Jiangsu Co-Innovation Center for Modern Production Technology of Grain Crops, Yangzhou University, Jiangsu Key Laboratory of Crops Genetics and Physiology/Jiangsu Key Laboratory of Crop Cultivation and Physiology, Agricultural College of Yangzhou University, Yangzhou, 225009, PR China.
Institute of Cotton Research of the Chinese Academy of Agricultural Sciences, State Key Laboratory of Cotton Biology, Anyang, Henan, 455000, PR China.
Plant Physiol Biochem. 2019 Aug;141:114-121. doi: 10.1016/j.plaphy.2019.05.017. Epub 2019 May 17.
The spatial and temporal expression of insecticidal gene Cry1Ac in transgenic Bacillus thuringiensis (Bt) cotton varies with plant organs, plant age, as well as environmental conditions. The research was undertaken to study the impact of nitrogen deficit on Cry1Ac endotoxin concentration in seed in Yangtze River valley region in China in 2015 and 2016. To uncover the underlying mechanism, the nitrogen metabolism process including protein synthesis and degradation was characterized. Based on the results, nitrogen deficit decreased the boll weight, boll volume, boll number per plant, seed Cry1Ac endotoxin concentration, glutamate oxaloacetate transaminase (GOT) and glutamic pyruvic transaminase (GPT) activities, soluble protein concentration, but increased peptidase and protease activities, and free amino acid content in seed. Our results suggested that the decline of seed Cry1Ac endotoxin expression associated with decreased nitrogen was due to the enhanced protein decomposition and reduced protein synthesis, especially the altered activities of GOT and peptidase. There was a significant negative correlation between seed Cry1Ac endotoxin concentration and boll shell Cry1Ac endotoxin content under nitrogen deficiency. Therefore, seed Cry1Ac endotoxin concentration and boll shell Cry1Ac endotoxin concentration should be balanced to guarantee the insecticidal efficiency.
转 Cry1Ac 基因苏云金芽孢杆菌(Bt)棉在不同器官、不同生育期以及不同环境条件下,其杀虫蛋白 Cry1Ac 的时空表达存在差异。本研究于 2015 年和 2016 年在中国长江流域棉区,研究了氮素亏缺对棉花种子中 Cry1Ac 内毒素含量的影响,为揭示其作用机制,对氮素亏缺条件下种子氮代谢过程中蛋白质合成与降解相关酶活性进行了分析。结果表明,氮素亏缺降低了棉铃重、铃体积、单株铃数、种子 Cry1Ac 内毒素含量、谷氨酸草酰乙酸转氨酶(GOT)和谷氨酸丙酮酸转氨酶(GPT)活性、可溶性蛋白浓度,但增加了蛋白酶和肽酶活性以及游离氨基酸含量。研究结果表明,氮素亏缺导致种子 Cry1Ac 内毒素表达量降低与氮素亏缺下蛋白质分解增强和合成减少有关,尤其是 GOT 和肽酶活性的改变。氮素亏缺下种子 Cry1Ac 内毒素含量与棉铃壳 Cry1Ac 内毒素含量呈显著负相关。因此,为保证杀虫效率,应平衡种子 Cry1Ac 内毒素含量和棉铃壳 Cry1Ac 内毒素含量。