Construction, characteristics and high throughput molecular screening methodologies in some special breeding populations: a horticultural perspective

Advanced marker technologies are widely used for evaluation of genetic diversity in cultivated crops, wild ancestors, landraces or any special plant genotypes. Developing agricultural cultivars requires the following steps: (i) determining desired characteristics to be improved, (ii) screening genetic resources to help find a superior cultivar, (iii) intercrossing selected individuals, (iv) generating genetically hybrid populations and screening them for agro-morphological or molecular traits, (v) evaluating the superior cultivar candidates, (vi) testing field performance at different locations, and (vii) certifying. In the cultivar development process valuable genes can be identified by creating special biparental or multiparental populations and analysing their association using suitable markers in given populations. These special populations and advanced marker technologies give us a deeper knowledge about the inherited agronomic characteristics. Unaffected by the changing environmental conditions, these provide a higher understanding of genome dynamics in plants. The last decade witnessed new applications for advanced molecular techniques in the area of breeding, with low costs per sample. These, especially, include next-generation sequencing technologies like reduced representation genome sequencing (genotyping by sequencing, restriction site-associated DNA). These enabled researchers to develop new markers, such as simple sequence repeat and single- nucleotide polymorphism, for expanding the qualitative and quantitative information on population dynamics. Thus, the knowledge acquired from novel technologies is a valuable asset for the breeding process and to better understand the population dynamics, their properties, and analysis methods.

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Название публикации
(dc.title)
Construction, characteristics and high throughput molecular screening methodologies in some special breeding populations: a horticultural perspective
Автор/ы
(dc.contributor.yazarlar)
Hasan Can, Unal Kal, Ibrahim Ilker Ozyigit, Mustafa Paksoy, Onder Turkmen
Вид публикации
(dc.type)
Makale
Язык
(dc.language)
İngilizce
Год публикации
(dc.date.issued)
2019
Национальный/Международный
(dc.identifier.ulusaluluslararasi)
Uluslararası
Источник
(dc.relation.journal)
Journal of Genetics
Номер
(dc.identifier.issue)
3
Том/№
(dc.identifier.volume)
98
Страница
(dc.identifier.startpage)
Article Number: 86
ISSN/ISBN
(dc.identifier.issn)
ISSN: 0022-1333; Online ISSN: 0973-7731
Издатель
(dc.publisher)
Indian Academy of Sciences. Springer
Базы данных
(dc.contributor.veritaban)
Springer
Базы данных
(dc.contributor.veritaban)
Scopus
Вид индекса
(dc.identifier.index)
Scopus
Резюме
(dc.description.abstract)
Advanced marker technologies are widely used for evaluation of genetic diversity in cultivated crops, wild ancestors, landraces or any special plant genotypes. Developing agricultural cultivars requires the following steps: (i) determining desired characteristics to be improved, (ii) screening genetic resources to help find a superior cultivar, (iii) intercrossing selected individuals, (iv) generating genetically hybrid populations and screening them for agro-morphological or molecular traits, (v) evaluating the superior cultivar candidates, (vi) testing field performance at different locations, and (vii) certifying. In the cultivar development process valuable genes can be identified by creating special biparental or multiparental populations and analysing their association using suitable markers in given populations. These special populations and advanced marker technologies give us a deeper knowledge about the inherited agronomic characteristics. Unaffected by the changing environmental conditions, these provide a higher understanding of genome dynamics in plants. The last decade witnessed new applications for advanced molecular techniques in the area of breeding, with low costs per sample. These, especially, include next-generation sequencing technologies like reduced representation genome sequencing (genotyping by sequencing, restriction site-associated DNA). These enabled researchers to develop new markers, such as simple sequence repeat and single- nucleotide polymorphism, for expanding the qualitative and quantitative information on population dynamics. Thus, the knowledge acquired from novel technologies is a valuable asset for the breeding process and to better understand the population dynamics, their properties, and analysis methods.
URL
(dc.rights)
https://link.springer.com/article/10.10072Fs12041-019-1129-7
DOI
(dc.identifier.doi)
10.1007/s12041-019-1129-7
Факультет / Институт
(dc.identifier.fakulte)
Ziraat Fakültesi
Кафедра
(dc.identifier.bolum)
Bahçe ve Tarla Bitkileri Bölümü
Автор(ы) в учреждении
(dc.contributor.author)
Hasan CAN
Автор(ы) в учреждении
(dc.contributor.author)
İbrahim İlker ÖZYİĞİT
Автор(ы) в учреждении
(dc.contributor.author)
Mustafa PAKSOY
№ регистрации
(dc.identifier.kayitno)
BL403230AC
Дата регистрации
(dc.date.available)
2023-03-09
Заметка (Год публикации)
(dc.identifier.notyayinyili)
July 2019
Тематический рубрикатор
(dc.subject)
population
Тематический рубрикатор
(dc.subject)
backcross
Тематический рубрикатор
(dc.subject)
double haploid
Тематический рубрикатор
(dc.subject)
recombinant inbred line
Тематический рубрикатор
(dc.subject)
near-isogenic line
Тематический рубрикатор
(dc.subject)
nested association mapping
Тематический рубрикатор
(dc.subject)
multiparent advanced generation intercross
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