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Study of QTLs linked to awn length and their relationships with chloroplasts under control and saline environments in bread wheat

机译:面包小麦控制和盐水环境中QTL与扁卟酚的关系及其关系研究

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IntroductionSome studies in wheat showed that awns may have a useful effect on yield, especially under drought stress. Up to this time few researches has identified the awn length QTLs with different effect in salinity stress.ObjectiveThe primary objective of this study was to examine the additive (a) and the epistatic (aa) QTLs involve in wheat awns length in control and saline environments.MethodsA F7 RIL population consisting of 319 sister lines, derived from a cross between wheat cultivars Roshan and Falat (seri82), and the two parents were grown in two environments (control and Saline) based on an alpha lattice design with two replications in each environment. At flowering, awn length was measured for each line. For QTL analysis, the linkage map of the RoshanxFalat'' population was used, which included 748 markers including 719 DArT, 29 simple sequenced repeats (SSRs). Additive and pleiotropic QTLs were identified. In order to reveal the relationship between the identified QTL for awns length and the role of the gene or genes that it expresses, the awns length locus location and characteristics of its related CDS, gene, UTRs, ORF, exons and Introns were studied using ensemble plant (http://plants.ensembl.org/Triticum_aestivum). Furthermore, the promoter analysis has been done using NSITE-PL.ResultsWe identified 6 additive QTLs for awn length by QTL Cartographer program using single-environment phenotypical values. Also, we detected three additive and two epistatic QTLs for awn length by the QTLNetwork program using multi-environment phenotypical values. Our results showed that none of the additive and epistatic QTLs had interactions with environment. One of the additive QTLs located on chromosome 4A was co-located with QTLs for number of sterile spikelet per spike in both environment and number of seed per spike in control environment.CoclusionStudies of the locus linked to the awns length QTL revealed the role of awn and its chloroplasts in grain filing during abiotic stress could be enhanced by over expression of some genes like GTP-Binding proteins which are enriched in chloroplasts encoded by genes included wPt-5730 locus.
机译:小麦的介绍研究表明,AWNS可能对产率有益,特别是在干旱胁迫下。到目前为止,近来的研究已经确定了盐度胁迫下具有不同效果的AWN长度QTL。该研究的主要目的是检查添加剂(A)和外观(AA)QTL涉及对照和盐水环境中的小麦AWNS长度.Methodsa F7 Ril种群由319个姐妹线组成,来自小麦品种Roshan和Falat(Seri82)之间的交叉(Seri82),并且两位父母在两个环境(控制和盐水)基于α格子设计,每个复制有两种复制环境。在开花时,为每条线测量AWN长度。对于QTL分析,使用了Roshanxfalat''群体的联系地图,其中包括748个标记,包括719次跳动,29个简单测序重复(SSR)。鉴定添加剂和脂肪钙QTL。为了揭示所识别的QTL与其表达的基因或基因的作用之间所识别的QTL之间的关系,使用集合研究了AWNS长度轨迹位置和其相关CDS,基因,UTRS,ORF,外显子和内含子的特征植物(http://plants.ensembl.org/triticum_aestivum)。此外,使用NSITE-PL.ResultWe已经确定了使用单环环境表型值的QTL Cartographer程序识别的6个附加QTL的启动子分析。此外,我们使用多环境表型值检测了QTLNETWORK程序的三个添加剂和两个基本QTL,由QTLNETWORK程序进行了长度。我们的研究结果表明,没有任何添加剂和外观QTL与环境互动。位于染色体4a上的添加剂QTL中的一种与QTLS共同定位,QTLS在控制环境中每穗的环境和种子的种子数量。链接到AWN长度QTL的轨迹的CoclusionSudies揭示了AWN的作用在非生物胁迫期间谷物归档中的叶绿体可以通过在富含基因编码的GTP结合蛋白等一些基因中的一些基因来增强,这些基因包括WPT-5730基因座。

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