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1.
上位性和QTL×环境互作对水稻(Oryza sativa L.)抽穗期的影响   总被引:1,自引:0,他引:1  
水稻抽穗期是重要的农艺性状之一,对水稻品种的地理分布和适应性起到关键性作用。适宜的抽穗期是获得高产的前提。因此确定水稻抽穗期的遗传基础在育种计划中具有重要的意义。本研究用一套来源于亲本IR64/Azucena的双单倍体(DH)群体在两个种植季节的试验资料,用基于混合线性模型的复合区间作图方法,对水稻抽穗期QTL的加性、上位性及其与环境互作效应进行了研究。结果表明共有14个QTL影响水稻抽穗期,它们分布在除第5和第9条染色体外的10条染色体上,有8个位点携带单位点效应,5对位点携带双位点互作效应,2个单位点和1对双位点存在与环境的互作,所有效应值介于1.179~2.549天之间,相应的贡献率为1.04%~4.84%。基于所估算的QTL效应值,本研究预测了两个亲本和两个极端型品系的遗传效应值,并讨论了影响遗传效应值与实际观测值偏差的可能原因,以及研究群体所具有的遗传潜力。对水稻抽穗期QTL的定位结果与前人研究基本一致,并进一步证实了上位性和QE互作效应是水稻抽穗期的重要遗传基础。  相似文献   

2.
水稻抽穗期是重要的农艺性状之一,对水稻品种的地理分布和适应性起到关键性作用。适宜的抽穗期是获得高产的前提。因此确定水稻抽穗期的遗传基础在育种计划中具有重要的意义。本研究用一套来源于亲本IR64/Azucena的双单倍体(DH)群体在两个种植季节的试验资料,用基于混合线性模型的复合区间作图方法,对水稻抽穗期QTL的加性、上位性及其与环境互作效应进行了研究。结果表明共有14个QTL影响水稻抽穗期,它们分布在除第5和第9条染色体外的10条染色体上,有8个位点携带单位点效应,5对位点携带双位点互作效应,2个单位点和1对双位点存在与环境的互作,所有效应值介于1.179~2.549天之间,相应的贡献率为1.04%~4.84%。基于所估算的QTL效应值,本研究预测了两个亲本和两个极端型品系的遗传效应值,并讨论了影响遗传效应值与实际观测值偏差的可能原因,以及研究群体所具有的遗传潜力。对水稻抽穗期QTL的定位结果与前人研究基本一致,并进一步证实了上位性和QE互作效应是水稻抽穗期的重要遗传基础。  相似文献   

3.
栽培稻(O.sativa)品种间杂种的不育性是由F1花粉不育基因座的等位基因互作引起的。前文报道了S-E3、S-E2和S-E53个花粉不育基因座,本文把这3个基因座分别重新命名为S-a、S-b和S-c。本研究发现了另外3个花粉不育基因座,分别命名为S-d、S-e和S-f。分析了11个品种在这6个花粉不育基因座的基因型。所有被测品种在S-a上均带S^j/S^j。在其余5个花粉不育基因座上,籼型品种广  相似文献   

4.
Yuan Guo  Delin Hong 《遗传学报》2010,37(8):533-544
To identify quantitative trait loci (QTLs) controlling panicle architecture in japonica rice, a genetic map was constructed based on simple sequence repeat (SSR) markers and 254 recombinant inbred lines (RILs) derived from a cross between cultivars Xiushui 79 and C Bao. Seven panicle traits were investigated under three environments. Single marker analysis indicated that a total of 27 SSR markers were highly associated with panicle traits in all the three environments. Percentage of phenotypic variation explained by single locus varied from 2% to 35%. Based on the mixed linear model, a total of 40 additive QTLs for seven panicle traits were detected by composite interval mapping, explaining 1.2%-35% of phenotypic variation. Among the 9 QTLs with more than 10% of explained phenotypic variation, two QTLs were for the number of primary branches per panicle (NPB), two for panicle length (PL), two for spikelet density (SD), one for the number of secondary branches per panicle (NSB), one for secondary branch distribution density (SBD), and one for the number of spikelets per panicle (NS), respectively. qPLSD-9-1 and qPLSD-9-2 were novel pleiotropic loci, showing effects on PL and SD simultaneously. qPLSD-9-1 explained 34.7% of the phenotypic variation for PL and 25.4% of the phenotypic variation for SD, respec- tively. qPLSD-9-2 explained 34.9% and 24.4% of the phenotypic variation for PL and SD, respectively. The C Bao alleles at the both QTLs showed positive effects on PL, and the Xiushui 79 alleles at the both QTLs showed positive effects on SD. Genetic variation of panicle traits are mainly attributed to additive effects. QTL × environment interactions were not significant for additive QTLs and additive × additive QTL pairs.  相似文献   

