Elling Axel A, Mitreva Makedonka, Recknor Justin, Gai Xiaowu, Martin John, Maier Thomas R, McDermott Jeffrey P, Hewezi Tarek, McK Bird David, Davis Eric L, Hussey Richard S, Nettleton Dan, McCarter James P, Baum Thomas J
Interdepartmental Genetics Program, Iowa State University, Ames, IA 50011, USA.
Genome Biol. 2007;8(10):R211. doi: 10.1186/gb-2007-8-10-r211.
The soybean cyst nematode Heterodera glycines is the most important parasite in soybean production worldwide. A comprehensive analysis of large-scale gene expression changes throughout the development of plant-parasitic nematodes has been lacking to date.
We report an extensive genomic analysis of H. glycines, beginning with the generation of 20,100 expressed sequence tags (ESTs). In-depth analysis of these ESTs plus approximately 1,900 previously published sequences predicted 6,860 unique H. glycines genes and allowed a classification by function using InterProScan. Expression profiling of all 6,860 genes throughout the H. glycines life cycle was undertaken using the Affymetrix Soybean Genome Array GeneChip. Our data sets and results represent a comprehensive resource for molecular studies of H. glycines. Demonstrating the power of this resource, we were able to address whether arrested development in the Caenorhabditis elegans dauer larva and the H. glycines infective second-stage juvenile (J2) exhibits shared gene expression profiles. We determined that the gene expression profiles associated with the C. elegans dauer pathway are not uniformly conserved in H. glycines and that the expression profiles of genes for metabolic enzymes of C. elegans dauer larvae and H. glycines infective J2 are dissimilar.
Our results indicate that hallmark gene expression patterns and metabolism features are not shared in the developmentally arrested life stages of C. elegans and H. glycines, suggesting that developmental arrest in these two nematode species has undergone more divergent evolution than previously thought and pointing to the need for detailed genomic analyses of individual parasite species.
大豆胞囊线虫是全球大豆生产中最重要的寄生生物。迄今为止,尚缺乏对植物寄生线虫整个发育过程中大规模基因表达变化的全面分析。
我们报告了对大豆胞囊线虫的广泛基因组分析,始于20100个表达序列标签(EST)的生成。对这些EST以及约1900个先前发表的序列进行深入分析,预测出6860个独特的大豆胞囊线虫基因,并使用InterProScan按功能进行了分类。使用Affymetrix大豆基因组阵列基因芯片对大豆胞囊线虫整个生命周期中的所有6860个基因进行了表达谱分析。我们的数据集和结果代表了大豆胞囊线虫分子研究的全面资源。为证明该资源的强大功能,我们能够探讨秀丽隐杆线虫 dauer 幼虫和大豆胞囊线虫感染性二期幼虫(J2)的发育停滞是否表现出共同的基因表达谱。我们确定与秀丽隐杆线虫 dauer 途径相关的基因表达谱在大豆胞囊线虫中并非一致保守,并且秀丽隐杆线虫 dauer 幼虫和大豆胞囊线虫感染性J2的代谢酶基因表达谱不同。
我们的结果表明,秀丽隐杆线虫和大豆胞囊线虫发育停滞的生命阶段不共享标志性基因表达模式和代谢特征,这表明这两种线虫物种的发育停滞经历了比以前认为的更多的趋异进化,并指出需要对单个寄生虫物种进行详细的基因组分析。