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Genomic Analyses Yield Markers for Identifying Agronomically Important Genes in Potato 被引量:10
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作者 Yangping Li Christophe Colleoni +16 位作者 Junjie Zhang Qiqi Liang Yufeng Hu Holly Ruess Reinhard Simon Yinghong Liu Hanmei Liu Guowu Yu Eric Schmitt Ghloe Ponitzki Guangjian Liu Huanhuan Huang Feilong Zhan Lin Chen Yubi Huang David Spooner Binquan Huang 《Molecular Plant》 SCIE CAS CSCD 2018年第3期473-484,共12页
Wild potato species have substantial phenotypic and physiological diversity. Here, we report a comprehen- sive assessment of wild and cultivated potato species based on genomic analyses of 201 accessions of Solanum se... Wild potato species have substantial phenotypic and physiological diversity. Here, we report a comprehen- sive assessment of wild and cultivated potato species based on genomic analyses of 201 accessions of Solanum section Petota. We sequenced the genomes of these 201 accessions and identified 6 487 006 high-quality single nucleotide polymorphisms (SNPs) from 167 accessions in clade 4 of Solanum section Petota, including 146 wild and 21 cultivated diploid potato accessions with a broad geographic distribution. Genome-wide genetic variation analysis showed that the diversity of wild potatoes is higher than that of cultivated potatoes, and much higher genetic diversity in the agronomically important disease resistance genes was observed in wild potatoes. Furthermore, by exploiting information about known quantitative trait loci (QTL), we identified 609 genes under selection, including those correlated with the loss of bitterness in tubers and those involved in tuberization, two major domesticated traits of potato. Phylogenetic analyses revealed a north-south division of all species in clade 4, not just those in the S. brevicaule complex, and further supported So candolleanum as the progenitor of cultivated potato and the monophyletic origin of cultivated potato in southern Peru. In addition, we analyzed the genome of S. candolleanum and identified 529 genes lost in cultivated potato. Collectively, the molecular markers generated in this study provide a valuable resource for the identification of agronomicaUy important genes useful for potato breeding. 展开更多
关键词 POTATO Solanum section petota genetic diversity molecular marker DOMESTICATION PHYLOGENY
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马铃薯及其野生种的分类 被引量:1
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作者 吕文河 王晓雪 +2 位作者 白雅梅 李文霞 陈伊里 《东北农业大学学报》 CAS CSCD 北大核心 2010年第7期143-149,共7页
马铃薯有着丰富的二级基因库(Secondary gene pool),如何客观地定义马铃薯种,划分它们在分类学上的地位,明确各个种之间的相互关系,对马铃薯种质资源改良和育种工作非常重要。1990年Hawkes把Petota组分成21个系,其中有227个结块茎的种(... 马铃薯有着丰富的二级基因库(Secondary gene pool),如何客观地定义马铃薯种,划分它们在分类学上的地位,明确各个种之间的相互关系,对马铃薯种质资源改良和育种工作非常重要。1990年Hawkes把Petota组分成21个系,其中有227个结块茎的种(包括7个栽培种)和9个不结块茎的种。分子数据表明,Hawkes的分类系统过细。2009年Spooner等认为Petota组应重新划分为3个进化枝,其中含有110个结块茎的种,至于栽培种,2007年Spooner等认为可以重新划分成4个种:S.tuberosum(其中含有2个品种类群,Andigenum和Chilotanum),S.ajanhuiri(二倍体),S.juzepczukii(三倍体),S.curtilobum(五倍体)。 展开更多
关键词 马铃薯组 马铃薯普通栽培种 遗传资源 分类
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