5.
水稻株高上位性效应和QE互作效应的QTL遗传研究   总被引:3,自引:0,他引:3  
利用基因混合模型的QTL定位方法研究了由籼稻品种IR64和粳稻品种Azucena杂交衍生的DH群体在4个环境中的QTL上位性效应和环境互作效应,结果表明,上位性是数量性状的重要遗传基础,并揭示了上位性的几个重要特点,所有的QTL都参与了上位性效应的形成,64%的QTL还具有本身的加性效应,因此传统方法对QTL加性效应的估算会由于上位性的影响而有偏,其他36%的QTL没有本身的加性效应,却参与了48%的上位性互作用,这些位点可能通过诱发和修饰其他位点而起作用,上位性的特点还包括,经常发现了一个QTL与多个QTL发生互作;大效应的QTL也参与上位性互作;上位性互作受环境影响,QTL与环境的互效应比QTL的主效应更多地被检测到,表明数量性状基因的表达易受环境影响。  相似文献   

6.
水稻长穗颈高秆隐性基因eui2的遗传及其微卫星分析   总被引:39,自引:1,他引:38  
从水稻(Oryza sativa L.)协青早B的辐射M2群体中获得以最上节间伸长特征的长穗颈高秆突变系协青早eB-1和协青早eB-2,与原品系协青早B的秆性状相比,协青早eB-2的第一节间长占总秆长的65.3%,其第一节间的增长量占秆长总增长量的90.2%;协青早eB-1的第一节间长占总秆长的54.8%,其第一节间的增长量占秆长总增长量的53.3%,遗传分析表明:协青早eB-2中的长穗颈高秆性状各由一对隐性基因控制,二之间互不等位。与已报道的eui基因的等位性测验表明:协青早eB-2的eui基因与其不等位,为新的长穗颈高秆隐性基因,命名为eui2,协青早eB-1的eui基因则与其等位。微卫生分析表明:eui2基因与第10第染色体的RM258、RM269、RM271和RM304连锁,其遗传距离分别为12.0cM、12.9cM、35.1cM、1.4cM。由此推断,eui2基因位于第10染色体长臂的中部。  相似文献   

7.
水稻叶片叶绿素和过氧化氢含量的QTL检测及上位性分析   总被引:21,自引:1,他引:21  
研究水稻叶片叶绿素和过氧化氢含量的遗传规律,对探讨光合代谢产物遗传规律和开展高产育种具有重要指导意义。利用由日本晴/Kasalath∥日本晴的杂交组合衍生的98个回交重组自交家系(BC1F9)所组成的BIL(backcross inbred lines)群体,在第1、2、3和10染色体上分别检测出5个与叶绿素含量相关的QTL和2个影响剑叶过氧化氢含量的QTL,其中位于第1染色体的RFLP标记C86和C813之间的q-Chll对叶绿素含量的影响最为显著,对表型变异的贡献率达22%,其增效基因来自粳稻品种日本晴;同时在该区间检测到1个与剑叶过氧化氢含量相关的QTL:q-H2O2I,对过氧化氢含量的减效基因来自日本晴品种。上位性分析结果显示影响叶绿素含量及过氧化氢含量的非等位QTL之间存在显著的上位性效应。具有上位性效应的QTL分布于第2、6、11和12染色体上,未检测到与q-Chll或q-H2O2I互作的位点。暗示日本晴品种的RFLP标记C86和C813之间存在1个能够提高叶绿素含量,同时又能降低过氧化氢含量的主效QTL,其加性效应显著而不存在上位性效应。  相似文献   

