Gene distribution and isochore organization in the nuclear genome of plants

The genomic distribution of 23 nuclear genes from three dicotyledons (pea, sunflower, tobacco) and five monocotyledons of the Gramineae family (barley, maize, rice, oat, wheat) was studied by localizing these genes in DNA fractions obtained by preparative centrifugation in Cs2SO4/BAMD density gradients. Each one of these genes (and of many other related genes and pseudogenes) was found to be located in DNA fragments (50-100 Kb in size) that were less than 1-2% GC apart from each other. This definitively demonstrates the existence of isochores in plant genomes, namely of compositionally homogeneous DNA regions at least 100-200 Kb in size. Moreover, the GC levels of the 23 coding sequences studied, of their first, second and third codon positions, and of the corresponding introns were found to be linearly correlated with the GC levels of the isochores harboring those genes. Compositional correlations displayed increasing slopes when going from second to first to third codon position with obvious effects on codon usage. Coding sequences for seed storage proteins and phytochrome of Gramineae deviate from the compositional correlations just described. Finally, CpG doublets of coding sequences were characterized by a shortage that decreased and vanished with increasing GC levels of the sequences. A number of these findings bear a striking similarity with results previously obtained for vertebrate genes (1, 2). © 1990 Oxford University Press.

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Main Authors: Montero, L. M., Salinas, J., Matassi, G., Bernardi, G.
Format: journal article biblioteca
Language:English
Published: Oxford University Press 1990
Online Access:http://hdl.handle.net/20.500.12792/2944
http://hdl.handle.net/10261/294200
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spelling dig-inia-es-10261-2942002023-02-20T10:36:21Z Gene distribution and isochore organization in the nuclear genome of plants Montero, L. M. Salinas, J. Matassi, G. Bernardi, G. The genomic distribution of 23 nuclear genes from three dicotyledons (pea, sunflower, tobacco) and five monocotyledons of the Gramineae family (barley, maize, rice, oat, wheat) was studied by localizing these genes in DNA fractions obtained by preparative centrifugation in Cs2SO4/BAMD density gradients. Each one of these genes (and of many other related genes and pseudogenes) was found to be located in DNA fragments (50-100 Kb in size) that were less than 1-2% GC apart from each other. This definitively demonstrates the existence of isochores in plant genomes, namely of compositionally homogeneous DNA regions at least 100-200 Kb in size. Moreover, the GC levels of the 23 coding sequences studied, of their first, second and third codon positions, and of the corresponding introns were found to be linearly correlated with the GC levels of the isochores harboring those genes. Compositional correlations displayed increasing slopes when going from second to first to third codon position with obvious effects on codon usage. Coding sequences for seed storage proteins and phytochrome of Gramineae deviate from the compositional correlations just described. Finally, CpG doublets of coding sequences were characterized by a shortage that decreased and vanished with increasing GC levels of the sequences. A number of these findings bear a striking similarity with results previously obtained for vertebrate genes (1, 2). © 1990 Oxford University Press. 2023-02-20T10:36:21Z 2023-02-20T10:36:21Z 1990 journal article Nucleic Acids Research 18(7): 1859-1867 (1990) 0305-1048 http://hdl.handle.net/20.500.12792/2944 http://hdl.handle.net/10261/294200 10.1093/nar/18.7.1859 1362-4962 en none Oxford University Press
institution INIA ES
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country España
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component Bibliográfico
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databasecode dig-inia-es
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libraryname Biblioteca del INIA España
language English
description The genomic distribution of 23 nuclear genes from three dicotyledons (pea, sunflower, tobacco) and five monocotyledons of the Gramineae family (barley, maize, rice, oat, wheat) was studied by localizing these genes in DNA fractions obtained by preparative centrifugation in Cs2SO4/BAMD density gradients. Each one of these genes (and of many other related genes and pseudogenes) was found to be located in DNA fragments (50-100 Kb in size) that were less than 1-2% GC apart from each other. This definitively demonstrates the existence of isochores in plant genomes, namely of compositionally homogeneous DNA regions at least 100-200 Kb in size. Moreover, the GC levels of the 23 coding sequences studied, of their first, second and third codon positions, and of the corresponding introns were found to be linearly correlated with the GC levels of the isochores harboring those genes. Compositional correlations displayed increasing slopes when going from second to first to third codon position with obvious effects on codon usage. Coding sequences for seed storage proteins and phytochrome of Gramineae deviate from the compositional correlations just described. Finally, CpG doublets of coding sequences were characterized by a shortage that decreased and vanished with increasing GC levels of the sequences. A number of these findings bear a striking similarity with results previously obtained for vertebrate genes (1, 2). © 1990 Oxford University Press.
format journal article
author Montero, L. M.
Salinas, J.
Matassi, G.
Bernardi, G.
spellingShingle Montero, L. M.
Salinas, J.
Matassi, G.
Bernardi, G.
Gene distribution and isochore organization in the nuclear genome of plants
author_facet Montero, L. M.
Salinas, J.
Matassi, G.
Bernardi, G.
author_sort Montero, L. M.
title Gene distribution and isochore organization in the nuclear genome of plants
title_short Gene distribution and isochore organization in the nuclear genome of plants
title_full Gene distribution and isochore organization in the nuclear genome of plants
title_fullStr Gene distribution and isochore organization in the nuclear genome of plants
title_full_unstemmed Gene distribution and isochore organization in the nuclear genome of plants
title_sort gene distribution and isochore organization in the nuclear genome of plants
publisher Oxford University Press
publishDate 1990
url http://hdl.handle.net/20.500.12792/2944
http://hdl.handle.net/10261/294200
work_keys_str_mv AT monterolm genedistributionandisochoreorganizationinthenucleargenomeofplants
AT salinasj genedistributionandisochoreorganizationinthenucleargenomeofplants
AT matassig genedistributionandisochoreorganizationinthenucleargenomeofplants
AT bernardig genedistributionandisochoreorganizationinthenucleargenomeofplants
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