首页> 美国卫生研究院文献>Frontiers in Plant Science >Loss of function of 1-FEH IIb has more impact on post-harvest inulin degradation in Cichorium intybus than copy number variation of its close paralog 1-FEH IIa
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Loss of function of 1-FEH IIb has more impact on post-harvest inulin degradation in Cichorium intybus than copy number variation of its close paralog 1-FEH IIa

机译:1-FEH IIb的功能丧失对菊苣(Cichorium intybus)收获后菊粉降解的影响大于其紧密旁系同源物1-FEH IIa的拷贝数变异

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摘要

>Key Message: The loss of mini-exon 2 in the 1-FEH IIb glycosyl-hydrolase results in a putative non-functional allele. This loss of function has a strong impact on the susceptibility to post-harvest inulin depolymerization. Significant variation of copy number was identified in its close paralog 1-FEH IIa, but no quantitative effect of copy number on carbohydrates-related phenotypes was detected.Inulin polyfructan is the second most abundant storage carbohydrate in flowering plants. After harvest, it is depolymerized by fructan exohydrolases (FEHs) as an adaptive response to end-season cold temperatures. In chicory, the intensity of this depolymerization differs between cultivars but also between individuals within a cultivar. Regarding this phenotypic variability, we recently identified statistically significant associations between inulin degradation and genetic polymorphisms located in three FEHs. We present here new results of a systematic analysis of copy number variation (CNV) in five key members of the chicory (Cichorium intybus) GH32 multigenic family, including three FEH genes and the two inulin biosynthesis genes: 1-SST and 1-FFT. qPCR analysis identified a significant variability of relative copy number only in the 1-FEH IIa gene. However, this CNV had no quantitative effect. Instead, cloning of the full length gDNA of a close paralogous sequence (1-FEH IIb) identified a 1028 bp deletion in lines less susceptible to post-harvest inulin depolymerization. This region comprises a 9 bp mini-exon containing one of the three conserved residues of the active site. This results in a putative non-functional 1-FEH IIb allele and an observed lower inulin depolymerization. Extensive genotyping confirmed that the loss of mini-exon 2 in 1-FEH IIb and the previously identified 47 bp duplication located in the 3′UTR of 1-FEH IIa belong to a single haplotype, both being statistically associated with reduced susceptibility to post-harvest inulin depolymerization. Emergence of these haplotypes is discussed.
机译:>关键信息: 1-FEH IIb糖基水解酶中第2外显子的丢失导致推定的非功能性等位基因。这种功能丧失对收获后菊粉解聚的敏感性具有强烈影响。在其紧密的类似物1-FEH IIa中发现了拷贝数的显着变化,但是未检测到拷贝数对与碳水化合物相关的表型的定量影响。菊粉聚果聚糖是开花植物中第二高的储藏碳水化合物。收获后,果聚糖外水解酶(FEH)将其解聚,以适应季末低温。在菊苣中,这种解聚的强度在不同品种之间不同,在不同品种之间也不同。关于这种表型变异性,我们最近确定了菊粉降解与位于三个FEHs中的遗传多态性之间的统计学显着关联。我们在这里介绍了菊苣(Cichorium intybus)GH32多基因家族的五个关键成员的拷贝数变异(CNV)的系统分析的新结果,包括三个FEH基因和两个菊粉生物合成基因:1-SST和1-FFT。 qPCR分析确定仅在1-FEH IIa基因中相对拷贝数有显着变异。但是,这种CNV没有定量作用。取而代之的是,克隆一个紧密旁系同源序列(1-FEH IIb)的全长gDNA,发现其对收获后菊粉解聚的敏感性降低了1028 bp。该区域包含一个9 bp的小外显子,其中含有活性位点的三个保守残基之一。这导致推定的非功能性1-FEH IIb等位基因,并观察到较低的菊粉解聚。广泛的基因分型证实了1-FEH IIb中小外显子2的缺失和位于1-FEH IIa 3'UTR中的先前确定的47 bp复制属于单个单倍型,两者在统计学上均与降低对后胚胎的易感性有关。收获菊粉解聚。讨论了这些单倍型的出现。

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