Department of Plant Systems Biology, VIB, Gent, Belgium.
Plant Biotechnol J. 2012 May;10(4):488-500. doi: 10.1111/j.1467-7652.2012.00687.x. Epub 2012 Feb 15.
Because seed yield is the major factor determining the commercial success of grain crop cultivars, there is a large interest to obtain more understanding of the genetic factors underlying this trait. Despite many studies, mainly in the model plant Arabidopsis thaliana, have reported transgenes and mutants with effects on seed number and/or seed size, knowledge about seed yield parameters remains fragmented. This study investigated the effect of 46 genes, either in gain- and/or loss-of-function situations, with a total of 64 Arabidopsis lines being examined for seed phenotypes such as seed size, seed number per silique, number of inflorescences, number of branches on the main inflorescence and number of siliques. Sixteen of the 46 genes, examined in 14 Arabidopsis lines, were reported earlier to directly affect in seed size and/or seed number or to indirectly affect seed yield by their involvement in biomass production. Other genes involved in vegetative growth, flower or inflorescence development or cell division were hypothesized to potentially affect the final seed size and seed number. Analysis of this comprehensive data set shows that of the 14 lines previously described to be affected in seed size or seed number, only nine showed a comparable effect. Overall, this study provides the community with a useful resource for identifying genes with effects on seed yield and candidate genes underlying seed QTL. In addition, this study highlights the need for more thorough analysis of genes affecting seed yield.
由于种子产量是决定粮食作物品种商业成功的主要因素,因此人们非常希望更多地了解影响这一特性的遗传因素。尽管在模式植物拟南芥中进行了许多研究,报道了对种子数量和/或种子大小有影响的转基因和突变体,但有关种子产量参数的知识仍然很零散。本研究调查了 46 个基因的效应,这些基因要么在功能获得和/或功能丧失的情况下,总共检查了 64 个拟南芥系的种子表型,如种子大小、每荚种子数、花序数、主花序上的分枝数和荚果数。在 14 个拟南芥系中检查了 46 个基因中的 16 个,这些基因以前被报道直接影响种子大小和/或种子数量,或者通过参与生物量的产生间接影响种子产量。其他参与营养生长、花或花序发育或细胞分裂的基因被假设可能潜在地影响最终的种子大小和种子数量。对这个综合数据集的分析表明,在以前描述的影响种子大小或种子数量的 14 个系中,只有 9 个表现出类似的效应。总的来说,这项研究为社区提供了一个有用的资源,用于鉴定对种子产量有影响的基因和种子 QTL 的候选基因。此外,这项研究强调了需要更彻底地分析影响种子产量的基因。