1. 广西科技大学生物与化学工程学院∥广西糖资源绿色加工重点实验室,广西,柳州,545006
2.
纸质出版日期:2018,
网络出版日期:2018-1-25,
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邓冬梅, 艾红霞, 邓金川, 等. 宝山堇菜Pb耐性相关基因筛选及表达特性[J]. 中山大学学报(自然科学版)(中英文), 2018,57(1):29-35.
DENG Dongmei, AI Hongxia, DENG Jinchuan, et al. The screening and expression pattern analysis of lead tolerant related gene in Viola baoshannensis[J]. Acta Scientiarum Naturalium Universitatis SunYatseni, 2018,57(1):29-35.
邓冬梅, 艾红霞, 邓金川, 等. 宝山堇菜Pb耐性相关基因筛选及表达特性[J]. 中山大学学报(自然科学版)(中英文), 2018,57(1):29-35. DOI:
DENG Dongmei, AI Hongxia, DENG Jinchuan, et al. The screening and expression pattern analysis of lead tolerant related gene in Viola baoshannensis[J]. Acta Scientiarum Naturalium Universitatis SunYatseni, 2018,57(1):29-35. DOI:
Cd超富集植物宝山堇菜Viola baoshannensis也有一定Pb耐性/富集能力,为了解宝山堇菜对Pb的耐性/富集分子机制,采用抑制消减杂交技术(suppression subtractive hybridization
SSH),筛选了宝山堇菜根在Pb诱导下差异表达的基因片段,进而对与Pb耐性与富集相关的基因克隆片段(expressed sequence tags
ESTs)进行半定量RT-PCR和Northorn杂交验证。利用SSH方法,从宝山堇菜根部获得27个在Pb胁迫下特异表达的无重复的有意义EST克隆片段。半定量RT-PCR和Northern杂交进一步证实和Lycopersicon esculentum木葡聚糖内源转糖基酶(xyloglucan endotransglycosylase
XTH)基因、Arabidopsis thaliana GTP结合蛋白基因(GTP binding mRNA)基因相似的2个克隆片段在宝山堇菜受Pb胁迫时,为上调表达基因。可初步假设,Pb胁迫下,伴随有细胞壁的变化,GTP 结合蛋白可能参与宝山堇菜体内Pb胁迫信号的传导。
Viola baoshanensis
an identified Cd hyperaccumulator can also tolerate and accumulate a certain amount of Pb. To understand the resistance/enrichment molecular mechanism of Viola baoshansis to Pb
suppression subtractive hybridization (SSH) was performed to screen gene segments induced by Pb
and semi-quantitive RT-PCR along with Northorn blotting was then used to verify the relationship between the screened expressed sequence tags (ESTs) and Pb tolerant/accumulation in V. baoshanensis. Twenty-seven different cDNA fragments were obtained via sequences analysis of cDNA inserts obtained from SSH subtractive cDNA library of V. baoshanensis roots. The results of both RT-PCR and Northern blot analysis showed that two cDNA fragments with high homology with xyloglucan endotransglycosylase (XTH) and GTP binding gene were up-regulated under Pb stress. It could be speculated that
in response to Pb stress
cell wall might have some changes and GTP binding protein might play a role in signal transduction.
超富集植物宝山堇菜PbSSH
hyperaccumualtorViola baoshanensisPbSSH
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