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Maize forage aptitude: Combining ability of inbred lines and stability of hybrids 被引量:2
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作者 Luis Máximo Bertoia Mónica Beatriz Aulicino 《The Crop Journal》 SCIE CAS 2014年第6期407-418,共12页
Breeding of forage maize should combine improvement achieved for grain with the specific needs of forage hybrids. Production stability is important when maize is used for silage if the planting area is not in the idea... Breeding of forage maize should combine improvement achieved for grain with the specific needs of forage hybrids. Production stability is important when maize is used for silage if the planting area is not in the ideal agronomic environment. The objectives of the present research were:(i) to quantify environmental and genetic and their interaction effects on maize silage traits;(ii) to identify possible heterotic groups for forage aptitude and suggest the formation of potential heterotic patterns, and(iii) to identify suitable inbred line combinations for producing hybrids with forage aptitude. Forty-five hybrids derived from diallelic crosses(without reciprocals) among ten inbred lines of maize were evaluated in this study. Combined ANOVA over environments showed differences between genotypes(G), environments(E), and their interactions(GEI). Heritability(H2), and genotypic and phenotypic correlations were estimated to evaluate the variation in and relationships between forage traits. Postdictive and predictive AMMI models were fitted to determine the importance of each source of variation, G, E, and GEI, and to select genotypes simultaneously on yield, quality and stability. A predominance of additive effects was found in the evaluated traits. The heterotic pattern Reid-BSSS × Argentine flint was confirmed for ear yield(EY) and harvest index(HI). High and broad genetic variation was found for stover and whole plant traits. Some inbred lines had genes with differential breeding aptitude for ear and stover. Stover and ear yield should be the main breeding objectives in maize forage breeding. 展开更多
关键词 ZEA mays l. FORAGE MAIZE Combining ability gei interaction STOVER and ear digestibility
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利用AMMI模型评价湖北省水稻区试品种的适应性 被引量:13
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作者 李元元 张征锋 +1 位作者 孙辽 肖本泽 《湖北农业科学》 2016年第2期285-289,共5页
对2013年湖北省水稻(Oryza sativa L.)区域试验中的12个品种(V1-V12)在10个环境试点(E1-E10)中的产量数据进行了方差和AMMI模型联合分析。结果表明,环境、基因型与环境的互作、基因型引起的产量变异都达到极显著水平,三者的变异平方和... 对2013年湖北省水稻(Oryza sativa L.)区域试验中的12个品种(V1-V12)在10个环境试点(E1-E10)中的产量数据进行了方差和AMMI模型联合分析。结果表明,环境、基因型与环境的互作、基因型引起的产量变异都达到极显著水平,三者的变异平方和分别占总处理平方和的55.95%、16.48%和21.09%。进而基于AMMI模型对品种与环境间互作效应进行了深入剖析,品种与环境间互作效应可分解为三个显著的主成分轴IPCA1、IPCA2、IPCA3,分别解释了总互作平方和的50.56%、22.57%、13.31%,三者合计占互作总平方和的86.44%。综合品种与环境间互作效应大小及产量表现对品种丰产性和稳定性、试点的鉴别力进行了评价,其中品种V10、V12丰产性、稳产性均表现优良,V4、V6、V7属于丰产性很好但稳产性一般的品种,V9、V11属于稳产性很好但产量一般的品种,V1属于产量一般且稳产性很差的品种,V5属于稳产性很好但产量很低的品种,V2、V3、V8属于丰产性和稳产性均很差的品种;对于试点鉴别力,其中试点E1、E7、E8对品种的鉴别力最强,试点E3、E6、E10对品种的鉴别力最弱,其他试点E2、E4、E5、E9对品种的鉴别力居中。 展开更多
关键词 AMMI模型 品种与环境互作 水稻(Oryza SATIVA l.) 稳定性 鉴别力
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“给力”纵横谈
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作者 刘洁 徐国珍 《毕节学院学报(综合版)》 2011年第10期17-20,共4页
"给力"一词最先流行于网络,随后被《人民日报》等主流媒体使用而发展成为全民流行语,并荣登"汉语盘点2010年度国内词"榜首。"给力"之所以在短时间内得到如此广泛的使用和传播,从其本身的特点来看,一方面... "给力"一词最先流行于网络,随后被《人民日报》等主流媒体使用而发展成为全民流行语,并荣登"汉语盘点2010年度国内词"榜首。"给力"之所以在短时间内得到如此广泛的使用和传播,从其本身的特点来看,一方面由于它有着丰富而复杂的词义内涵,另一方面也与其多样化的语用功能有关;从其流行的原因和机制来看,既反映了隐喻机制和经济原则等语言发展的内部规律,也体现了人们求新求异的社会语用心理。 展开更多
关键词 “给力” 词义演变 语用功能
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