Huang Yi, Chen Liang, Wang Liping, Vijayan Kannan, Phan Sieu, Liu Ziying, Wan Lianglu, Ross Andrew, Xiang Daoquan, Datla Raju, Pan Youlian, Zou Jitao
Plant Biotechnology Institute, National Research Council Canada, 110 Gymnasium Place, Saskatoon, SK, S7N 0W9, Canada.
BMC Genomics. 2009 Jun 2;10:256. doi: 10.1186/1471-2164-10-256.
In species with exalbuminous seeds, the endosperm is eventually consumed and its space occupied by the embryo during seed development. However, the main constituent of the early developing seed is the liquid endosperm, and a significant portion of the carbon resources for the ensuing stages of seed development arrive at the embryo through the endosperm. In contrast to the extensive study of species with persistent endosperm, little is known about the global gene expression pattern in the endosperm of exalbuminous seed species such as crucifer oilseeds.
We took a multiparallel approach that combines ESTs, protein profiling and microarray analyses to look into the gene expression landscape in the endosperm of the oilseed crop Brassica napus. An EST collection of over 30,000 entries allowed us to detect close to 10,000 unisequences expressed in the endosperm. A protein profile analysis of more than 800 proteins corroborated several signature pathways uncovered by abundant ESTs. Using microarray analyses, we identified genes that are differentially or highly expressed across all developmental stages. These complementary analyses provided insight on several prominent metabolic pathways in the endosperm. We also discovered that a transcription factor LEAFY COTYLEDON (LEC1) was highly expressed in the endosperm and that the regulatory cascade downstream of LEC1 operates in the endosperm.
The endosperm EST collection and the microarray dataset provide a basic genomic resource for dissecting metabolic and developmental events important for oilseed improvement. Our findings on the featured metabolic processes and the LEC1 regulatory cascade offer new angles for investigation on the integration of endosperm gene expression with embryo development and storage product deposition in seed development.
在无胚乳种子的物种中,胚乳最终会被消耗,其空间在种子发育过程中被胚占据。然而,早期发育种子的主要成分是液态胚乳,种子发育后续阶段的大量碳资源通过胚乳到达胚。与对具持久胚乳物种的广泛研究相比,对于十字花科油料种子等无胚乳种子物种胚乳中的全局基因表达模式知之甚少。
我们采用了一种多平行方法,结合ESTs、蛋白质谱分析和微阵列分析来研究油料作物甘蓝型油菜胚乳中的基因表达情况。一个超过30000条条目的EST文库使我们能够检测到近10000个在胚乳中表达的单序列。对800多种蛋白质的蛋白质谱分析证实了大量ESTs所揭示的几条标志性途径。通过微阵列分析,我们鉴定了在所有发育阶段差异表达或高表达的基因。这些互补分析为胚乳中的几个重要代谢途径提供了见解。我们还发现转录因子LEAFY COTYLEDON(LEC1)在胚乳中高度表达,并且LEC1下游的调控级联在胚乳中起作用。
胚乳EST文库和微阵列数据集为剖析对油料作物改良重要的代谢和发育事件提供了基本的基因组资源。我们关于特色代谢过程和LEC1调控级联的发现为研究胚乳基因表达与种子发育中胚发育和贮藏产物沉积的整合提供了新的视角。