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Genome-Wide Identification and Expression Analysis of the GSK3 Gene Family in Sunflower under Various Abiotic Stresses
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作者 Xianwen Ji ziying jiang +2 位作者 Jichao Wang Lili Dong Xinyi Deng 《Phyton-International Journal of Experimental Botany》 SCIE 2024年第8期1839-1850,共12页
Genes in the glycogen synthase kinase 3(GSK3)family are essential in regulating plant response to stressful conditions.This study employed bioinformatics to uncover the GSK3 gene family from the sunflower genome datab... Genes in the glycogen synthase kinase 3(GSK3)family are essential in regulating plant response to stressful conditions.This study employed bioinformatics to uncover the GSK3 gene family from the sunflower genome database.The expressions of GSK3 genes in different tissues and stress treatments,such as salt,drought,and cold,were assessed using transcriptome sequencing and quantitative real-time PCR(qRT-PCR).The study results revealed that the 12 GSK3 genes of sunflower,belonging to four classes(Classes I–IV),contained the GSK3 kinase domain and 11–13 exons.The majority of GSK3 genes were highly expressed in the leaf axil and flower,while their expression levels were relatively lower in the leaf.As a result of salt stress,six of the GSK3 genes(HaSK11,HaSK22,HaSK23,HaSK32,HaSK33,and HaSK41)displayed a notable increase in expression,while HaSK14 and HaSK21 experienced a significant decrease.With regard to drought stress,five of the GSK3 genes(HaSK11,HaSK13,HaSK21,HaSK22,and HaSK33)experienced a remarkable rise in expression.When exposed to cold stress,seven of the GSK3 genes(HaSK11,HaSK12,HaSK13,HaSK32,HaSK33,HaSK41,and HaSK42)showed a substantial increase,whereas HaSK21 and HaSK23 had a sharp decline.This research is of great importance in understanding the abiotic resistance mechanism of sunflowers and developing new varieties with improved stress resistance. 展开更多
关键词 Sunflower abiotic stress GSK expression analysis
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Nuclear Power Development for Greenhouse Gas Emission Reduction in China 被引量:2
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作者 ziying jiang 《Advances in Climate Change Research》 SCIE 2011年第2期75-78,共4页
It is a consensus of international community to promote the development of low carbon economy in order to face the challenges of climate change. According to the features of nuclear energy, the greenhouse gas (GHG) ... It is a consensus of international community to promote the development of low carbon economy in order to face the challenges of climate change. According to the features of nuclear energy, the greenhouse gas (GHG) emission of nuclear energy chain and other energy chain are compared and analyzed, and the results indicate that the GHG emission of nuclear power chain is the least in all types of power generation. The status of nuclear power development and the potential benefit in GHGs emission reduction by developing nuclear power in China are also analyzed. Active nuclear power development is a smart choice for constructing low-carbon energy structure and for addressing global climate changes in China. 展开更多
关键词 nuclear power GHG emission climate change
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模仿目标临床试验在脑血管疾病领域的应用现状及展望
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作者 马高亭 左颖婷 +12 位作者 雷少元 莫然 吴宜凡 孟舒娟 姜子颖 吴月 任怡 王平平 张倩 马青峰 宋海庆 钟莲梅 郝峻巍 《中华脑血管病杂志(电子版)》 2024年第3期277-280,共4页
模仿目标临床试验是一种利用观察性研究数据来模仿随机临床试验结果的方法,近年来在临床研究中得到了广泛应用。模仿目标临床试验在脑血管疾病研究领域的应用,可以补充随机临床试验的不足,提高研究效率和可靠性,减少试验成本和时间,同... 模仿目标临床试验是一种利用观察性研究数据来模仿随机临床试验结果的方法,近年来在临床研究中得到了广泛应用。模仿目标临床试验在脑血管疾病研究领域的应用,可以补充随机临床试验的不足,提高研究效率和可靠性,减少试验成本和时间,同时还可以扩大研究样本量,提高研究结果的可解释性和可推广性。未来,模仿目标临床试验在脑血管疾病研究中的应用还有待进一步发展和完善,从而更好地为脑血管疾病的治疗和预防提供科学依据。本文针对模仿目标临床试验在脑血管疾病领域的应用现状及未来展望进行了综述。 展开更多
关键词 模仿目标临床试验 脑血管疾病 随机对照试验
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