Wyatt Lindsay E, Strickler Susan R, Mueller Lukas A, Mazourek Michael
Department of Plant Breeding and Genetics, Cornell University , Ithaca, NY, USA.
Boyce Thompson Institute for Plant Research , Tower Road, Ithaca, NY, USA.
Hortic Res. 2015 Jan 28;2:14070. doi: 10.1038/hortres.2014.70. eCollection 2015.
Acorn squash (Cucurbita pepo) is an iconic fall vegetable in the United States, known for its unique fruit shape and also prized for its culinary properties. Little is known about the metabolism that underlies the development of fruit quality attributes such as color, sweetness, texture and nutritional qualities in acorn squash, or any other winter squash grown worldwide. To provide insight into winter squash fruit and seed development and add to the genomic resources in the Cucurbita genus, RNA sequencing was used to generate an acorn squash fruit and seed transcriptome from the cultivar Sweet REBA at critical points throughout fruit development. 141 838 600 high-quality paired-end Illumina reads were assembled into 55 949 unigenes. 85% of unigenes with predicted open reading frames had homology with previously identified genes and over 62% could be functionally annotated. Comparison with the watermelon and cucumber genomes provided confirmation that the unigenes are full-length and comprehensive, covering an average of 90% of the coding sequence of their homologs and 72% of the cucumber and watermelon exomes. Key candidate genes associated with carotenoid and carbohydrate metabolism were identified toward a resource for winter squash fruit quality trait dissection. This transcriptome represents a major advance in C. pepo genomics, providing significant new sequence information and revealing the repertoire of genes expressed throughout winter squash fruit and seed development. Future studies on the genetic basis of fruit quality and future breeding efforts will be enhanced by tools and insights developed from this resource.
橡子南瓜(西葫芦)是美国一种具有代表性的秋季蔬菜,以其独特的果实形状而闻名,同时也因其烹饪特性而备受推崇。对于橡子南瓜以及全球种植的任何其他南瓜品种而言,关于果实品质属性(如颜色、甜度、质地和营养品质)形成背后的代谢过程,人们了解甚少。为了深入了解南瓜果实和种子的发育情况,并增加南瓜属的基因组资源,研究人员利用RNA测序技术,在果实发育的关键阶段,从“甜蜜瑞芭”品种中生成了一份橡子南瓜果实和种子转录组。141838600条高质量的双末端Illumina reads被组装成55949个单基因。85%具有预测开放阅读框的单基因与先前鉴定的基因具有同源性,超过62%的单基因可以进行功能注释。与西瓜和黄瓜基因组的比较证实了这些单基因是全长且全面的,平均覆盖其同源物编码序列的90%以及黄瓜和西瓜外显子的72%。为了建立一个用于解析南瓜果实品质性状的资源库,研究人员鉴定了与类胡萝卜素和碳水化合物代谢相关的关键候选基因。这个转录组代表了西葫芦基因组学的一项重大进展,提供了重要的新序列信息,并揭示了整个南瓜果实和种子发育过程中表达的基因库。基于这一资源开发的工具和见解将有助于未来对果实品质遗传基础的研究以及未来的育种工作。