8.
钠离子(Na+)、钾离子(K+)含量和Na+/K+值是影响水稻耐盐性的关键指标。水稻的耐盐性由数量性状位点(QTL)控制,目前在水稻苗期已经鉴定了大量Na+、K+含量和Na+/K+的QTL,但在田间生长期鉴定的QTL数量较少。该研究以粳稻‘东农425’和‘长白10’杂交衍生的重组自交系(RIL)群体为材料,对田间试验条件下的盐胁迫和对照进行联合分析,在水稻不同发育时期鉴定Na+、K+含量和Na+/K+的发育动态QTL,并采用混合线性模型(MCIM)分析各QTL的加性(A)和上位性(AA)及其与环境的互作效应(QE)。结果表明:(1)盐胁迫条件下,亲本和RIL群体的茎Na+含量(SNC)、茎Na+/K+(SN/K)、叶Na+含量(LNC)和叶Na+/K+(LN/K)在各时期均高于对照,茎K+含量(SKC)和叶K+含量(LKC)均低于对照,对照条件下双亲性状在大多数时期均无显著差异;盐胁迫下两个亲本的多个性状在不同发育时期存在显著差异,其中,SNC和LKC在4个时期差异显著,SN/K和LN/K在3个时期差异显著,SKC和LNC在2个时期差异显著。(2)采用非条件和条件QTL作图方法,共检测到13个加性QTL和11对上位性QTL,其中包括14个非条件QTL和10个条件QTL;而13个加性QTL中有8个,11对上位性QTL中有7个具有环境互作效应。(3)qSKC5 1在水稻4个发育阶段均被检测到,其在调控水稻耐盐性中发挥着重要作用。SNC、SN/K和LN/K的所有QTL均检测到加性×环境互作效应,2对控制SNC的上位性QTL均检测到上位性×环境互作效应,说明这些性状的QTL对盐环境较为敏感。研究发现,田间生长条件下水稻Na+、K+含量和Na+/K+的QTL表达与发育时期密切相关;水稻田间生长条件下耐盐性的遗传非常复杂,在利用分子标记辅助选择(MAS)培育耐盐水稻新材料应该考虑上位性和环境互作效应。  相似文献   

9.
序列比较说明、重复DNA顺序pRRD9^*与水稻叶绿体基因组中编码QB蛋白的psbA基因存在高度的同源。用pRBD9亚克隆片段pRRD9R和片段pRRD9L对水稻的叶绿体和核DNA进行Southern杂交分析,揭示了psbA基因同源片段在某个进化时期由叶绿体基因组转移到水稻核基因组,而且两者在水稻进化过程中的变异程度存在明显的差异。  相似文献   

10.
光(温)敏核雄性不育水稻(Photoperiod/temperature-sensitivegenicmale-sterilerice,简称P/TGMR)89025和培矮64s在秋季从不育阶段经半不育阶段向可育阶段转变进程中,对其花粉母细胞形成期(Ⅴ)、花粉母细胞减数分裂期(Ⅵ)的幼穗和成熟花药(Ⅷ)中过氧化物酶(Peroxidse,简称POD)、超氧物歧化酶(Superoxidedismutase,简称SOD).和过氧化氢酶(Catalase,简称CAT)活性测定表明,幼穗和花药相同发育时期的酶活性随正常花粉的比率升高而增加,但以成熟花药中增加最多.并伴有丙二醛(Malonaldehyde,简称MDA)含量减少.表明自由基代谢的变化可能与光(温)敏核雄性不育水稻花粉败育有关,且自由基代谢变化在幼穗发育中期即已开始.  相似文献   

11.
不同环境条件下稻米透明度的发育遗传分析   总被引:19,自引:3,他引:16  
采用条件和非条件数量遗传分析方法,研究了不同环境条件下灿稻稻米透明度的发育遗传规律。稻米4个发育时期两年数据的分析结果表明,开花受精后第8~21天的灌浆中期和后期遗传效应表达对稻米透明度的影响最大。控制稻米透明度性状表现的三倍体胚乳核基因、细胞质基因和二倍体母体植株核基因效应在不同环境下存在着表达水平上的差异。条件遗传分析的结果还表明一些遗传效应存在着发育时期间断表达的现象。基因加性效应和细胞质效应以及相应的环境互作效应在稻米透明度性状发育中起着主要作用,选择可以取得良好的改良效果。浙南3号和1391等亲本可以提高后代的稻米透明度。  相似文献   

12.
Intron length polymorphisms (ILPs) have been used as geneticmarkers in some studies. However, a systematic investigationand large-scale exploitation of ILP markers has not been reported.In this study, we performed a genome-wide search of ILPs betweentwo subspecies (indica and japonica) in rice using the draftgenomic sequences of cultivars 93-11 (indica) and Nipponbare(japonica) and 32 127 full-length cDNA sequences of Nipponbareobtained from public databases. We identified 13 308 putativeILPs. Based on these putative ILPs, we developed 5811 candidateILP markers via electronic-PCR with primers designed in flankingexons. We further conducted experiment to verify the candidateILP markers. Out of 215 candidate ILP markers tested on 93-11,Nipponbare and their hybrid, we successfully exploited 173 codominantILP markers. Further analyses on 10 rice accessions showed thatthese ILP markers were widely applicable and most (71.1%) exhibitedsubspecies specificity. This feature suggests that ILPs wouldbe useful for the studies of genome evolution and inter-subspeciesheterosis and for cross-subspecies marker-assisted selectionin rice. In addition, by testing 51 pairs of the ILP primerson five Gramineae plants and three dicot plants, we found anotherdesirable characteristic of rice ILP markers that they havehigh transferability to other plants.  相似文献   

