Zhang Jinpeng, Liu Tingsong, Fu Junjie, Zhu Yun, Jia Jinping, Zheng Jun, Zhao Yinhe, Zhang Ying, Wang Guoying
Institute of Crop Sciences and National Plant Gene Research Center (Beijing), Chinese Academy of Agricultural Sciences, Beijing 100081, China.
Genomics. 2007 Jul;90(1):121-31. doi: 10.1016/j.ygeno.2007.03.016. Epub 2007 May 10.
Foxtail millet is a gramineous crop with low water requirement. Despite its high water use efficiency, less attention has been paid to the molecular genetics of foxtail millet. This article reports the construction of subtracted cDNA libraries from foxtail millet seedlings under dehydration stress and the expression profile analysis of 1947 UniESTs from the subtracted cDNA libraries by a cDNA microarray. The results showed that 95 and 57 ESTs were upregulated by dehydration stress, respectively, in roots and shoots of seedlings and that 10 and 27 ESTs were downregulated, respectively, in roots and shoots. The expression profile analysis showed that genes induced in foxtail millet roots were different from those in shoots during dehydration stress and that the early response to dehydration stress in foxtail millet roots was the activation of the glycolysis metabolism. Moreover, protein degradation pathway may also play a pivotal role in drought-tolerant responses of foxtail millet. Finally, Northern blot analysis validated well the cDNA microarray data.
谷子是一种需水量低的禾本科作物。尽管其水分利用效率高,但对谷子分子遗传学的关注较少。本文报道了脱水胁迫下谷子幼苗消减cDNA文库的构建,以及通过cDNA微阵列对消减cDNA文库中1947个单基因ESTs的表达谱分析。结果表明,在幼苗的根和茎中,分别有95个和57个ESTs在脱水胁迫下上调,在根和茎中分别有10个和27个ESTs下调。表达谱分析表明,脱水胁迫期间谷子根中诱导的基因与茎中的不同,谷子根对脱水胁迫的早期反应是糖酵解代谢的激活。此外,蛋白质降解途径可能在谷子的耐旱反应中也起关键作用。最后,Northern杂交分析很好地验证了cDNA微阵列数据。