您现在的位置: 首页> 研究主题> 杂种F1

杂种F1

杂种F1的相关文献在1987年到2023年内共计587篇,主要集中在农作物、植物学、农学(农艺学) 等领域,其中期刊论文87篇、会议论文1篇、专利文献499篇;相关期刊63种,包括水生生物学报、西北植物学报、种子等; 相关会议1种,包括2011年中国水产学会学术年会等;杂种F1的相关文献由1547位作者贡献,包括宋江萍、张晓辉、李锡香等。

杂种F1—发文量

期刊论文>

论文:87 占比:14.82%

会议论文>

论文:1 占比:0.17%

专利文献>

论文:499 占比:85.01%

总计:587篇

杂种F1—发文趋势图

杂种F1

-研究学者

  • 宋江萍
  • 张晓辉
  • 李锡香
  • 王海平
  • 于卓
  • 公杰
  • 刘永杰
  • 张启翔
  • 程堂仁
  • 赵昌平
  • 期刊论文
  • 会议论文
  • 专利文献

搜索

排序:

年份

    • 孟凡茹; 陈碧华; 郭卫丽; 袁敬平; 李庆飞; 王庆安
    • 摘要: 为了选育耐镉中国南瓜砧木种质资源,以3个耐镉南瓜砧木自交系、自交系两两杂交种F1为试验材料,采用电感耦合等离子体原子发射光谱法(ICP-AES)在16 mg·L-1Cd2+处理下对6个杂种F1及其亲本幼苗的生长发育及其不同器官中Cd2+积累特性进行分析.结果表明,360-3×041-1的幼苗株高、干质量及根系活力均高于双亲,112-2×360-3、360-3×112-2、041-1×112-2、112-2×041-1、041-1×360-3的幼苗根系活力低于双亲或单亲;360-3×041-1叶绿素相对含量显著高于双亲,丙二醛含量显著低于双亲,其他杂种F1膜脂过氧化均受到不同程度的伤害;镉胁迫下,不同器官对Cd2+的吸收能力表现为根>茎>叶,041-1×112-2、360-3×041-1幼苗的转移系数都在0.10以下,其中360-3×041-1的转移系数比父本显著降低77.78%.综上所述,360-3×041-1在幼苗生长及镉耐受性方面表现出超亲优势,可以作为耐镉砧木种质资源进一步研究.
    • 孟凡茹; 陈碧华; 郭卫丽; 袁敬平; 李庆飞; 王庆安
    • 摘要: 为了选育耐镉中国南瓜砧木种质资源,以3个耐镉南瓜砧木自交系、自交系两两杂交种F1为试验材料,采用电感耦合等离子体原子发射光谱法(ICP-AES)在16 mg·L^(-1)Cd^(2+)处理下对6个杂种F1及其亲本幼苗的生长发育及其不同器官中Cd^(2+)积累特性进行分析。结果表明,360-3×041-1的幼苗株高、干质量及根系活力均高于双亲,112-2×360-3、360-3×112-2、041-1×112-2、112-2×041-1、041-1×360-3的幼苗根系活力低于双亲或单亲;360-3×041-1叶绿素相对含量显著高于双亲,丙二醛含量显著低于双亲,其他杂种F1膜脂过氧化均受到不同程度的伤害;镉胁迫下,不同器官对Cd^(2+)的吸收能力表现为根>茎>叶,041-1×112-2、360-3×041-1幼苗的转移系数都在0.10以下,其中360-3×041-1的转移系数比父本显著降低77.78%。综上所述,360-3×041-1在幼苗生长及镉耐受性方面表现出超亲优势,可以作为耐镉砧木种质资源进一步研究。
    • 陈旭升; 狄佳春; 赵亮
    • 摘要: 分析了7个抗虫杂交棉组合F1与F2代间经济性状的相关性.结果显示:在抗虫杂交棉F1与F2代间,籽棉产量、皮棉产量、衣分、籽指、比强度、马克隆值及伸长率均存在极显著的正相关,单铃重、不孕籽率、纤维长度均呈显著正相关,株高、果枝数、结铃数、烂铃率、脱落率均不存在显著相关性;F1的籽棉、皮棉产量的竞争优势与其F2优势的衰退率之间仅存在弱的正相关.上述结果表明:要想获得产量具有竞争优势的抗虫杂交棉F2,首先必须获得产量具有竞争优势的F1组合.%In this paper,the economic character correlations between F1 and F2 of seven insect-resistant hybrid cotton combinations were analyzed.The results showed that:between the F1 and F2 of insect-resistant hybrid cotton combinations,there was extremely significant positive correlation in seed cotton yield,lint yield,lint percent,seed index,specific strength,micronaire value,and