13.
水稻籼粳交DH群体收获指数及源库性状的QTL分析   总被引:2,自引:0,他引:2  
以 1个水稻籼粳交 (圭 6 30 0 2 4 2 8)来源的DH群体为材料 ,利用 1张含有 2 32个标记的RFLP连锁图谱和基于混合线性模型的定位软件QTLMapper1 0对水稻收获指数及生物量、籽粒产量、库容量和株高 5个性状进行QTL分析 ,共检测到 2 1个主效应QTLs和 9对上位性互作位点。其中 ,控制籽粒产量的 3个QTLs合计贡献率为 4 2 % ,LOD值为 7 10 ;这 3个QTLs或者与收获指数的QTL同位 ,或者与生物量的QTL同位 ,且加性效应的方向一致 ,从而揭示了“籽粒产量 =生物量×收获指数”的遗传基础所在。控制收获指数的 4个QTLs合计贡献率为 4 6 % ,LOD值为 10 3;控制生物量的 4个QTLs合计贡献率为 6 4 % ,LOD值为 14 0 9;收获指数的 4个QTLs与生物量的 4个QTLs均不同位。因此 ,通过基因重组 ,可能实现控制收获指数和生物量的增效基因的聚合 ,由此获得收获指数和生物量“双高”的基因型。检测到 5个株高QTLs,其合计贡献率为 6 4 % ,LOD值为 11 6 2 ;其中 ,有 3个效应较小的QTLs与生物量、库容量和 或籽粒产量QTLs同位 ,且同位QTLs的加性效应方向一致 ;未发现株高QTLs与收获指数QTLs的同位性。由此表明 ,株高与“源 流 库”概念中的“源”和“库”在遗传上有一定程度的关联 ,而与“流”无关联。此外还发现 ,在上述同位性QTL  相似文献   

14.
To investigate the genetic background for aluminum (Al) tolerance in rice, a recombinant inbred (RI) population, derived from a cross between an Al-sensitive lowland indica rice variety IR1552 and an Al-tolerant upland japonica rice variety Azucena, was used in culture solution. A molecular linkage map, together with 104 amplified fragment length polymorphism (AFLP) markers and 103 restriction fragment length polymorphism (RFLP) markers, was constructed to map quantitative trait loci (QTLs) and epistatic loci for Al tolerance based on the segregation for relative root length (RRL) in the population. RRL was measured after stress for 2 and 4 weeks at a concentration of 1mM of Al3+ and a control with a pH 4.0, respectively. Two QTLs were detected at both the 2nd and the 4th weeks on chromosomes 1 and 12 from unconditional mapping, while the QTL on chromosome 1 was only detected at the 2nd stress week from conditional mapping. The effect of the QTL on chromosome 12 was increased with an increase of the stress period from 2 to 4 weeks. The QTL on chromosome 1 was expressed only at the earlier stress, but its contribution to tolerance was prolonged during growth. At least one different QTL was detected at the different stress periods. Mean comparisons between marker genotypic classes indicated that the positive alleles at the QTLs were from the Al-tolerant upland rice Azucena. An important heterozygous non-allelic interaction on Al tolerance was found. The results indicated that tolerance in the younger seedlings was predominantly controlled by an additive effect, while an epistatic effect was more important to the tolerance in older seedlings; additionally the detected QTLs may be multiple allelic loci for Al tolerance and phosphorus-uptake efficiency, or for Al and Fe2+ tolerance. Received: 29 July 1999 / Accepted: 13 October 1999  相似文献   

15.
水稻米粒延伸性的遗传剖析   总被引:5,自引:0,他引:5  
以籼稻ZYQ8与粳稻JX17为亲本的DH群体作为研究材料,考察DH群体及双亲的米粒延伸率相关性状,并使用该群体的分子连锁图谱进行QTL分析.共检测到14个与稻米延伸性有关的QTL,包括2个粒长QTL、7个饭粒长QTL和5个米粒延伸率QTL,分别位于第1、2、3、5、6、7、10、11和12染色体.所有QTL的LOD值介于2.26~9.25,分别解释性状变异的5.31%~17.21%.在第3染色体上的G249~G164、第6染色体上的G30~RZ516和第10染色体上的G1082~GA223区间同时检测到控制饭粒长和米粒延伸率的QTL.米粒延伸性受多基因控制,Wx基因与位于第6染色体上的qCRE-6的G30~RZ516区间相近,对米饭的延伸性具重要影响.  相似文献   

