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首页> 外文期刊>Plant molecular biology reporter >Genome-Wide Analysis in Wild and Cultivated Emphasis Type='Italic'>Oryza/Emphasis> Species Reveals Abundance of NBS Genes in Progenitors of Cultivated Rice
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Genome-Wide Analysis in Wild and Cultivated Emphasis Type='Italic'>Oryza/Emphasis> Species Reveals Abundance of NBS Genes in Progenitors of Cultivated Rice

机译:野生和栽培的基因组分析&重点型=“斜体”> oryza& /重点>物种揭示了培养稻祖的祖先的NBS基因

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NBS-encoding genes play a critical role in the plant defense system. Wild relatives of crop plants are rich reservoirs of plant defense genes. Here, we performed a stringent genome-wide identification of NBS-encoding genes in three cultivated and eight wild Oryza species, representing three different genomes (AA, BB, and FF) from four continents. A total of 2688 NBS-encoding genes were identified from 11 Oryza genomes. All the three progenitor species of cultivated rice, namely O. barthii , O. rufipogon , and O. nivara , were the richest reservoir of NBS-encoding genes (214, 313, and 307 respectively). Interestingly, the two Asian cultivated species showed a contrasting pattern in the number of NBS-encoding genes. While indica subspecies maintained nearly equal number of NBS genes as its progenitor (309 and 313), the japonica subspecies had retained only two third in the course of evolution (213 and 307). Other major sources for NBS-encoding genes could be (i) O. longistaminata since it had the highest proportion of NBS-encoding genes and (ii) O. glumaepatula as it clustered distinctly away from the rest of the AA genome species. The present study thus revealed that NBS-encoding genes can be exploited from the primary gene pool for disease resistance breeding in rice.
机译:NBS编码基因在植物防御系统中发挥着关键作用。作物植物的野生亲属是植物防御基因的丰富水库。在这里,我们在三种栽培和八个野生橘子种类中进行了严格的基因组鉴定NBS编码基因,从四大洲代表三种不同的基因组(AA,BB和FF)。从11种oryza基因组中鉴定了总共2688个NBS编码基因。培养稻的所有三种祖细胞,即O. Barthii,O.Rufipogon和O. Nivara,是NBS编码基因的最富有的储层(分别为214,313和307)。有趣的是,两种亚洲栽培物种在编码NBS编码基因的数量中显示出对比模式。虽然籼稻亚种维持几乎相同的NBS基因作为其祖先(309和313),但粳稻亚种在进化过程中只保留了三​​分之一(213和307)。 NBS编码基因的其他主要来源可以是(i)O. longIstaminata,因为它具有最高的NBS编码基因和(ii)o. glumaepatula,因为它明显远离AA基因组种类的其余部分。因此,本研究表明,可以从稻米中的致病育种育种中利用NBS编码基因。

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