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水分含量和温度对土壤中Bt棉花叶片和芽中Cry1Ac蛋白降解的影响

Impact of water content and temperature on the degradation of Cry1Ac protein in leaves and buds of Bt cotton in the soil.

作者信息

Zhang Mei-jun, Feng Mei-chen, Xiao Lu-jie, Song Xiao-yan, Yang Wu-de, Ding Guang-wei

机构信息

College of Agriculture, Shanxi Agricultural University, Taigu, People's Republic of China.

Department of Chemistry, Northern State University, Aberdeen, South Dakota, United States of America.

出版信息

PLoS One. 2015 Jan 5;10(1):e115240. doi: 10.1371/journal.pone.0115240. eCollection 2015.

Abstract

Determining the influence of soil environmental factors on degradation of Cry1Ac protein from Bt cotton residues is vital for assessing the ecological risks of this commercialized transgenic crop. In this study, the degradation of Cry1Ac protein in leaves and in buds of Bt cotton in soil was evaluated under different soil water content and temperature settings in the laboratory. An exponential model and a shift-log model were used to fit the degradation dynamics of Cry1Ac protein and estimate the DT50 and DT90 values. The results showed that Cry1Ac protein in the leaves and buds underwent rapid degradation in the early stage (before day 48), followed by a slow decline in the later stage under different soil water content and temperature. Cry1Ac protein degraded the most rapidly in the early stage at 35°C with 70% soil water holding capacity. The DT50 values were 12.29 d and 10.17 d and the DT90 values were 41.06 d and 33.96 d in the leaves and buds, respectively. Our findings indicated that the soil temperature was a major factor influencing the degradation of Cry1Ac protein from Bt cotton residues. Additionally, the relative higher temperature (25°C and 35°C) was found to be more conducive to degradation of Cry1Ac protein in the soil and the greater water content (100%WHC) retarded the process. These findings suggested that under appropriate soil temperature and water content, Cry1Ac protein from Bt cotton residues will not persist and accumulate in soil.

摘要

确定土壤环境因素对Bt棉花残体中Cry1Ac蛋白降解的影响,对于评估这种商业化转基因作物的生态风险至关重要。在本研究中,在实验室不同土壤水分含量和温度条件下,评估了Bt棉花叶片和芽中Cry1Ac蛋白在土壤中的降解情况。采用指数模型和移位对数模型拟合Cry1Ac蛋白的降解动力学,并估算DT50和DT90值。结果表明,在不同土壤水分含量和温度条件下,叶片和芽中的Cry1Ac蛋白在前期(第48天之前)快速降解,后期缓慢下降。在35°C和70%土壤持水量条件下,Cry1Ac蛋白在前期降解最快。叶片和芽中DT50值分别为12.29天和10.17天,DT90值分别为41.06天和33.96天。我们的研究结果表明,土壤温度是影响Bt棉花残体中Cry1Ac蛋白降解的主要因素。此外,发现相对较高的温度(25°C和35°C)更有利于土壤中Cry1Ac蛋白的降解,而较高的含水量(100%WHC)会延缓这一过程。这些研究结果表明,在适宜的土壤温度和水分含量条件下,Bt棉花残体中的Cry1Ac蛋白不会在土壤中持续存在和积累。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b262/4283960/acc248276d24/pone.0115240.g001.jpg

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