16.
用RFLP标记剖析水稻穗颈维管束及穗部性状的遗传基础   总被引:7,自引:0,他引:7  
采用籼、粳亚种间杂种F1(圭630×02428)花药培养获得的DH群体,对水稻穗颈大、小维管束数和倒数第2节间大、小维管束数等4个维管束性状,以及一、二次枝梗数,每穗颖花数3个穗部性状进行QTL分析,共检测到16个QTLs,其中有7个QTLs的加性效应较大,单个QTL的贡献率在20%以上。发现有4个QTLs成簇分布于第1染色体从RZ776到C11的大约35cM的区段上,来源于亲本"圭630"的这一染色体区段对穗颈大维管束、第2节间大维管束、第2节间小维管束和二次枝梗数4个性状的表达均具有增效作用。还讨论了利用分子标记辅助选择聚合增效QTLs、实现穗颈维管束性状遗传改良的策略。  相似文献   

17.
To understand the development of rice leaf blades,we identified a new rolled-leaf mutant,w32,from indica cultivar IR64 through EMS mutagenesis. The mutant showed a stable rolled-leaf phenotype throughout the life cycle. Two F2 populations were developed by crossing w32 to cultivar IR24 and PA64. Genetic analysis showed that the rolled-leaf phenotype was controlled by a single recessive gene. To determine the location of the gene,bulked segregant analysis was carried out using mutant and wild-type DNA pools ...  相似文献   

18.
水稻新种质资源的耐盐性鉴定评价   总被引:16,自引:4,他引:16  
用0.5%的NaCl溶液作灌溉水,对2000-2002年江苏省水稻区域试验参试品系和近年引进的部分水稻种质资源进行苗期耐盐性鉴定.结果表明:株高矮化是苗期盐胁迫的一种形态特征;耐盐性鉴定易受环境影响;就整体而言,籼稻种质资源的苗期耐盐性好于粳稻;综合2年结果,籼156和64608两种质资源的苗期耐盐性较强.  相似文献   

19.
基于DUS测试的上海粳稻地方品种遗传多样性分析   总被引:4,自引:0,他引:4  
利用水稻DUS测试指南(2012版)中的38个水稻标准品种和52个基本测试性状对上海地区的172个粳稻地方品种进行遗传多样性分析,并与14个上海地区选育的申请品种保护的粳稻品种作比较。结果表明:地方品种表型性状共检测到176个等位变异,平均每个测试性状检测到3.6667个,变幅介于1~8个。Shannon's多样性指数(H')平均值为0.6834,变幅介于0~1.9327,77.08%的性状存在3个及以上的等位变异;地方品种的等位变异数、每个性状的等位变异数及其变异幅度、多样性指数平均值等均大于现代育成品种,在外观形态上,地方品种的遗传多样性比现代育成品种更丰富。利用UPGMA法进行聚类分析发现在相似系数为0.53时,可将186个粳稻品种分为3个类(亚)群,现代育成品种单独组成一个亚群;而主坐标分析将186个粳稻品种明显的分为地方品种和现代育成品种两大区。地方品种具有丰富的多样性,与现代育成品种具有明显的形态差异,可为今后粳稻育成品种的改良提供更多的形态基础。  相似文献   

20.
Mapping QTLs for phosphorus deficiency tolerance in rice (Oryza sativa L.)   总被引:23,自引:0,他引:23  
 The amplified fragment length polymorphism (AFLP) technique combined with selective genotyping was used to map quantitative trait loci (QTLs) associated with tolerance for phosphorus (P) deficiency in rice. P deficiency tolerant cultivar IR20 was crossed to IR55178-3B-9-3 (sensitive to P-deficiency) and 285 recombinant inbred lines (RILs) were produced by single-seed descent. The RILs were phenotyped for the trait by growing them in P-sufficient (10.0 mg/l) and P-deficient (0.5 mg/l) nutrient solution and determining their relative tillering ability at 28 days after seeding, and relative shoot dry weight and relative root dry weight at 42 days after seeding. Forty two of each of the extreme RILs (sensitive and tolerant) and the parents were subjected to AFLP analysis. A map consisting of 217 AFLP markers was constructed. Its length was 1371.8 cM with an average interval size of 7.62 cM. To assign linkage groups to chromosomes, 30 AFLP and 26 RFLP markers distributed over the 12 chromosomes were employed as anchor markers. Based on the constructed map, a major QTL for P-deficiency tolerance, designated PHO, was located on chromosome 12 and confirmed by RFLP markers RG9 and RG241 on the same chromosome. Several minor QTLs were mapped on chromosomes 1, 6, and 9. Received: 21 April 1998 / Accepted: 9 June 1998  相似文献   

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