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首页> 外文期刊>Breeding science >The species of the genus Oryza and transfer of useful genes from wild species into cultivated rice, O. sativa.
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The species of the genus Oryza and transfer of useful genes from wild species into cultivated rice, O. sativa.

机译:Oryza 的物种,并将有用的基因从野生物种转移到栽培稻 O中。苜蓿

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The genus Oryza has 24 species out of which two are cultivated (O. sativa and O. glaberrima) and 22 are wild species. Of the 22 wild species, six are in the primary gene pool of O. sativa complex and these wild species are easily crossable with the major cultivated species. These have the same AA genome as O. sativa. However, there are 10 wild species under O. officinalis complex having BB, CC, BBCC, CCDD, EE and FF genomes. The wild species of this complex are in the secondary gene pool and are cross incompatible with O. sativa. There are six most distantly related wild species with either diploids or tetraploids of GG, HHJJ and HHKK genomes and are highly cross incompatible with O. sativa. All the 22 wild species of Oryza are a vast reservoir of genes for biotic and abiotic stresses resistance. Some of the yield enhancing traits/genes from AA genome wild species have been identified and mapped with molecular markers for their integration into O. sativa genome. A broad-spectrum resistance gene for bacterial blight resistance (Xa21) has been identified in O. longistaminata and introduced into many rice cultivars. Advances in biotechnology have facilitated the development of interspecific hybrids between O. sativa and wild species of secondary and tertiary gene pools. Some important genes Pi40 and Bph18 for resistance to blast and brown planthopper, respectively, have been successfully transferred into elite cultivars from O. australiensis and the function of one blast resistance gene (Pi9) derived from O. minuta is elucidated. Many important genes from the most distantly related wild species such as O. alta, O. granulata, O. longiglumis and O. coarctata are expected to be transferred into cultivated rice in the future using the latest tools of molecular genetics and biotechnology.Digital Object Identifier http://dx.doi.org/10.1270/jsbbs.60.518
机译:稻草属有24种,其中有2种是栽培的(O. sativa 和 O。glaberrima ),有22种是野生种。在22种野生物种中,有6种在O的主要基因库中。苜蓿复合体,这些野生物种很容易与主要栽培物种杂交。这些具有与相同的AA基因组。苜蓿。但是,在O之下有10种野生物种。具有BB,CC,BBCC,CCDD,EE和FF基因组的药用复合物。该复合物的野生物种在二级基因库中,与O互不相容。苜蓿。与GG,HHJJ和HHKK基因组的二倍体或四倍体有六种最密切相关的野生物种,它们与O高度不相容。苜蓿。 Oryza 的所有22种野生物种都是生物和非生物逆境抗性基因的庞大库。已经鉴定了来自AA基因组野生物种的一些提高产量的性状/基因,并用分子标记作图以将其整合到O中。苜蓿基因组。在 O中鉴定出了一种广谱抗细菌白叶枯病抗性基因( Xa21 )。 longistaminata 并引入许多水稻品种。生物技术的进步促进了O之间种间杂种的发展。苜蓿和野生物种的二级和三级基因库。分别对稻瘟病和褐飞虱具有抗性的一些重要基因 Pi40 和 Bph18 已成功地从 O转移到了优良品种中。 aitraliensis 和一个来自 O的抗稻瘟病基因( Pi9 )的功能。 minuta 已阐明。来自最遥远相关的野生物种的许多重要基因,例如 O。 alta , O颗粒, O。 longiglumis 和 O。预计未来将使用最新的分子遗传学和生物技术工具将小ar转移到栽培稻中。数字对象标识符http://dx.doi.org/10.1270/jsbbs.60.518

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