首页> 外文期刊>PLoS One >Identification of QTL for perenniality and floral scent in cowpea ( Vigna unguiculata ?[L.] Walp.)
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Identification of QTL for perenniality and floral scent in cowpea ( Vigna unguiculata ?[L.] Walp.)

机译:鉴定豇豆常年性和花香气味的QTL(Vigna Unguiculata?[L.]沃尔普。)

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Perennial habit and floral scent are major traits that distinguish domesticated cowpeas from their wild relatives. However, the genetic basis of these two important traits remains largely unknown in cowpea. Plant longevity, a perenniality-related trait, and floral scent, an outcrossing trait, were investigated using a RIL population derived from a cross between a domesticated and a wild cowpea. QTL analysis revealed three significant loci, one on chromosome 8 associated with plant longevity and two, on chromosomes 1 and 11, for floral scent. Genes within the QTL regions were identified. Genes encoding an F-box protein ( Vigun08g215300 ) and two kinases ( Vigun08g217000 , Vigun08g217800 ), and involved in physiological processes including regulation of flowering time and plant longevity, were identified within the perenniality QTL region. A cluster of O-methyltransferase genes ( Vigun11g096800 , Vigun11g096900 , Vigun11g097000 , Vigun11g097600 , and Vigun11g097800 ) was identified within the floral scent QTL region. These O-methyltransferase cowpea genes are orthologs of the Arabidopsis N - acetylserotonin O - methyltransferase ( ASMT ) gene, which is involved in the biosynthesis of melatonin. Melatonin is an indole derivative, which is an essential molecule for plant interactions with pollinators. These findings lay the foundation for further exploration of the genetic mechanisms of perenniality and floral scent in cowpea. Knowledge from this study can help in the development of new extended-growth cycle lines with increased yield or lines with increased outcrossing for population breeding.
机译:常年习惯和花香是主要的特质,将驯养的豇豆与野生亲戚区分开来。然而,这两个重要特征的遗传基础在豇豆中仍然很大程度上是未知的。使用来自驯化和野生豇豆之间的交叉的群体来研究植物寿命,常年性相关的性状和花香,是一种带来的特质。 QTL分析揭示了三个重要的基因座,一个关于染色体8,与植物寿命和两种,染色体1和11相关,用于花香。确定了QTL区域内的基因。在Perenniality QTL区域内鉴定了编码F型盒蛋白(VigUN08G215300)和两个激酶(Vigum08G217000,Vigum08G217800)和包括调节开花时间和植物寿命的生理过程中的基因。在花卉气味QTL地区内确定了一组O-甲基转移酶基因(VigUN11G096800,VigUN11G096900,ViguN11G097000,Vigun11G097600和Vigun11G097800)。这些O-甲基转移酶豇豆基因是拟南芥N - 乙酰胞核O-甲基转移酶(ASMT)基因的直脑,其参与褪黑素的生物合成。褪黑激素是一种吲哚衍生物,是植物与粉虫植物相互作用的必要分子。这些发现为进一步探索豇豆常年性和花香气味的进一步探索的基础。本研究中的知识可以帮助开发新的延长生长周期,增加产量或线条,随着人口育种的增加。

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