磷脂酸
磷脂酶D
生物
氮气
硝酸还原酶
芸苔属
植物细胞
作物
植物生理学
农学
生物化学
植物
磷脂
酶
膜
化学
基因
有机化学
作者
Shaoping Lu,Shuaibing Yao,Geliang Wang,Liang Guo,Yongming Zhou,Yueyun Hong,Xuemin Wang
摘要
Summary Phospholipase D ( PLD ), which hydrolyses phospholipids to produce phosphatidic acid, has been implicated in plant response to macronutrient availability in Arabidopsis. This study investigated the effect of increased PLD ε expression on nitrogen utilization in Brassica napus to explore the application of PLD ε manipulation to crop improvement. In addition, changes in membrane lipid species in response to nitrogen availability were determined in the oil seed crop. Multiple PLD ε over expression ( PLD ε ‐ OE ) lines displayed enhanced biomass accumulation under nitrogen‐deficient and nitrogen‐replete conditions. PLD ε ‐ OE plants in the field produced more seeds than wild‐type plants but have no impact on seed oil content. Compared with wild‐type plants, PLD ε‐ OE plants were enhanced in nitrate transporter expression, uptake and reduction, whereas the activity of nitrite reductase was higher under nitrogen‐depleted, but not at nitrogen‐replete conditions. The level of nitrogen altered membrane glycerolipid metabolism, with greater impacts on young than mature leaves. The data indicate increased expression of PLD ε has the potential to improve crop plant growth and production under nitrogen‐depleted and nitrogen‐replete conditions.
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