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作 者:孙贵星 任雪娇[1] 杨巍[1] 慈佳宾[1] 张野[1] 杨伟光[1]
出 处:《吉林农业大学学报》2015年第2期141-147,165,共8页Journal of Jilin Agricultural University
基 金:国家"863"项目(2011AA10A103);国家科技计划项目(2011BAD35B01);农业部"948"项目(2011-G1-21)
摘 要:采用裂区试验设计,密度为主区,品种为副区。在3.0,4.5,6.0,7.5,9.0,10.5万株/hm26个密度下,对昌7-2及其4个遗传改良系和郑单958及4个Reid×塘四平头模式杂交种进行耐密性分析。结果表明:昌7-2和4个遗传改良系中,昌7-53(NC7-53=8.99)和昌7-2(NC7-2=7.82)的耐密性较好,昌7-40(NC7-40=6.45)及昌7-60(NC7-60=4.44)耐密性一般,昌7-83(NC7-83=2.50)的耐密性最差;郑单958及4个Reid×塘四平头强优势模式杂交种中,吉农玉5853(NJNY5853=9.79)和郑单958(NZD958=8.38)的耐密性较好,吉农玉5840(NJNY5840=6.21)耐密性一般,吉农玉5860(NJNY5860=5.55)和吉农玉5883(NJNY5883=5.05)的耐密性较差。昌7-53是改良较成功的自交系,并且由其组配的吉农玉5853具有耐密植的潜力。In this study, split-plot experimental design was used, density-based districts were main districts, and inbred lines and variety-based districts were deputy districts. Under 3.0, 4.5, 6.0, 7.5, 9.0, 10. 5x 104 plants/hm2, density tolerance of chang 7-2,its 4 genetically improved lines, and zhengdan 958 and 4 Reid× tangsipingtou pattern hybrids was analyzed. Results showed that a- mong chang 7-2 and its 4 genetically improved lines, chang 7-53(Nc7_53 = 8.99) and chang 7-2 (Nc7-2 = 7.82) have better density tolerance, chang 7-40( Nc7_40 = 6.45) and chang 7-60( Nc7_60 = 4.44) have ordinary density tolerance, and chang 7-83 (Nc7-83 = 2.50) has the worst density toler- ance; Zhengdan 958 and 4 hybrids according to strong heterosis of Ried x tangsipingtou pattern showed that jinongyu 5853 ( NjNys853 = 9.79) and zhengdan 958 ( NZD95s = 8.38 ) have better density tolerance, jinongyu 5840 (NjNY5840 = 6.21 ) has ordinary density tolerance, jinongyu 5860 ( NjNv5860 = 5.55 ) and jinongyu 5883 ( NjNyss83 = 5.05 ) have worse density tolerance. Chang 7-53 is a successful- ly improved inbred line and its hybrid jinongyu 5853 has the potential for density resistance.
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