Tetraploidization in citrus rootstocks: effect of genetic constitution and environment in chromosome duplication
The objective of this study was to identify polyploid plants from citrus rootstocks and to evaluate the influence of the genetic constitution and of the environment on the frequency of chromosome duplication. Populations obtained from rootstock seeds of Trifoliata [Poncirus trifoliate (L.) Raf], ci...
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Brazilian Society of Plant Breeding
2016-03-01
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doaj-f5d2cf78d6c14458a2627d55e48ac7642020-11-24T21:25:07ZengBrazilian Society of Plant BreedingCrop Breeding and Applied Biotechnology1518-78531984-70332016-03-011613541http://dx.doi.org/10.1590/1984-70332016v16n1a6Tetraploidization in citrus rootstocks: effect of genetic constitution and environment in chromosome duplicationDivanilde GuerraMaria Teresa Schifino-WittmannSérgio Francisco SchwarzRoberto Luis WeilerNair DahmerPaulo Vitor Dutra de SouzaThe objective of this study was to identify polyploid plants from citrus rootstocks and to evaluate the influence of the genetic constitution and of the environment on the frequency of chromosome duplication. Populations obtained from rootstock seeds of Trifoliata [Poncirus trifoliate (L.) Raf], citrumelo ‘Swingle’ [C. paradise Macf. × P. trifoliate], citrange ‘Troyer’ [C. sinensis (L.) Osb. x P. trifoliate] and citranges Fepagro ‘C13’, ‘C37’ and ‘C41’ [C. sinensis (L.) Osb. cv. Pêra x P. trifoliata] were evaluated under field and greenhouse conditions. Flow cytometry analysis of 415 field plants and 435 greenhouse plants identified seven (1.69%) and 29 (6.67%) tetraploids, respectively. Differences in the number of tetraploid plants among genotypes and locations were observed in field progenies of ‘C 37’ (2.12%) and ‘C 13’ (2.04%) and in greenhouse progenies of ‘C 13’ (15.52%) and ‘C 37’ (6%). The frequency of autotetraploidization events in citrus rootstocks is common and appears to be associated to genetic constitution and environmental conditions.http://www.sbmp.org.br/cbab/siscbab/uploads/baf43924-d83c-7ab7.pdfCitruspolyploidsthermal amplitudeprotected environment |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Divanilde Guerra Maria Teresa Schifino-Wittmann Sérgio Francisco Schwarz Roberto Luis Weiler Nair Dahmer Paulo Vitor Dutra de Souza |
spellingShingle |
Divanilde Guerra Maria Teresa Schifino-Wittmann Sérgio Francisco Schwarz Roberto Luis Weiler Nair Dahmer Paulo Vitor Dutra de Souza Tetraploidization in citrus rootstocks: effect of genetic constitution and environment in chromosome duplication Crop Breeding and Applied Biotechnology Citrus polyploids thermal amplitude protected environment |
author_facet |
Divanilde Guerra Maria Teresa Schifino-Wittmann Sérgio Francisco Schwarz Roberto Luis Weiler Nair Dahmer Paulo Vitor Dutra de Souza |
author_sort |
Divanilde Guerra |
title |
Tetraploidization in citrus rootstocks: effect of genetic constitution and environment in chromosome duplication |
title_short |
Tetraploidization in citrus rootstocks: effect of genetic constitution and environment in chromosome duplication |
title_full |
Tetraploidization in citrus rootstocks: effect of genetic constitution and environment in chromosome duplication |
title_fullStr |
Tetraploidization in citrus rootstocks: effect of genetic constitution and environment in chromosome duplication |
title_full_unstemmed |
Tetraploidization in citrus rootstocks: effect of genetic constitution and environment in chromosome duplication |
title_sort |
tetraploidization in citrus rootstocks: effect of genetic constitution and environment in chromosome duplication |
publisher |
Brazilian Society of Plant Breeding |
series |
Crop Breeding and Applied Biotechnology |
issn |
1518-7853 1984-7033 |
publishDate |
2016-03-01 |
description |
The objective of this study was to identify polyploid plants from citrus rootstocks and to evaluate the influence of the
genetic constitution and of the environment on the frequency of chromosome duplication. Populations obtained from rootstock seeds of Trifoliata [Poncirus trifoliate (L.) Raf], citrumelo ‘Swingle’ [C. paradise Macf. × P. trifoliate], citrange ‘Troyer’ [C. sinensis (L.) Osb. x P. trifoliate] and citranges Fepagro ‘C13’, ‘C37’ and ‘C41’ [C. sinensis (L.) Osb. cv. Pêra x P. trifoliata] were evaluated under field and greenhouse conditions. Flow cytometry analysis of 415 field plants and 435 greenhouse plants identified seven (1.69%) and 29 (6.67%) tetraploids, respectively. Differences in the number of tetraploid plants among genotypes and locations were observed in field progenies of ‘C 37’ (2.12%) and ‘C 13’ (2.04%) and in greenhouse progenies of ‘C 13’ (15.52%) and ‘C 37’ (6%). The frequency of autotetraploidization events in citrus rootstocks is common and appears to be associated to genetic constitution and environmental conditions. |
topic |
Citrus polyploids thermal amplitude protected environment |
url |
http://www.sbmp.org.br/cbab/siscbab/uploads/baf43924-d83c-7ab7.pdf |
work_keys_str_mv |
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