Huang Yi, Shi Jiaqin, Tao Zhangsheng, Zhang Lida, Liu Qiong, Wang Xinfa, Yang Qing, Liu Guihua, Wang Hanzhong
Oil Crops Research Institute, Chinese Academy of Agricultural Sciences, Wuhan, Hubei, P. R. China.
Plant Biotechnology Research Center, School of Agriculture and Biology, Shanghai Jiao Tong University, Shanghai, P. R. China.
PLoS One. 2014 Jul 9;9(7):e102024. doi: 10.1371/journal.pone.0102024. eCollection 2014.
The effect of the number of pods on the main inflorescence (NPMI) on seed yield in Brassica napus plants grown at high density is a topic of great economic and scientific interest. Here, we sought to identify patterns of gene expression that determine the NPMI during inflorescence differentiation. We monitored gene expression profiles in the main inflorescence of two B. napus F6 RIL pools, each composed of nine lines with a low or high NPMI, and their parental lines, Zhongshuang 11 (ZS11) and 73290, using a Brassica 90K elements oligonucleotide array. We identified 4,805 genes that were differentially expressed (≥1.5 fold-change) between the low- and high-NPMI samples. Of these, 82.8% had been annotated and 17.2% shared no significant homology with any known genes. About 31 enriched GO clusters were identified amongst the differentially expressed genes (DEGs), including those involved in hormone responses, development regulation, carbohydrate metabolism, signal transduction, and transcription regulation. Furthermore, 92.8% of the DEGs mapped to chromosomes that originated from B. rapa and B. oleracea, and 1.6% of the DEGs co-localized with two QTL intervals (PMI10 and PMI11) known to be associated with the NPMI. Overexpression of BnTPI, which co-localized with PMI10, in Arabidopsis suggested that this gene increases the NPMI. This study provides insight into the molecular factors underlying inflorescence architecture, NPMI determination and, consequently, seed yield in B. napus.
在高密度种植的甘蓝型油菜植株中,主花序荚果数(NPMI)对种子产量的影响是一个具有重大经济和科学意义的课题。在此,我们试图确定在花序分化过程中决定NPMI的基因表达模式。我们使用甘蓝型油菜90K元件寡核苷酸阵列,监测了两个甘蓝型油菜F6重组自交系群体主花序中的基因表达谱,每个群体由9个具有低或高NPMI的株系及其亲本中双11(ZS11)和73290组成。我们鉴定出4805个在低NPMI和高NPMI样本之间差异表达(≥1.5倍变化)的基因。其中,82.8%已被注释,17.2%与任何已知基因没有显著同源性。在差异表达基因(DEG)中鉴定出约31个富集的GO簇,包括那些参与激素反应、发育调控、碳水化合物代谢、信号转导和转录调控的簇。此外,92.8%的DEG映射到源自白菜和甘蓝的染色体上,1.6%的DEG与已知与NPMI相关的两个QTL区间(PMI10和PMI11)共定位。与PMI10共定位的BnTPI在拟南芥中的过表达表明该基因增加了NPMI。本研究深入了解了甘蓝型油菜花序结构、NPMI决定以及种子产量背后的分子因素。