Liu Li, Venkatesh Jelli, Jo Yeong Deuk, Koeda Sota, Hosokawa Munetaka, Kang Jin-Ho, Goritschnig Sandra, Kang Byoung-Cheorl
Department of Plant Science and Plant Genomics and Breeding Institute, Seoul National University, Seoul, 151-921, Korea.
Department of Agronomy and Horticultural Science, Graduate School of Agriculture, Kyoto University, Sakyo-ku, Kyoto, 606-8502, Japan.
Theor Appl Genet. 2016 Aug;129(8):1541-56. doi: 10.1007/s00122-016-2723-1. Epub 2016 May 4.
The sy - 2 temperature-sensitive gene from Capsicum chinense was fine mapped to a 138.8-kb region at the distal portion of pepper chromosome 1. Based on expression analyses, two putative F-box genes were identified as sy - 2 candidate genes. Seychelles-2 ('sy-2') is a temperature-sensitive natural mutant of Capsicum chinense, which exhibits an abnormal leaf phenotype when grown at temperatures below 24 °C. We previously showed that the sy-2 phenotype is controlled by a single recessive gene, sy-2, located on pepper chromosome 1. In this study, a high-resolution genetic and physical map for the sy-2 locus was constructed using two individual F2 mapping populations derived from a cross between C. chinense mutant 'sy-2' and wild-type 'No. 3341'. The sy-2 gene was fine mapped to a 138.8-kb region between markers SNP 5-5 and SNP 3-8 at the distal portion of chromosome 1, based on comparative genomic analysis and genomic information from pepper. The sy-2 target region was predicted to contain 27 genes. Expression analysis of these predicted genes showed a differential expression pattern for ORF10 and ORF20 between mutant and wild-type plants; with both having significantly lower expression in 'sy-2' than in wild-type plants. In addition, the coding sequences of both ORF10 and ORF20 contained single nucleotide polymorphisms (SNPs) causing amino acid changes, which may have important functional consequences. ORF10 and ORF20 are predicted to encode F-box proteins, which are components of the SCF complex. Based on the differential expression pattern and the presence of nonsynonymous SNPs, we suggest that these two putative F-box genes are most likely responsible for the temperature-sensitive phenotypes in pepper. Further investigation of these genes may enable a better understanding of the molecular mechanisms of low temperature sensitivity in plants.
来自中国辣椒的sy - 2温度敏感基因被精细定位到辣椒1号染色体远端的一个138.8 kb区域。基于表达分析,两个假定的F-box基因被鉴定为sy - 2候选基因。塞舌尔-2('sy-2')是中国辣椒的一个温度敏感自然突变体,当在24°C以下的温度下生长时,它表现出异常的叶片表型。我们之前表明,sy-2表型由位于辣椒1号染色体上的单个隐性基因sy-2控制。在本研究中,利用来自中国辣椒突变体'sy-2'与野生型'3341号'杂交的两个F2定位群体,构建了sy-2基因座的高分辨率遗传和物理图谱。基于比较基因组分析和辣椒的基因组信息,sy-2基因被精细定位到1号染色体远端标记SNP 5-5和SNP 3-8之间的一个138.8 kb区域。sy-2目标区域预计包含27个基因。对这些预测基因的表达分析表明,突变体和野生型植株之间ORF10和ORF20存在差异表达模式;两者在'sy-2'中的表达均显著低于野生型植株。此外,ORF10和ORF20的编码序列均包含导致氨基酸变化的单核苷酸多态性(SNP),这可能具有重要的功能影响。ORF10和ORF20预计编码F-box蛋白,它们是SCF复合物的组成部分。基于差异表达模式和非同义SNP的存在,我们认为这两个假定的F-box基因最有可能是辣椒温度敏感表型的原因。对这些基因的进一步研究可能有助于更好地理解植物低温敏感性的分子机制。