生物
油菜籽
脂肪酶
糖
西力克
合成代谢
芸苔属
食品科学
分解代谢
产量(工程)
生物技术
农学
植物
生物化学
基因
突变体
新陈代谢
拟南芥
酶
材料科学
冶金
作者
Amélie A. Kelly,Eve Shaw,Stephen J. Powers,Smita Kurup,Peter J. Eastmond
摘要
Summary Increasing the productivity of oilseed crops is an important challenge for plant breeders and biotechnologists. To date, attempts to increase oil production in seeds via metabolic pathway engineering have focused on boosting synthetic capacity. However, in the tissues of many organisms, it is well established that oil levels are determined by both anabolism and catabolism. Indeed, the oil content of rapeseed ( B rassica napus L .) has been reported to decline by approximately 10% in the final stage of development, as the seeds desiccate. Here, we show that RNA i suppression of the SUGAR ‐ DEPENDENT 1 triacylglycerol lipase gene family during seed development results in up to an 8% gain in oil yield on either a seed, plant or unit area basis in the greenhouse, with very little adverse impact on seed vigour. Suppression of lipolysis could therefore constitute a new method for enhancing oil yield in oilseed crops.
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