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首页> 外文期刊>PLoS One >Exploring the basis of 2-propenyl and 3-butenyl glucosinolate synthesis by QTL mapping and RNA-sequencing in Brassica juncea
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Exploring the basis of 2-propenyl and 3-butenyl glucosinolate synthesis by QTL mapping and RNA-sequencing in Brassica juncea

机译:QTL测绘和芸苔属juncea的RNA测定探索2丙烯基和3-丁烯甘油酯合成的基础

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Brassica juncea is used as a condiment, as vegetables and as an oilseed crop, especially in semiarid areas. In the present study, we constructed a genetic map using one recombinant inbred line (RIL) of B . juncea . A total of 304 ILP (intron length polymorphism) markers were mapped to 18 linkage groups designated LG01-LG18 in B . juncea . The constructed map covered a total genetic length of 1671.13 cM with an average marker interval of 5.50 cM. The QTLs for 2-propenyl glucosinolates (GSLs) colocalized with the QTLs for 3-butenyl GSLs between At1g26180 and BnapPIP1580 on LG08 in the field experiments of 2016 and 2017. These QTLs accounted for an average of 42.3% and 42.6% phenotypic variation for 2-propenyl and 3-butenyl GSLs, respectively. Furthermore, the Illumina RNA-sequencing technique was used to excavate the genes responsible for the synthesis of GSLs in the siliques of the parental lines of the RIL mapping population, because the bulk of the seed GSLs might originate from the siliques. Comparative analysis and annotation by gene ontology (GO) and kyoto encyclopedia of genes and genomes (KEGG) revealed that 324 genes were involved in GSL metabolism, among which only 24 transcripts were differentially expressed genes (DEGs). Among those DEGs, 15 genes were involved in the biosynthesis and transport of aliphatic GSLs, and their expression patterns were further validated by qRT-PCR analysis. Joint QTL mapping and RNA-sequencing analyses reveal one candidate gene of IIL1 (LOC106416451) for GSL metabolism in B . juncea . These results will be helpful for further fine mapping, gene cloning and genetic mechanisms of 2-propenyl and 3-butenyl GSLs in B . juncea .
机译:Brassica Juncea用作调味品,作为蔬菜和油籽作物,特别是在半干旱地区。在本研究中,我们使用B的重组近交系(RIL)构建了遗传图。 juncea。将304 ILP(内含子长度多态性)标记物映射到18个连杆基团,其在B中指定的LG01-LG18。 juncea。构造的地图覆盖了1671.13cm的总遗传长度,平均标记间隔为5.50厘米。用于2-丙烯酰硫代葡萄糖酸盐(GSL)的QTL,其在2016年和2017年的现场实验中的AT1G26180和BNAPPIP1580之间的3-丁烯基GSL中的3-丁烯基GSL。这些QTL的平均占24.3%和42.6%的表型变异。2 - 共烯基和3-丁烯基GSL。此外,使用Illumina RNA测序技术挖掘负责在RIL映射群体的亲本系的单位中的SIRSLS中的GSL负责的基因,因为种子GSL的大部分可能来自单机。基因本体学(GO)和基因和基因组(KEGG)的比较分析和注释显示,参与GSL代谢的324个基因,其中仅24个转录物是差异表达基因(DEGS)。在那些DEG中,参与生物合成和脂族GSL的生物合成和运输15个基因,并通过QRT-PCR分析进一步验证它们的表达模式。联合QTL映射和RNA测序分析显示了B. juncea。这些结果将有助于进一步的2-丙烯基和3-丁烯基GSL的细微映射,基因克隆和遗传机制。 juncea。

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