elongation rate;there was significant positive correlation in single-boll weight,mote rate,and fiber length;there was no significant correlation in plant height,number of fruit branches,boll number,rotted boll rate and abscission rate;there was weak positive correlation between the competitiveness of seed cotton yield,lint yield in hybrid cotton F1 and their decline rate in F2.It is concluded that obtaining hybrid F1 combinations with yield competitive advantage is essential to the acquirement of insect -resistant hybrid cotton F2 combinations with yield competitive advantage.
    • 于卓; 苏娜; 于肖夏; 马艳红; 刘杰; 张明飞
    • 摘要: 为明确H 027×陇薯6号和H-027×陇薯7号2个杂交组合杂种F1的4个优异新品系(A2、A10、B1和B12)在DNA水平上的遗传差异,利用SSR分子标记技术对4个新品系进行多态性分析.利用筛选出的10对SSR适宜引物,4个新品系及亲本共扩增出稳定而清晰的SSR条带142个,多态性位点百分率达81.69%;建立了能区分出4个优异新品系及其亲本的SSR指纹图;4个杂种新品系及其双亲的GD值变幅为0.229 8~0.650 8.以GD值0.34为基准,7个马铃薯材料分为3类:第1类为新品系A2、A10和H 027,第2类为新品系B1、B12和陇薯7号,陇薯6号单独为1类.%In order to determine the genetic differences of new strains of potato in DNA level,SSR molecular marker technology was used for polymorphic analysis of four excellent new strains (A 2,A 10,B 1 and B 12) from the F1 hybrids of two hybrid combinations H-027 × Longshu No.6 and H-027 ×Longshu No.7.Using 10 SSR suitable primers to amplify genome DNA of four new srains and its'parents,a total of 142 clear and stable SSR polymorphic bands were detected,and the polymorphic rate was 81.69%.A SSR fingerprint map was established,which could distinguish four excellent new strains and their parents.The genetic distance (GD) of test plants were from 0.229 8 to 0.650 8.This threshold 0.34 was adopted as GD value,seven tested plants were classified into three categories:the new strain A 2,A 10 and H-027 as a category;B 1,B 12 and Longshu No.7 as a category;and Longshu No.6 as separate category.
    • 赵青; 李造哲; 马青枝; 李鹏; 王文学; 云玲格
    • 摘要: 以披碱草×野大麦杂种F1幼穗为外植体,设置不同的激素浓度,获得适宜的诱导培养基,并选用长度不同的幼穗为外植体,确定出较为合适的外植体长度.愈伤组织经过多次继代后,细胞生长缓慢,通过更换培养基使其恢复生长.实验结果表明,最适培养条件为:以长为2-3cm幼穗为外植体,MS+3mg/L2,4-D为诱导培养基.MS+2,4-D 3mg/L +KT 0.5mg/L+CH 300mg/L与MS+2,4-D 4mg/L均可改善经过长期继代生长质量较差的愈伤组织的生长情况.
