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Identification Cold Tolerance of Pineapple Germplasms at Seedling Stage

机译:野生阶段菠萝种质的耐寒性

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Pineapple plant was always injured due to low temperature. Breeding varieties with high cold tolerance was the supreme way to resolve this problem and identifying cold tolerance of germplasms collected was necessary. In this study, SSR locus around homologous sequences of cold-tolerant genes w as searched and screened using MD-2 (cold-tolerant variety) and Tainong 17 (cold-sensitive variety). Seventy three pairs of primers of which PCR results were different between these two varieties were gotten. PCRs were performed using these as primers and genomic DNA of germplasms collected as templates. Six pairs of primers were found that their PCR results were in good consistent with cold tolerance. Using GLM (General linear model) association mapping analysis, two SSR markers linked to cold tolerance were found. Their efficiency was verified further using pineapple germplasms with high cold tolerance which had been validated in field by cold wave. They will be used in cold-tolerant breeding of pineapple in the future.
机译:由于低温,菠萝植物总是受伤。具有高耐寒性的繁殖品种是解决这一问题的至尊方法,并识别所收集的种质的耐寒性。在该研究中,使用MD-2(冷耐冷品种)和Tainong 17(冷敏品种)搜索和筛选的冷耐寒基因的同源序列的SSR基因座。七十二对引物,其在这两个品种之间的PCR结果不同。使用这些作为作为模板收集的种质的引物和基因组DNA进行PCR。发现六对引物,其PCR结果与耐冷耐药均匀。使用GLM(通用​​线性模型)关联映射分析,发现了两个与耐寒耐腐蚀的SSR标记。它们的效率进一步使用具有高耐寒性的菠萝种质,通过冷波在现场验证。他们将来将用于耐寒育种植物。

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