DNA is structured as a linear “jigsaw puzzle” in the genomes of Arabidopsis, rice, and budding yeast

Author:

Liu Yun-Hua1,Zhang Meiping12,Wu Chengcang1,Huang James J.1,Zhang Hong-Bin1

Affiliation:

1. Department of Soil and Crop Sciences, Texas A&M University, College Station, Texas 77843-2474, USA.

2. College of Life Science, Jilin Agricultural University, Changchun, Jilin 130118, China.

Abstract

Knowledge of how a genome is structured and organized from its constituent elements is crucial to understanding its biology and evolution. Here, we report the genome structuring and organization pattern as revealed by systems analysis of the sequences of three model species, Arabidopsis, rice and yeast, at the whole-genome and chromosome levels. We found that all fundamental function elements (FFE) constituting the genomes, including genes (GEN), DNA transposable elements (DTE), retrotransposable elements (RTE), simple sequence repeats (SSR), and (or) low complexity repeats (LCR), are structured in a nonrandom and correlative manner, thus leading to a hypothesis that the DNA of the species is structured as a linear “jigsaw puzzle”. Furthermore, we showed that different FFE differ in their importance in the formation and evolution of the DNA jigsaw puzzle structure between species. DTE and RTE play more important roles than GEN, LCR, and SSR in Arabidopsis, whereas GEN and RTE play more important roles than LCR, SSR, and DTE in rice. The genes having multiple recognized functions play more important roles than those having single functions. These results provide useful knowledge necessary for better understanding genome biology and evolution of the species and for effective molecular breeding of rice.

Publisher

Canadian Science Publishing

Subject

Genetics,Molecular Biology,General Medicine,Biotechnology

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