Zhengzhou Fruit Research Institute, Chinese Academy of Agriculture Sciences, Zhengzhou, China.
Key Laboratory of Horticultural Plant Biology (Ministry of Education), College of Horticulture and Forestry Science, Hua Zhong Agricultural University, Wuhan, China.
PLoS One. 2020 Apr 10;15(4):e0219884. doi: 10.1371/journal.pone.0219884. eCollection 2020.
Among the genus Actinidia, Actinidia arguta possesses the strongest cold resistance and produces fresh fruit with an intense flavor. To investigate genomic variation that may contribute to variation in phenotypic traits, we performed whole-genome re-sequencing of four A. arguta genotypes originating from different regions in China and identified the polymorphisms using InDel markers. In total, 4,710,650, 4,787,750, 4,646,026, and 4,590,616 SNPs and 1,481,002, 1,534,198, 1,471,304, and 1,425,393 InDels were detected in the 'Ruby-3', 'Yongfeng male', 'Kuilv male', and 'Hongbei male' genomes, respectively, compared with the reference genome sequence of cv 'Hongyang'. A subset of 120 InDels were selected for re-sequencing validation. Additionally, genes related to non-synonymous SNPs and InDels in coding domain sequences were screened for functional analysis. The analysis of GO and KEGG showed that genes involved in cellular responses to water deprivation, sucrose transport, decreased oxygen levels and plant hormone signal transduction were significantly enriched in A. arguta. The results of this study provide insight into the genomic variation of kiwifruit and can inform future research on molecular breeding to improve cold resistance in kiwifruit.
在猕猴桃属中,软枣猕猴桃具有最强的抗寒性,其果实口感鲜美。为了研究可能导致表型性状变异的基因组变异,我们对来自中国不同地区的 4 个软枣猕猴桃基因型进行了全基因组重测序,并使用 InDel 标记鉴定了多态性。总共在 'Ruby-3'、'Yongfeng 雄性'、'Kuilv 雄性'和 'Hongbei 雄性'基因组中检测到 4,710,650、4,787,750、4,646,026 和 4,590,616 个 SNPs 和 1,481,002、1,534,198、1,471,304 和 1,425,393 个 InDels,与 cv 'Hongyang' 的参考基因组序列相比。选择了 120 个 InDels 的子集进行重测序验证。此外,还筛选了与编码区序列中非同义 SNPs 和 InDels 相关的基因进行功能分析。GO 和 KEGG 的分析表明,参与细胞对水分胁迫、蔗糖转运、氧气水平降低和植物激素信号转导的基因在软枣猕猴桃中显著富集。本研究结果为猕猴桃的基因组变异提供了深入了解,并为未来猕猴桃抗寒性的分子育种研究提供了信息。