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16篇 您的检索式:作者名="HuangYang"
    题名 作者 年代 出处 被引量
1microRNA-- 7suppresses the invasive potential ofbreast cancer cells and sensitizes cells to DNA damages by targeting histone methyltransferase SET8 显示文摘Yu N Huangyang P Yang X 2013J Biol Chem2013,28,827196:1
2MicroRNA-7 suppresses the invasive potential of breast cancer cells and sensitizes cells to DNA damages by targeting histone methyltransferase SET8显示文摘Yu N Huangyang P Yang X 2013J Biol Chem2013,288,19:1
3显示文摘ShaoZhipeng(邵志鹏) PanXu(潘旭) ZhangXuhui(张旭辉) YeJiajiu(叶加久) ZhuLiangzheng(朱梁正) LiYi(李毅) MaYanmei(马艳梅) HuangYang(黄阳) ZhuJun(朱俊) HuLinhua(胡林华) KongFantai(孔凡太) DaiSongyuan(戴松元) 2014化学学报2014,73,3:1
4PreparationandpropertiesofCuFe2O4/sepiolitemagneticadsorbent显示文摘HuangYang FengQiming DongFaqin etal 2011JournalofFunctionalMaterials2011,42,4:1
5microRNA-7 suppresses the invasive potential of breast cancer cells and sensitizes cells to DNA damages by targeting histone methyltransferase SET8 显示文摘Yu N Huangyang P Yang X 2013J Biol Chem2013,288,19:1
6Thellungiella halophila ST5 improves salt tolerance in cotton显示文摘Background: Salinity is a major abiotic stress to global agriculture which hampers crop growth and development, and eventually reduces yield. Transgenic technology is an e ective and e cient approach to improve crop salt tolerance but depending on the availability of e ective genes. We previously isolated Salt Tolerance5(ThST5) from the halophyte Thellungiella halophila, an ortholog of Arabidopsis SPT4-2 which encodes a transcription elongation factor. However, SPT4-2-confered salt tolerance has not been evaluated in crops yet. Here we report the evaluation of Th ST5-conferred salt tolerance in cotton(Gossypium hirsutum L.).Results: The ThST5 overexpression transgenic cotton plants displayed enhanced tolerance to salt stress during seed germination and seedling stage compared with wild type. Particularly, the transgenic plants showed improved salinity tolerance as well as yield under saline field conditions. Comparative transcriptomic analysis showed that ThST5 improved salt tolerance of transgenic cotton mainly by maintaining ion homeostasis. In addition, ThST5 also orchestrated the expression of genes encoding antioxidants and salt-responsive transcription factors.Conclusion: Our results demonstrate that ThST5 is a promising candidate to improve salt tolerance in cotton.NAZISH Tahmina JAVAID Ayesha ALI Mohsin ZHU Yonghong LI Jing ZHANG Huangyang WU Jie XIANG Chengbin WU Shenjie ALFATIH Alamin 2022Journal of Cotton Research2022,5,1:1
7Epigenetic Regulation of Epithelial to Mesenchymal Transition显示文摘Peiwei Huangyang Yongfeng Shang 2013Current Cancer Drug Targets2013,,9:1
8JMJD6 promotes colon carci- nogenesis through negative regulation of p53 by hydroxylation 显示文摘Wang F He L Huangyang P 2014PLoS Biol2014,12,10:1
9JMJD6 promotes colon carcinogenesis through negative regulation of p53 by hydroxylation 显示文摘Wang F He L Huangyang P 2014PLoS Biol2014,12,10:1
10microRNA - 7 sup- presses the invasive potential of breast cancer ceils and sensitizes cells to DNA damages by targeting histone meth- yltransferase SET8 显示文摘Yu N Huangyang P Yang X 2013J Biol Chem2013,288,19:1
11MicroRNA-7 suppresses the invasive potential of breast cancer cells and sensitizes cells to DNA damages by targeting histone methyltransferase SET8显示文摘Yu N Huangyang P Yang X 2013J Biol Chem2013,288,19:1
12Epigenetic regulation of epithelial to mesenchymal transition显示文摘Huangyang P Shang Y 2013Cuit Cancer Drug Targets2013,13,9:1
13Evaluation of Thellungiella halophila ST7 for improving salt tolerance in cotton显示文摘Background: Gossypium hirsutum(upland cotton) is one of the principal fiber crops in the world. Cotton yield is highly affected by abiotic stresses, among which salt stress is considered as a major problem around the globe. Transgenic approach is efficient to improve cotton salt tolerance but depending on the availability of salt tolerance genes.Results: In this study we evaluated salt tolerance candidate gene ST7 from Thellungiella halophila, encoding a homolog of Arabidopsis aluminum-induced protein, in cotton. Our results showed that ThST7 overexpression in cotton improved germination under NaCl stress as well as seedling growth. Our field trials also showed that ThST7 transgenic cotton lines produced higher yield under salt stress conditions. The improved salt tolerance of the transgenic cotton lines was partially contributed