首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >High-density genetic maps for loci involved in nuclear male sterility (NMS1) and sporophytic self-incompatibility (S-locus) in chicory (Cichorium intybus L., Asteraceae).
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High-density genetic maps for loci involved in nuclear male sterility (NMS1) and sporophytic self-incompatibility (S-locus) in chicory (Cichorium intybus L., Asteraceae).

机译:高密度遗传图谱涉及菊苣(菊苣(Cichorium intybus L.),菊科)中的核雄性不育(NMS1)和孢子性自交不亲和性(S-locus)。

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High-density genetic maps were constructed for loci involved in nuclear male sterility (NMS1-locus) and sporophytic self-incompatibility (S-locus) in chicory (Cichorium intybus L.). The mapping population consisted of 389 F1' individuals derived from a cross between two plants, K28 (male-sterile) and K59 (pollen-fertile), both heterozygous at the S-locus. This F1' mapping population segregated for both male sterility (MS) and strong self-incompatibility (SI) phenotypes. Phenotyping F1' individuals for MS allowed us to map the NMS1-locus to linkage group (LG) 5, while controlled diallel and factorial crosses to identify compatible/incompatible phenotypes mapped the S-locus to LG2. To increase the density of markers around these loci, bulked segregant analysis was used. Bulks and parental plants K28 and K59 were screened using amplified fragment length polymorphism (AFLP) analysis, with a complete set of 256 primer combinations of EcoRI-ANN and MseI-CNN. A total of 31,000 fragments were generated, of which 2,350 showed polymorphism between K59 and K28. Thirteen AFLP markers were identified close to the NMS1-locus and six in the vicinity of the S-locus. From these AFLP markers, eight were transformed into sequence-characterized amplified region (SCAR) markers and of these five showed co-dominant polymorphism. The chromosomal regions containing the NMS1-locus and the S-locus were each confined to a region of 0.8 cM. In addition, we mapped genes encoding proteins similar to S-receptor kinase, the female determinant of sporophytic SI in the Brasicaceae, and also markers in the vicinity of the putative S-locus of sunflower, but none of these genes or markers mapped close to the chicory S-locus.
机译:针对菊苣(Cichorium intybus L.)中参与核雄性不育(NMS1-基因座)和孢子性自交不亲和(S-基因座)的基因座构建了高密度遗传图谱。该作图种群由389个F1'个体组成,它们来自两个植物,即K28(雄性不育)和K59(花粉-可育)之间的杂交,两者均在S基因座处杂合。该F1'定位人群在男性不育(MS)和强自交不亲和(SI)表型上均分开。对MS的F1'个体进行表型分析使我们能够将NMS1基因座映射到连锁群(LG)5,而受控的Dialell和阶乘杂交来识别将S基因座映射到LG2的相容/不相容表型。为了增加这些基因座周围标记的密度,使用了大量的分离物分析。使用扩增的片段长度多态性(AFLP)分析筛选了散装和亲本植物K28和K59,并带有一套完整的256个EcoRI-ANN和MseI-CNN引物组合。总共产生了31,000个片段,其中2,350个在K59和K28之间显示出多态性。在NMS1基因座附近鉴定出13个AFLP标记,在S基因座附近鉴定出6个。从这些AFLP标记中,有八个被转化为序列表征的扩增区(SCAR)标记,并且这五个中显示出共显性多态性。包含NMS1-基因座和S-基因座的染色体区域分别被限制在0.8cM的区域。此外,我们绘制了编码类似于S-受体激酶(在十字花科中的孢子性SI的雌性决定子)的蛋白质的基因,以及在推定的向日葵S-基因座附近的标记,但是这些基因或标记都没有一个映射到菊苣S-基因座。

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