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首页> 外文期刊>BMC Genomics >Comparative transcriptome analyses revealed different heat stress responses in high- and low-GS Brassica alboglabra sprouts
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Comparative transcriptome analyses revealed different heat stress responses in high- and low-GS Brassica alboglabra sprouts

机译:比较转录组分析显示出高和低GS Brassica Alboglabra Sprouts中的不同热应激反应

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Chinese kale (Brassica alboglabra) contains high nutritional elements and functional molecules, especially anticarcinogenic and antioxidant glucosinolates (GS), which was highly affected by environment temperature. To investigate the link of GS biosynthesis with heat stress response in Chinese kale, global transcription profiles of high-GS line (HG), low-GS line (LG), high-GS line under heat stress (HGT) and low-GS line under heat stress (LGT) were analyzed. Based on three biological replicates of each RNA sequencing data, 3901, 4062 and 2396 differentially expressed genes in HG vs HGT, LG vs LGT and HGT vs LGT were obtained, respectively. GO annotation, KEGG pathway analysis and a comprehensive analysis of DEGs showed a strong correlation between the GS biosynthesis and heat stress response. It was noticed that 11 differentially expressed genes tied to the GS biosynthesis were down-regulated, 23 heat shock transcription factors and 61 heat shock proteins were up-regulated upon the heat treatment. Another two Chinese kale varieties Cuibao and Shunbao with high- and low- GS content respectively, were used to validate the relationship of GS content and heat-response, and the results showed that high-GS content variety were more thermotolerant than the low-GS content one although GS significantly decreased in both varieties under heat stress. In addition, HSP100/ClpB, HSP90, HSP70 and sHSPs were differentially expressed in high- and low-GS varieties. Notably, HSP90 and sHSPs showed an obviously early response to heat stress than other related genes. The higher heat resistance of high-GS Chinese kale and the sharp decrease of glucosinolate content under heat stress indicated a strong relationship of GS accumulation and heat stress response. Combined with the previous report on the low expression of HSP90 at elevated temperatures in GS-deficient mutant TU8 of Arabidopsis, the differential expression pattern of HSP90 in high- and low- GS varieties and its early heat response implied it might be a key regulator in GS metabolism and heat-resistance in Chinese kale.
机译:中国羽衣甘蓝(Brassica Alboglabra)含有高营养元素和功能分子,尤其是受环境温度影响的抗氧化和抗氧化糖苷(GS)。为了研究GS生物合成的链路,在中国羽衣甘蓝中的热应激响应,高GS线(HG),低GS线(LG),高GS线(HGT)和LOW-GS线路的全局转录谱分析了在热应激(LGT)下进行了分析。基于每个RNA测序数据的三个生物学复制,分别获得3901,4062和2396型在Hg与HGT中的差异表达基因,Lg与LGT和HGT VS LGT。 GO注释,KEGG途径分析和对DEG的综合分析显示GS生物合成和热应激反应之间的强烈相关性。注意到,对GS生物合成的11个差异表达基因被下调,在热处理时上调23个热冲击转录因子和61个热冲击蛋白。另外两种中国羽衣甘蓝品种翠鸟和顺宝分别用于验证GS含量和热响应的关系,结果表明,高GS含量多样化比低GS更热散热虽然在热应力下的两个品种中Gs虽然Gs在热应激下显着降低。此外,HSP100 / CLPB,HSP90,HSP70和SHSP以高和低GS品种差别表达。值得注意的是,HSP90和SHSP显然是对热应激的显然早期反应而不是其他相关基因。在热应激下,高GS中华羽衣甘蓝的耐热性和葡糖苷含量的急剧下降表明了GS积累和热应激反应的强烈关系。结合先前关于HSP90的低表达在拟南芥GS缺陷突变体TU8的高温下的报告,HSP90在高和低GS品种中的差异表达模式及其早期热响应意味着它可能是一个关键调节器中国羽衣甘蓝的新陈代谢和耐热性。

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