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Transcriptomic analysis at organ and time scale reveals gene regulatory networks controlling the sulfate starvation response of Solanum lycopersicum

机译:器官和时间标度的转录组分析显示了控制Solanum Lycopersicum的硫酸盐饥饿反应的基因调节网络

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摘要

External sulfate availability is required for optimal plant growth. a Representative images of tomato plants (Solanum lycopersicum cv. Moneymaker) grown under full nutrient or S-limiting conditions for 4 weeks. Biomass accumulation is reduced by sulfate deficiency from 3 weeks after sowing. Fresh weight for leaves (b) and roots (c) were measured from 2 to 4 weeks after sowing. Sulfate content of leaves (d) and roots (e) were determined from 2 to 4 weeks after sowing using the turbidimetric method [27]. Values plotted correspond to the means of three independent experiments ± the standard error of the mean. Means with different letters indicate significant differences (P < 0.05 two-way ANOVA and Tukey’s test). 3–5 different plants were measured for each experimental replicate
机译:最佳植物生长需要外部硫酸盐可用性。番茄植物(Solanum Lycopersicum cv.的含有营养素的代表性图像,在完全营养或单限型条件下长4周。播种后3周的硫酸盐缺乏减少了生物质积累。播种后2至4周测量叶子(b)和根(c)的鲜重。使用浊度法播种后2至4周测定叶片(D)和根(E)的硫酸盐含量[27]。绘制的值对应于三个独立实验的方法±平均值的标准误差。不同字母的手段表示显着差异(P <0.05双向ANOVA和TUKEY的测试)。针对每个实验复制测量3-5种不同的植物

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