    • 张若依云; 何美丹; 李栋; 袁睿智; 李润; 袁潜华; 裴新梧
    • 摘要: 通过研究不同水深条件下海南普通野生稻(Oryza rufipogon Griff)及其转bar基因水稻杂种F1(简称“Bar野杂种F1”)的农艺性状等指标的变化情况,分析水深条件对Bar野杂交后代适应性的影响.结果表明,Bar野杂种F1种子活力总体高于普通野生稻;在生物量方面,水深为10 cm时,野生稻总体生长优势明显,且随水深升高,野生稻和Bar野杂种F1生物量均有不同程度的下降;野生稻在各水深条件下株高普遍高于Bar野杂种F1,而水深对各品种的剑叶面积无显著影响.对比本实验与模拟野生稻原生境中的杂草生长情况,结果表明,深水对杂草生长的抑制作用明显.
    • 于卓; 陈龙; 鞠天华; 蒙美莲; 于肖夏; 温贺; 郝治满; 王丹; 姜超
    • 摘要: 为明确从H-027×陇薯6号和H-027×陇薯7号这2个杂交组合F1群体中选出的各5个优良无性株系的细胞遗传学特性,利用常规制片技术对各个株系的花粉育性和花粉母细胞减数分裂Ⅰ (PMCM Ⅰ)染色体配对构型进行了分析.结果表明,H-027×陇薯6号杂种F1优良株系7、株系16、株系17、株系18和株系26的花粉可育率分别为18.18%、59.69%、19.03%、16.54%和51.14%,H-027×陇薯7号杂种F1优良株系2、株系10、株系11、株系12和株系14的花粉可育率分别为52.13%、17.26%、55、72%、60.17%和18.72%;H-027×陇薯6号杂种F1优良株系7、株系16、株系17、株系18和株系26的染色体配对构型分别为3.7 Ⅰ+6.7Ⅱ+4.6Ⅲ+4.0Ⅳ、2.7Ⅰ +10.8Ⅱ+2.4Ⅲ+3.7Ⅳ、4.2 Ⅰ+6.6Ⅱ+4.6Ⅲ+3.8Ⅳ、4.7 Ⅰ+6.1Ⅱ+5.3Ⅲ+3.6Ⅳ和3.9 Ⅰ+5.8Ⅱ+3.4Ⅲ+5.5Ⅳ,H-027 ×陇薯7号杂种F1优良株系2、株系10、株系11、株系12和株系14的染色体配对构型分别为1.7 Ⅰ+9.5Ⅱ+1.9Ⅲ+4.3Ⅳ、2.5 Ⅰ+5.3Ⅱ+4.7Ⅲ+3.7Ⅳ、2.1Ⅰ +8.8Ⅱ+1.7Ⅲ+5.7Ⅳ、1.9 Ⅰ+14.2Ⅱ+1.5Ⅲ+2.5Ⅳ和6.1Ⅰ +7.7Ⅱ+3.6Ⅲ+3.9Ⅳ.
    • 于卓; 郝治满; 鞠天华; 于肖夏; 温贺; 崔阔澍; 姜超; 王丹
    • 摘要: In order to determine the authenticity of F1 superior individuals of potato hybrid, the SSR molecular marker technology was used to identify the F1 superior individuals of two hybrid combinations ‘H-027’ בlongshu No.6’ and ‘H-027’ בlongshu No.7’. Three suitable primer pairs S7, S170 and S174 were selected from 87 SSR primer pairs. Using the SSR primers S7 and S170, a total of 25 true hybrid plants were identified from 30 superior individuals of the hybrid combination ‘H-027’× ‘longshu 6’. Using the primers S170 and S174, all the 14 superior individuals of the hybrid combination ‘H-027’ בlongshu 7’were identified as true hybrid plants.%为了明确马铃薯杂种F1单株的真实性,利用SSR分子标记技术对‘H-027’ב陇薯6号’和‘H-027’ב陇薯7号’这2个马铃薯杂交组合F1的优良单株进行鉴定。试验从87对SSR引物中筛选出3对适宜引物S7、S170和S174;用引物S7和S170从马铃薯‘H-027’ב陇薯6号’的杂种F1的30个优良单株鉴定出25个真实杂交种单株;用引物S170和S174鉴定出‘H-027’ב陇薯7号’杂种F1的14个优良单株均为真实杂交种。
    • 陈见; 李清; 王贵英; 李佩; 刘英武
