{"title":"Effects of drought-tolerant grapevine rootstocks on the mineral contents and fatty acid compositions of grape seeds","authors":"M. I. Odabasioglu, S. Gürsöz","doi":"10.3233/jbr-220007","DOIUrl":null,"url":null,"abstract":"BACKGROUND: As the interest in foods with positive effects on human health has increased in recent decades, the importance of the mineral contents and oil compositions of grape seeds has been better understood. However, research on grape seeds to date has largely focused on effects on health and the usability of grape seeds in the food industry and animal feeds. In agricultural research, grape seeds have generally been evaluated as a source of genes in breeding new varieties and as propagation material. OBJECTIVE: Unlike previous studies, this study not only investigates the effect of variety on the changes of pomological properties, fatty acid compositions, and oil, protein, and mineral contents of grape seeds; it also aims to determine the effects of grape rootstocks and growing seasons on those changes. METHODS: The seeds of five grape varieties (Red Globe, Trakya Ilkeren, Ata Sarisi, Hatun Parmagi, and Horoz Karasi) grafted onto drought-tolerant grape rootstocks (1103P and 110R) were analyzed during the growing seasons of 2017 and 2018. RESULTS: Seed size, moisture and oil contents, major fatty acids (palmitic, oleic, and linoleic), and levels of saturated fatty acids, monounsaturated fatty acids, unsaturated fatty acids, and boron varied by variety, rootstock, and season. However, the effects of growing seasons and varieties on the seeds were not limited to these findings; effects were also seen for seed vitality, protein content, and N, K, Ca, and Fe levels of the seeds, among others. CONCLUSIONS: Genotype was found to be the main factor causing changes in the fatty acid compositions and mineral contents of grape seeds. When the factors that we investigated were ordered based on the changes they caused for seeds in general, the sequence that appeared was genotype > growing season > grape rootstock.","PeriodicalId":15194,"journal":{"name":"Journal of Berry Research","volume":"1 1","pages":""},"PeriodicalIF":1.5000,"publicationDate":"2022-05-30","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"3","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Journal of Berry Research","FirstCategoryId":"97","ListUrlMain":"https://doi.org/10.3233/jbr-220007","RegionNum":4,"RegionCategory":"农林科学","ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"Q3","JCRName":"PLANT SCIENCES","Score":null,"Total":0}
引用次数: 3
Abstract
BACKGROUND: As the interest in foods with positive effects on human health has increased in recent decades, the importance of the mineral contents and oil compositions of grape seeds has been better understood. However, research on grape seeds to date has largely focused on effects on health and the usability of grape seeds in the food industry and animal feeds. In agricultural research, grape seeds have generally been evaluated as a source of genes in breeding new varieties and as propagation material. OBJECTIVE: Unlike previous studies, this study not only investigates the effect of variety on the changes of pomological properties, fatty acid compositions, and oil, protein, and mineral contents of grape seeds; it also aims to determine the effects of grape rootstocks and growing seasons on those changes. METHODS: The seeds of five grape varieties (Red Globe, Trakya Ilkeren, Ata Sarisi, Hatun Parmagi, and Horoz Karasi) grafted onto drought-tolerant grape rootstocks (1103P and 110R) were analyzed during the growing seasons of 2017 and 2018. RESULTS: Seed size, moisture and oil contents, major fatty acids (palmitic, oleic, and linoleic), and levels of saturated fatty acids, monounsaturated fatty acids, unsaturated fatty acids, and boron varied by variety, rootstock, and season. However, the effects of growing seasons and varieties on the seeds were not limited to these findings; effects were also seen for seed vitality, protein content, and N, K, Ca, and Fe levels of the seeds, among others. CONCLUSIONS: Genotype was found to be the main factor causing changes in the fatty acid compositions and mineral contents of grape seeds. When the factors that we investigated were ordered based on the changes they caused for seeds in general, the sequence that appeared was genotype > growing season > grape rootstock.
期刊介绍:
The main objective of the Journal of Berry Research is to improve the knowledge about quality and production of berries to benefit health of the consumers and maintain profitable production using sustainable systems. The objective will be achieved by focusing on four main areas of research and development:
From genetics to variety evaluation
Nursery production systems and plant quality control
Plant physiology, biochemistry and molecular biology, as well as cultural management
Health for the consumer: components and factors affecting berries'' nutritional value
Specifically, the journal will cover berries (strawberry, raspberry, blackberry, blueberry, cranberry currants, etc.), as well as grapes and small soft fruit in general (e.g., kiwi fruit). It will publish research results covering all areas of plant breeding, including plant genetics, genomics, functional genomics, proteomics and metabolomics, plant physiology, plant pathology and plant development, as well as results dealing with the chemistry and biochemistry of bioactive compounds contained in such fruits and their possible role in human health. Contributions detailing possible pharmacological, medical or therapeutic use or dietary significance will be welcomed in addition to studies regarding biosafety issues of genetically modified plants.