您的位置: 专家智库 > >

江苏省自然科学基金(BK2007719)

作品数:3 被引量:59H指数:3
相关作者:张天真郭旺珍杨昶蒋锋赵君更多>>
相关机构:南京农业大学更多>>
发文基金:江苏省自然科学基金国家自然科学基金国家重点基础研究发展计划更多>>
相关领域:农业科学更多>>

文献类型

  • 3篇中文期刊文章

领域

  • 3篇农业科学

主题

  • 2篇陆地棉
  • 2篇黄萎病
  • 1篇性状
  • 1篇农艺
  • 1篇农艺性
  • 1篇农艺性状
  • 1篇抗黄萎病
  • 1篇分子标记
  • 1篇分子标记定位
  • 1篇QTL
  • 1篇QTL定位
  • 1篇QTL作图
  • 1篇UPLAND...
  • 1篇WILT
  • 1篇COTTON
  • 1篇GENETI...
  • 1篇UPLAND
  • 1篇VERTIC...

机构

  • 2篇南京农业大学

作者

  • 2篇郭旺珍
  • 2篇张天真
  • 1篇周雷
  • 1篇赵君
  • 1篇蒋锋
  • 1篇杨昶

传媒

  • 1篇中国科学(C...
  • 1篇分子植物育种
  • 1篇Scienc...

年份

  • 2篇2009
  • 1篇2007
3 条 记 录,以下是 1-3
排序方式:
陆地棉抗黄萎病基因的分子标记定位被引量:16
2009年
棉花黄萎病是棉花生长过程中最具破坏力的病害之一,在世界范围内流行.棉花黄萎病已成为棉花生产中的主要障碍.减轻棉花黄萎病损失最为经济、安全、有效的办法就是培育和推广抗病品种.本研究利用抗黄萎病品系60182和感黄萎病品种军棉1号为亲本配制杂交组合,对陆地棉抗黄萎病性状进行遗传分析和抗病基因分子标记定位.用主基因+多基因混合遗传模型和P1,P2,F1,B1,B2和F2六世代联合分析的方法对病叶比例性状进行遗传分析.结果表明,接种BP2,VD8,T9和三者等浓度混合病菌时,抗病性都受两对加性-显性-上位性主基因控制,陆地棉60182的抗病性在各个分离世代都以主基因遗传为主.运用F2为作图群体构建了一个含139个标记位点,31个连锁群,总长1165cM的分子标记连锁遗传图谱,标记平均距离为8.38cM,覆盖棉花全基因组的25.89%.调查229个F2:3家系各时期平均病级代表F2单株抗病性,结合连锁遗传图谱,复合区间作图检测QTL.结果显示,在60182上,接种BP2时检测到4个QTL位于D7染色体上,4个QTL位于D9染色体上;接种VD8时,有5个QTL位于D7染色体上,9个QTL位于D9染色体上;接种T9时,有4个QTL位于D7染色体上,5个QTL位于D9染色体上;接种混合病菌时,有3个QTL位于D7染色体上,7个QTL位于D9染色体上.60182在不同调查时期对4种黄萎病菌的抗性QTL都集中在D7、D9两条染色体上,形成两个明显的抗病QTL集中区.这一结果与两对主基因的遗传模式相吻合,充分表明陆地棉抗黄萎病品系60182兼具对落叶型,非落叶型黄萎病菌的广谱抗性.同时与陆地棉抗黄萎病QTL连锁的分子标记可加速抗黄萎病基因的应用,为培育稳定高抗黄萎病新材料提供有价值的理论依据.
蒋锋赵君周雷郭旺珍张天真
关键词:陆地棉黄萎病QTL作图
陆地棉抗黄萎病、纤维品质和产量等农艺性状的QTL定位被引量:35
2007年
用一个高抗黄萎病的陆地棉品系5026和一个高感黄萎病的陆地棉品种李8为材料,构建一个RIL群体。用5300对SSR引物筛选亲本多态,获得115个多态位点并进行标记间连锁分析,构建了一张包括20个连锁群全长560.1 cM的陆地棉品种间分子标记遗传图谱。RIL家系分两份:一份种于病圃,在苗期和成株期分别考查各家系的发病情况;一份种于大田,调查各家系的产量和纤维品质相关性状。用复合区间作图法对抗病、产量和纤维品质等性状进行QTL定位:在苗期检测到了3个抗病QTL,成株期检测到了1个抗病QTL,解释的变异系数范围是7.4%~11.8%;检测到2个纤维长度、2个纤维强度、1个纤维细度、1个整齐度、1个短纤维指数和2个纤维伸长率等9个与纤维品质相关性状的QTL,解释的变异范围是6.7%~15.7%;检测到了2个皮棉产量、1个籽棉产量、2个单株果枝数、1个单株铃数、2个铃重、1个籽指、1个衣分和1个衣指等11个产量构成因素的QTL,解释的变异方差范围是4.1%~10.6%,这些结果为棉花抗病育种同时兼顾产量和品质育种提供了非常有用的信息。
杨昶郭旺珍张天真
关键词:黄萎病QTL
Molecular mapping of Verticillium wilt resistance QTL clustered on chromosomes D7 and D9 in upland cotton被引量:18
2009年
Verticillium wilt is a destructive disease with international consequences for cotton production. Breeding broad-spectrum resistant cultivars is considered to be one of the most effective means for reducing crop losses. A resistant cotton cultivar,60182,was crossed with a susceptible cultivar,Jun-mian 1,to identify markers for Verticillium resistance genes and validate the mode of its inheritance. Genetic segregation analysis for Verticillium wilt resistance was evaluated based upon infected leaf percentage in the seedling stage using major gene-polygene mixed inheritance models and joint analysis of P1,P2,F1,B1,B2 and F2 populations obtained from the cultivar cross. We found that resistance of upland cotton cultivar 60182 to isolates BP2,VD8 and T9,and their isoconcentration mixture was controlled by two major genes with additive-dominance-epistatic effects,and the inheritance of the major gene was dominant. Furthermore,a genetic linkage map was constructed using F2 segregating population and resistance phenotypic data were obtained using F2:3 families inoculated with different isolates and detected in different developmental stages. The genetic linkage map with 139 loci was comprised of 31 linkage groups covering 1165 cM,with an average distance of 8.38 cM between two markers,or 25.89% of the cotton genome length. From 60182,we found 4 QTL on chromosome D7 and 4 QTL on D9 for BP2,5 QTL on D7 and 9 QTL on D9 for VD8,4 QTL on D7 and 5 QTL on D9 for T9 and 3 QTL on D7 and 7 QTL on D7 for mixed pathogens. The QTL mapping results revealed that QTL clusters with high contribution rates were screened simultaneously on chromosomes D9 and D7 by multiple interval mapping (CIM),whether from resistance phenotypic data from different developmental stages or for different isolates. The result is consistent with the genetic model of two major genes in 60182 and suggests broad-spectrum resistance to both defoliating isolates of V. dahliae and nondefoliating isolates. The markers associated with resistance QTL may facilitate th
JIANG Feng,ZHAO Jun,ZHOU Lei,GUO WangZhen & ZHANG TianZhen National Key Laboratory of Crop Genetics & Germplasm Enhancement,Cotton Research Institute,Nanjing Agricultural University,Nanjing 210095,China
关键词:UPLANDCOTTONVERTICILLIUMWILTGENETIC
共1页<1>
聚类工具0