    • 摘要: 采用AFLP 鲌分子标记技术对翘嘴红(♀)鲌、黑尾近红(♂)及杂种F1三个群体各12个个体进行遗传差异分析。结果表明:9对引物共扩增出257条带,多态性比例为51.36%;三个群体间特异条带共24条,其中鲌黑尾近红群体和杂种 F1群体共有特异带15鲌条、翘嘴红群体和杂种 F1群体共有特异带2鲌条、翘嘴红群体特异带7条;鲌鲌黑尾近红群体、翘嘴红群体及杂种F1群体的Shannon’s信息指数分别为0.2326、0.0794和0.1774, Nei’s基因多样性指数分别为0.1602、0.0537和0.1229,期望杂合度分别为0.1582、0.0464和0.1062;杂种F1鲌鲌群体和黑尾近红群体及翘嘴红群体遗传距离分别为0.0523、0.2165,遗传相似系数分别为0.9490、0.8053,遗传数据表明杂种F1鲌更接近于父本黑尾近红。%AFLP molecular marker technique was utilized to analyze the genetic differences among Erythroculter ilishaeformis, Ancherythroculter nigrocauda and their hybrid F1 (E. ilishaeformis♀×A. nigrocauda;12 individuals each). A total of 257 bands were obtained by 9 primer combinations, and the percentage of polymorphic loci was 51.36%. There were 24 specific bands in the three populations. There were 15 shared specific bands between the A. nigrocauda and hybrid F1, and 2 were between the E. ilishaeformis and hybrid F1. There were 7 specific bands of E. ilishaeformis. The Shannon’s information indexes of A. nigrocauda, E. ilishaeformis and hybrid F1 were 0.2326, 0.0794 and 0.1774, respectively. The Nei’s gene diversity indexes of the three populations were 0.1602, 0.0537 and 0.1229, respectively. The expected heterozygosity among the three populations was 0.1582, 0.0464 and 0.1062, respectively. The genetic distance was 0.0523 between the A. nigrocauda and hybrid F1 and was 0.2165 between the E. ilishaeformis and hybrid F1. The genetic similarity coefficients between the A. nigrocauda and hybrid F1 was 0.9490, and it was 0.8053 between the E. ilishaeformis and hybrid F1. These data showed that the hybrid F1 was more homogeneous to the male parent of A. nigrocauda.
    • 高暝; 丁昌俊; 苏晓华; 黄秦军
    • 摘要: 以美洲黑杨杂种F1代及亲本为研究材料,对叶面积、气体交换指标、气孔特征和RuBP羧化酶活性等进行测定,以揭示美洲黑杨亲本与杂交子代的光合速率、气孔特征、RuBP羧化酶活性差异及其相互之间的关系,进而探讨美洲黑杨不同生长势子代形成的生物学机理.结果表明:与亲本和低亲子代相比,超高亲子代H1、H2的光合面积(单叶面积和单株叶面积)最大、光合生产率(平均超母本46.22%,超父本66.37%)、叶绿素含量最高(平均超母本280.09%,超父本452.29%)、RuBP羧化酶活性最大(平均超母本20.79%,超父本58.56%),上、下表皮数量比和气孔频度最大,光饱和点最高(平均为2 189.33 μmol·m-2 · s-1),而光补偿点、表观量子效率和暗呼吸速率最低,使其具有更广的光强适应能力,高效的光能吸收、转化和碳固定速率,并促进干物质积累和器官形态建成,从而提高生长速度.单株叶面积、光合生产率和叶绿素含量可作为生长量评选的间接指标.
  • 查看更多

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号