by enhanced antioxidation as shown by diaminobenzidine(DAB) and nitrotetrazolium blue chloride(NBT) staining. Moreover, transcriptomic analysis of ThST7 overexpression lines showed a significant upregulation of the genes involved in ion homeostasis and antioxidation, consistent with the salt tolerance phenotype of the transgenic cotton.Conclusions: Our results demonstrate that ThST7 has the ability to improve salt tolerance in cotton. The ThST7 transgenic cotton may be used in cotton breeding for salt tolerance cultivars.ALI Mohsin NAZISH Tahmina JAVAID Ayesha ZHU Yonghong LI Jing ZHANG Huangyang WU Jie XIANG Chengbin WU Shenjie ALFATIH Alamin 2022Journal of Cotton Research2022,5,1:0
14Arabidopsis NLP7 improves nitrogen use efficiency and yield in cotton显示文摘Background: Nitrogen(N) is a required macronutrient for cotton growth and productivity. Excessive N fertilizers are applied in agriculture for crop yield maximization, which also generates environmental pollution. Improving crop N use efficiency(NUE) is the most economical and desirable way of reducing fertilizer application and environmental pollution. NUE has been an important issue in cotton. So far there is no report on cotton NUE improvement via transgenic approach. Nin-like proteins(NLP) are transcription factors regulating NUE. We previously demonstrated that At NLP7 improved NUE and biomass when overexpressed in Arabidopsis. However, it is not known whether At NLP7 can be used to improve NUE in crops.Results: To test the feasibility, we expressed At NLP7 in cotton and evaluated NUE and yield of the transgenic cotton in the field. Transgenic cotton showed improved NUE and yield under both low and high N conditions. In addition, plant biomass, amount of absorbed N, N contents, activities of N-assimilating enzymes, and the expression of N-related marker genes were significantly increased in transgenic cotton compared with the wild type control, suggesting that At NLP7 enhances NUE in cotton.Conclusion: Together, our results demonstrate that At NLP7 is a promising candidate to improve NUE and yield in cotton.JAN Sami Ullah LIAQAT Ayesha ZHU Yonghong LI Jing ZHANG Huangyang ABDALLA Mohnad WU Jie XIANG Chengbin WU Shenjie ALFATIH Alamin 2022Journal of Cotton Research2022,5,1:0
15The Athenian Revolution Revisited显示文摘This paper takes on the recent debates about the Athenian revolution and suggests that a more fruitful approach is to look at the dynamics by which the Athenian democracy was created and maintained rather than looking for a definitive moment of revolution, as former scholars tend to do. It argues that the tensions and conflicts between the lower class citizens and the upper classes are the key to understanding the nature of Athenian democracy and evaluating the role of revolution in the classical history of Athenians.HuangYang 2015World History Studies2015,2,2:0
16Thellungiella halophila ST103 enhances salt tolerance in Gossypium hirsutum显示文摘Background:Cotton(Gossypium hirsutum),the major textile fiber crop ofthe world,is negatively affected by salinity.It leads to the induction of adverse effects on growth and development of cott on.The overall yield of cotton faces major drawback once they are grown in saline soil.To improve cotton salt tolerance,tunsgenic approach offers a fast and effective way but it relies on the availability of salt tolerance genes.Results:In this study,we have reported the evaluation of ThST103,a homologue of Arabidopsis ozone-induced protein(AtOZI1)in Thellungiellahalophila,in enhancing salt tolerance in cotton.Overexpression ofThST103 enabled cotton plants to germinate and grow better than the wild types under salt stress.The transgenic lines showed enhanced survival rate in the saline environment and experienced less oxidative damage compared with the wild types.In the field,the transgenic cotton lines produced higher yield than the wild type in saline soil.Transcriptomic comparison analyses of ThST103 overexpression lines versus the wild type revealed upregulated genes enriched in salt stress tolerance and ion homeostasis.Conclusions:Our results dem on strate that ThST103 has the capability to improve salt tolerance in cotton.It can be used in cotton breeding for salt tolerance cultivars.JAVAID Ayesha NAZISH Tahmina ALI Mohsin ZHU Yonghong LI Jing ZHANG Huangyang WU Jie XIANG Chengbin WU Shenjie ALFATIH Alamin 2022Journal of Cotton Research2022,5,2:0
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