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Characterization of transgenic wheat lines expressing maize ABP7 involved in kernel development
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作者 Zaid CHACHAR Siffat Ullah KHAN +3 位作者 zhang xu-huan LENG Peng-fei ZONG Na ZHAO Jun 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2023年第2期389-399,共11页
Wheat is one of the major food crops in the world.Functional validation of the genes in increasing the grain yield of wheat by genetic engineering is essential for feeding the ever-growing global population.This study... Wheat is one of the major food crops in the world.Functional validation of the genes in increasing the grain yield of wheat by genetic engineering is essential for feeding the ever-growing global population.This study investigated the role of ABP7,a bHLH transcription factor from maize involved in kernel development,in regulating grain yield-related traits in transgenic wheat.Molecular characterization showed that transgenic lines HB123 and HB287 contained multicopy integration of ABP7 in the genome with higher transgene expression.At the same time,QB205 was a transgenic event of single copy insertion with no significant difference in ABP7 expression compared to wild-type(WT) plants.Phenotyping under field conditions showed that ABP7 over-expressing transgenic lines HB123 and HB287 exhibited improved grain yield-related traits(e.g.,grain number per spike,grain weight per spike,thousand-grain weight,grain length,and grain width) and increased grain yield per plot,compared to WT plants,whereas line QB205 did not.In addition,total chlorophyll,chlorophyll a,chlorophyll b,and total soluble sugars were largely increased in the flag leaves of both HB123and HB287 transgenic lines compared to the WT.These results strongly suggest that ABP7 positively regulates yieldrelated traits and plot grain yield in transgenic wheat.Consequently,ABP7 can be utilized in wheat breeding for grain yield improvement. 展开更多
关键词 transgenic wheat ABP7 kernel development grain weight grain width
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Genome-wide association study and metabolic pathway prediction of barrenness in maize as a response to high planting density
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作者 zhang xu-huan LIU Hao +9 位作者 MA Xu-hui ZHOU Gu-yi RUAN Hong-qiang CUI Hong-wei PANG Jun-ling KHAN Ullah Siffat ZONG Na WANG Ren-zhong LENG Peng-fei ZHAO Jun 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2022年第12期3514-3523,共10页
Increasing the planting density is one way to enhance grain production in maize.However,high planting density brings about growth and developmental defects such as barrenness,which is the major factor limiting grain y... Increasing the planting density is one way to enhance grain production in maize.However,high planting density brings about growth and developmental defects such as barrenness,which is the major factor limiting grain yield.In this study,the barrenness was characterized in an association panel comprising 280 inbred lines under normal(67500 plants ha–1,ND)and high(120000 plants ha–1,HD)planting densities in 2017 and 2018.The population was genotyped using 776254 single nucleotide polymorphism(SNP)markers with criteria of minor allele frequency>5%and<20%missing data.A genome-wide association study(GWAS)was conducted for barrenness under ND and HD,as well as the barrenness ratio(HD/ND),by applying a Mixed Linear Model that controls both population structure and relative kinship(Q+K).In total,20 SNPs located in nine genes were significantly(P<6.44×10–8)associated with barrenness under the different planting densities.Among them,seven SNPs for barrenness at ND and HD were located in two genes,four of which were common under both ND and HD.In addition,13 SNPs for the barrenness ratio were located in seven genes.A complementary pathway analysis indicated that the metabolic pathways of amino acids,such as glutamate and arginine,and the mitogen-activated protein kinase(MAPK)signaling pathway might play important roles in tolerance to high planting density.These results provide insights into the genetic basis of high planting density tolerance and will facilitate high yield maize breeding. 展开更多
关键词 Zea mays L high planting density barrenness genome-wide association study MAPK pathway
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降钙素联合透明质酸钠治疗绝经后女性膝关节骨性关节炎患者的效果和对生活质量评分的影响 被引量:7
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作者 任庆杰 张旭环 马向征 《中国妇幼保健》 CAS 2021年第14期3173-3176,共4页
目的探讨降钙素联合透明质酸钠治疗对绝经后女性膝关节骨性关节炎患者的效果和对生活质量(QOL)评分的影响.方法选取2018年5月-2019年5月该院收治的绝经后女性膝关节骨性关节炎患者88例作为对象,随机分为对照组和观察组,每组44例,给予对... 目的探讨降钙素联合透明质酸钠治疗对绝经后女性膝关节骨性关节炎患者的效果和对生活质量(QOL)评分的影响.方法选取2018年5月-2019年5月该院收治的绝经后女性膝关节骨性关节炎患者88例作为对象,随机分为对照组和观察组,每组44例,给予对照组明质酸钠与盐酸氨基葡萄糖胶囊联合治疗,给予观察组透明质酸钠与降钙素联合治疗,比较两组治疗前后血清超敏C-反应蛋白(hs-CRP)、雌二醇(E2)水平及炎症细胞因子水平,两组治疗前及治疗后不同时间段国际骨性关节炎评分标准(Lequesne)指数,比较治疗前后QOL评分.结果治疗后观察组血清hs-CRP水平低于对照组(23.32±11.15 vs.35.42±13.17,t=4.105,P<0.05),观察组E2水平高于对照组(48.42±9.75vs.39.25±10.22,t=4.321,P<0.05),治疗1个月后,观察组的Lequesne指数与对照组比较差异无统计学意义(P>0.05),治疗6个月及12个月后,观察组的Lequesne指数显著低于对照组(P<0.05),治疗后,两组QOL评分较治疗前均有所提高(P<0.05),观察组生理功能、行为能力、社会能力及心理功能等QOL评分高于对照组(P<0.05).结论降钙素联合透明质酸钠治疗,能有效提高雌激素水平,降低炎症因子水平,改善绝经后女性膝关节骨性关节炎患者临床症状,治疗效果持久显著,并能有效提高生活质量,具有临床推广价值. 展开更多
关键词 降钙素 透明质酸钠 绝经后女性 膝关节骨性关节炎 生活质量评分
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