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Heterosis and Combining Ability for Major Yield Traits of a New Wheat Germplasm Shannong 0095 Derived from Thinopyrum intermedium

机译:中间Thin麦新品种山东农农0095的主要产量性状杂种优势与配合力研究。

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摘要

The wheatgrass,Thinopyrum intermedium (Host) Barkworth & DR Dewey,shows many beneficial characteristics,such as big spikes and high resistance to many diseases.To transfer the benefi.cial genes of this species,many wheat Thinopyrum intermedium alien chromosome lines were developed.Of them,Shannong 0095 (SN0095),a disomic substitution,has long spikes and flag-leaves,and thus may be an important genetic resource for wheat yield improvement.In order to realize its heterosis and combining ability on major yield traits,a 7 × 7 complete diallel design was made according to Griffing's Method-I.The results showed that heterosis for spike length (SPL),flag-leaf area (FLA),number of spikes per plant (NSP),number of spikelets per spike (NSL),kernels per spike (KPS),1 000-kernel weight (TKW) and grain yield per plant (GYP) existed in all the crosses by SN0095,but heterobeitiosis occurred only for KPS,TKW,and GYP.The relative mid-parent heterosis (RMH) and relative high-parent heterosis (RHH) for GYP,which valued as high as 35.32and 29.92% respectively,were the highest among all the traits mearsured.Though additive and non-additive gene effects and cytoplasmic effects (or cytoplasmic-nuclear interaction effects) were found in governing all the traits measured above,additive gene action played a predominant role.The results also showed that SN0095 was the best-general combiner for SPL and FLA,and high-general combiner for NSP amongst all the parents.Estimates of specific combining ability (SCA) showed that SN0095 could also make high-SCA combinations for GYP,such as SN0095 × Jimai 19 (JM19).SN0095 could be a unique and important parent in hybrid wheat breeding programs.
机译:小麦草,薄孔中间(主持人)Barkworth&Dewey,展示了许多有益的特征,例如大尖峰和对许多疾病的高抗性。转移该物种的受益生物基因,开发了许多小麦薄瓶中的中间染色体染色体染色体线。其中,山东0095(SN0095)是一种多种语替代,具有长的尖峰和旗叶,因此可能是小麦产量改善的重要遗传资源。为了实现其杂种优势和主要产量特征的结合能力,a 7 ×7完整的拨号设计是根据艰难的方法-I制作的。结果表明,穗长度(SPL),旗杆面积(FLA),每株峰值数量(NSP),每穗穗数(NSL) ),每个尖峰(KPS),每植物1 000-籽粒重量(TkW)和谷物产量(GYN)的粒子在所有交叉口中都存在于SN0095中,但仅用于KPS,TKW和GYP。相对中父母杂种物(RMH)和相对高级杂种优势(RHH)G yp分别估值高达35.32和29.92%,是所有特征的最高的。虽然在控制上方测量的所有特征时发现添加剂和非添加剂基因效应和细胞质效应(或细胞质 - 核相互作用) ,添加剂基因动作起到了主要作用。结果还表明SN0095是SPL和FLA的最佳通用组合器,以及所有父母之间的NSP的高通用组合器。特定组合能力(SCA)的最佳组合器表明SN0095可以还为GYP进行高SCA组合,例如SN0095×Jimai 19(JM19).SN0095可能是混合小麦养殖计划中的独特而重要的父母。

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  • 来源
    《农业科学学报(英文版)》 |2009年第6期|753-760|共8页
  • 作者单位

    Agronomy College,Shandong Agricultural University/Tai'an Subcentre of National Wheat Improvement Centre,Tai'an 271018,P.R.China;

    State Key Laboratory of Crop Biology,Shandong Agricultural University,Tai'an 271018,P.R.China;

    Agronomy College,Nanjing Agricultural University,Nanjing 210095,P.R.China;

    Agronomy College,Shandong Agricultural University/Tai'an Subcentre of National Wheat Improvement Centre,Tai'an 271018,P.R.China;

    State Key Laboratory of Crop Biology,Shandong Agricultural University,Tai'an 271018,P.R.China;

    Agronomy College,Shandong Agricultural University/Tai'an Subcentre of National Wheat Improvement Centre,Tai'an 271018,P.R.China;

    State Key Laboratory of Crop Biology,Shandong Agricultural University,Tai'an 271018,P..R.China;

    Zaozhuang University,Zaozhuang 2;

    Agronomy College,Shandong Agricultural University/Tai'an Subcentre of National Wheat Improvement Centre,Tai'an 271018,P.R.China;

    State Key Laboratory of Crop Biology,Shandong Agricultural University,Tai'an 271018,P.R.China;

    Agronomy College,Shandong Agricultural University/Tai'an Subcentre of National Wheat Improvement Centre,Tai'an 271018,P.R.China;

    State Key Laboratory of Crop Biology,Shandong Agricultural University,Tai'an 271018,P..R.China;

    Jining Institute of Agricultural;

    Agronomy College,Shandong Agricultural University/Tai'an Subcentre of National Wheat Improvement Centre,Tai'an 271018,P.R.China;

    State Key Laboratory of Crop Biology,Shandong Agricultural University,Tai'an 271018,P.R.China;

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  • 正文语种 chi
  • 中图分类 农业基础科学;
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  • 入库时间 2022-08-18 00:26:13
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