Rhee Sun-Ju, Seo Minseok, Jang Yoon-Jeong, Cho Seoae, Lee Gung Pyo
Department of Integrative Plant Science, Chung-Ang University, Ansung, 456-756, Republic of Korea.
Interdisciplinary Program in Bioinformatics, Seoul National University, Kwan-ak St. 599, Kwan-ak Gu, Seoul, 151-741, Republic of Korea.
BMC Genomics. 2015 Nov 9;16:914. doi: 10.1186/s12864-015-2186-9.
Male sterility is an important mechanism for the production of hybrid seeds in watermelon. Although fruit development has been studied extensively in watermelon, there are no reports on gene expression in floral organs. In this study, RNA-sequencing (RNA-seq) was performed in two near-isogenic watermelon lines (genic male sterile [GMS] line, DAH3615-MS and male fertile line, DAH3615) to identify the differentially expressed genes (DEGs) related to male sterility.
DEG analysis showed that 1259 genes were significantly associated with male sterility at a FDR P-value of < 0.01. Most of these genes were only expressed in the male fertile line. In addition, 11 functional clusters were identified using DAVID functional classification analysis. Of detected genes in RNA-seq analysis, 19 were successfully validated by qRT-PCR.
In this study, we carried out a comprehensive floral transcriptome sequence comparison of a male fertile line and its near-isogenic male sterile line in watermelon. This analysis revealed essential genes responsible for stamen development, including pollen development and pollen tube elongation, and allowed their functional classification. These results provided new information on global mechanisms related to male sterility in watermelon.
雄性不育是西瓜杂交种子生产的重要机制。尽管西瓜果实发育已得到广泛研究,但尚无关于花器官基因表达的报道。在本研究中,对两个近等基因西瓜品系(细胞核雄性不育[GMS]系DAH3615-MS和雄性可育系DAH3615)进行了RNA测序(RNA-seq),以鉴定与雄性不育相关的差异表达基因(DEG)。
差异表达基因分析表明,在错误发现率(FDR)P值<0.01时,有1259个基因与雄性不育显著相关。这些基因大多仅在雄性可育系中表达。此外,使用DAVID功能分类分析鉴定了11个功能簇。在RNA-seq分析中检测到的基因中,有19个通过qRT-PCR成功验证。
在本研究中,我们对西瓜雄性可育系及其近等基因雄性不育系进行了全面的花转录组序列比较。该分析揭示了负责雄蕊发育的关键基因,包括花粉发育和花粉管伸长,并对其进行了功能分类。这些结果为西瓜雄性不育相关的整体机制提供了新信息。