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首页> 外文期刊>American Journal of BioScience >Identification of Quantitative Trait Loci (QTLs) Conferring Dry Matter Content and Starch Content in Cassava (Manihot esculenta Crantz)
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Identification of Quantitative Trait Loci (QTLs) Conferring Dry Matter Content and Starch Content in Cassava (Manihot esculenta Crantz)

机译:鉴定核心木薯含量和淀粉含量的定量特性基因座(QTLS)(Manihot Esculenta Crantz)

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Cassava tubers are an excellent source of carbohydrate and a competitive source of starch most traded internationally. It is a highly desirable raw material for food and industrial purpose due to its high dietary carbohydrate content. The economic value of cassava products lies in the DMC (dry matter content). Cassava roots contain up to 80-90 per cent of carbohydrate by dry weight and 80 per cent of carbohydrate is starch. Increasing world population, limited land area, changing climatic condition and food scarcity demanded the need for improved cassava starch. Yield of cassava tubers is related to both tuber volume and DMC and thus DMC can be improved by cassava breeding. Thus QTL mapping of DMC is very much relevant to understand the genetic effects controlling the traits. The current study focused on QTL mapping for DMC and SC (starch content) to identify and study the favourite alleles using Windows cartographer version 2.5. Single marker analysis (SMA) identified seven marker alleles associated with DMC and eight marker alleles associated with SC. Using interval mapping, a single QTL for DMC was identified in chrom21 flanked by SSRY110~b and SSRY182~b. On the other hand, five QTLs for SC were identified by simple interval mapping (SIM) and a single QTL in chrom17 with R~2 value of 12% and at a LOD value 5 using composite interval mapping (CIM). The exact position of the QTLs and its interactions were studied using MIM and the genetic effect of QTLs controlling DMC was found to be over-dominance. But in the case of SC, the QTL interaction was identified and found to be additive additive epistatic interaction.
机译:木薯块茎是碳水化合物的优秀来源和国际上交易的竞争来源。由于其高膳食碳水化合物含量,这是一种非常理想的食品和工业用途原料。木薯产品的经济价值在于DMC(干物质含量)。木薯根含有高达80-90%的碳水化合物,干重,80%的碳水化合物是淀粉。增加世界人口,有限的土地面积,不断变化的气候条件和食物稀缺要求需要改进的木薯淀粉。木薯块茎的产率与块茎体积和DMC均有关,因此Cassava育种可以改善DMC。因此,DMC的QTL映射非常相关,以了解控制特征的遗传效果。目前的研究专注于DMC和SC(淀粉内容)的QTL映射,以识别和研究使用Windows Cartographer 2.5版的最喜欢的等位基因。单个标记分析(SMA)鉴定了与DMC相关的七个标记等位基因和与SC相关的八个标记等位基因。使用间隔映射,在SSRY110〜B和SSRY182〜B的镜像中识别DMC的单个QTL。另一方面,通过简单的间隔映射(SIM)和CHOM17中的单个QTL识别5个用于SC的QTL,其中R〜2值为12%,在LOD值5处使用复合间隔映射(CIM)。使用MIM研究了QTLS的确切位置及其相互作用,并发现QTLS控制DMC的遗传效果是过多的。但在SC的情况下,鉴定了QTL相互作用并发现是添加剂添加剂认识性相互作用。

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