Saffron flower samples were collected for the proteomics analysis. This study resulted in the identification and expression studies of stage-specific proteins of Saffron flower by integrating mass spectrometry data of five different stages of Saffron flower like corm with small shoot buds (Control A1), flower inside the sheath (Stage S1), flower just outside the sheath (Stage S2), flower at unopened state (Stage S3) and flower at opened state (Stage S4) with bioinformatics analysis. About five groups of proteins such as Control A1 (128), Stage Sl (44), Stage S2 (38), Stage S3 (29), and Stage S4 (29) were selected with abundance ratio p-value gt6.20 (medium confidence) which are then further reduced with the association of their differential abundance data with p-value=0.05 and log FC=l predicted by Bioconductor limma package. Gene ontology enrichment analysis revealed some important GO terms for biological processes, molecular function, and cellular components crucial for their annotations. Functional enrichment analysis and pathway enrichment analysis using the vi
dc.format.accompanyingmaterialDVD
dc.format.dimensionsA4
dc.format.extentALL PAGES
dc.identifier.researcherid
dc.identifier.urihttp://hdl.handle.net/10603/672748
dc.languageEnglish
dc.publisher.institutionDepartment of Botany
dc.publisher.placeCuttack
dc.publisher.universityRavenshaw University
dc.relation
dc.rightsuniversity
dc.source.universityUniversity
dc.subject.keywordBiotechnology and Applied Microbiology
dc.subject.keywordLife Sciences
dc.subject.keywordMicrobiology
dc.titleMolecular Characterization of Genes Involved in Apocarotenoid Biosynthetic Pathway for The Production of Crocin in Crocus Sativus L
dc.title.alternative
dc.type.degreePh.D.

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