生物
索引
遗传学
基因组
分子育种
选择(遗传算法)
遗传多样性
遗传变异
世系认同
参考基因组
单核苷酸多态性
生物技术
等位基因
基因
单倍型
基因型
人口
人工智能
人口学
社会学
计算机科学
作者
Yinping Jiao,Hainan Zhao,Longhui Ren,Weibin Song,Biao Zeng,Jinjie Guo,Baobao Wang,Zhipeng Liu,Jing Chen,Wei Li,Mei Zhang,Shaojun Xie,Jinsheng Lai
出处
期刊:Nature Genetics
[Nature Portfolio]
日期:2012-06-03
卷期号:44 (7): 812-815
被引量:332
摘要
The success of modern maize breeding has been demonstrated by remarkable increases in productivity over the last four decades. However, the underlying genetic changes correlated with these gains remain largely unknown. We report here the sequencing of 278 temperate maize inbred lines from different stages of breeding history, including deep resequencing of 4 lines with known pedigree information. The results show that modern breeding has introduced highly dynamic genetic changes into the maize genome. Artificial selection has affected thousands of targets, including genes and non-genic regions, leading to a reduction in nucleotide diversity and an increase in the proportion of rare alleles. Genetic changes during breeding happen rapidly, with extensive variation (SNPs, indels and copy-number variants (CNVs)) occurring, even within identity-by-descent regions. Our genome-wide assessment of genetic changes during modern maize breeding provides new strategies as well as practical targets for future crop breeding and biotechnology.
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