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1.
【目的】定位徐州142无絮(XZ142w)突变体的短绒控制基因n2。【方法】以陆地棉(Gossypium hirsutum L.)徐州142(XZ142)×XZ142w的F2群体为研究对象,利用108个简单重复序列(Simple sequence repeat,SSR)标记对n2进行初步定位,再根据2个亲本材料中有单核苷酸多态性(Single nucleotide polymorphic,SNP)的差异基因设计50对SNP引物,用高分辨率熔解曲线(High resolution melting,HRM)技术从中筛选在亲本间有多态性的SNP引物,并用于后代的基因分型。【结果】利用108个SSR标记将n2初步定位在26号染色体的20.2c M的遗传区间内;用HRM技术筛选到9对亲本间有多态性的SNP引物,成功实现基因分型;并结合以SSR构建的连锁图谱,将n2的遗传区间缩小为19.5 c M,n2与最近的SNP标记Cricaas20158遗传距离为5.5 c M,且遗传图谱上的标记与四倍体陆地棉测序物理图谱基本一致。【结论】HRM技术可用于棉花中的SNP检测和n2基因的定位。  相似文献   

2.
【目的】定位棉花纤维品质性状相关的数量性状位点(Quantitative trait locus,QTL)。【方法】以陆地棉高强纤维品系中棉所679和纤维品质一般的农垦5号为亲本构建包含200个单株的F2群体及对应的F2:3家系群体,对2个群体的纤维长度、断裂比强度等5个纤维品质性状进行检测。用6 688对简单重复序列(Simple sequence repeat, SSR)引物在双亲间筛选,得到149对多态性引物,以F2为作图群体,使用QTL IciMapping软件进行连锁图谱构建,并对F2及F2:3群体进行QTL定位。【结果】根据F2群体基因型信息构建了1张包含119个标记、28个连锁群、总长为1 173.5 cM(centiMorgan)的遗传连锁图谱。分别在F_2、F2:3群体中检测到9个和11个与纤维品质性状相关的QTLs,这些QTLs分布在11个连锁群上。其中F2群体的qFL-D11-1、q BT-D11-1与F2:3群体的qFL-D11-1、q MIC-D11-1均定位在标记DPL0062与HAU0423之间,推测这些位点可能是控制纤维品质性状的重要QTL。【结论】利用多个群体进行QTL定位有益于发现稳定的QTL位点,控制纤维品质性状的基因可能成簇存在,为挖掘纤维品质性状相关基因及分子标记辅助育种奠定基础。  相似文献   

3.
[Objective] It is of great significance for shaping plant architecture, strengthening the research on cotton fruiting branch internode length. [Method] In this research, two upland cotton materials Zhong2549(long branch internode) and Zhong5081(short branch internode) were used for the study of the endogenous hormone differences by measuring endogenous hormone of the fruiting branch internode of Zhong2549 and Zhong5081; and for the study of the influence to the internode length by spraying exogenous hormone to Zhong2549 and Zhong5081. The paraffin section technique was used to detect the cell morphology of the fruiting branch internode of Zhong2549 and Zhong5081. [Result] that the content of endogenous hormone IAA, GA3 and ABA in Zhong2549 were apparently higher than its in Zhong5081. Spraying exogenous hormone IAA, GA3 and ABA promoted the fruiting branch internode elongation. The section result showed that the cell size of Zhong549 was bigger than Zhong5081, and the cell density of Zhong2548 was less than Zhong5081. These indicated that the endogenous hormones which affect the fruiting branch internode length and the differences of different length fruiting branch internode in cellular level. [Conclusion] This study can provide some foundation and reference for the later research.  相似文献   

4.
以海陆渐渗系13-1×辽棉12组配的195个单株的F2群体为作图群体,利用SSR(Simple sequence repeat)标记和Join Map3.0软件构建遗传连锁图谱,构建的遗传连锁图谱包含39个多态性标记、13个连锁群,该图谱总长1174.4 c M,覆盖棉花基因组的26.7%,利用Ici Mapping完备区间作图法对F2:3家系进行相关性状的QTL定位,共检测到30个叶绿素荧光参数、7个叶片干物质含量、6个叶面积指数、1个叶绿素含量的QTL位点,分布在8条染色体上,在同一染色体共标记区间内存在多个性状的QTL,部分位点加性遗传效应来自同一亲本,与干物质含量、最大光化学效应相关的QTL位点在3条染色体上不同标记区间内重复出现,与叶面积指数、最大光化学效应相关的QTL位点在4条染色体上不同标记区间内重复出现,表现出遗传上的一因多效或基因连锁效应,可用于高光效聚合育种。  相似文献   

5.
[Objective] This article aims to provide a theoretical basis for molecular marker-assisted breeding by quantitative trait loci (QTLs) mapping and gene function annotation of fiber quality. [Method] F2 populations were constructed using the two cotton cultivars (lines), CCRI 49 and 396289, as parents. Based on high-density genetic maps, the F2:3 families with three environments were included in the F2 population. The QTL mapping of seven fiber quality traits including fineness and maturity, etc., was performed using the Clusters of orthologous groups (COG), Gene ontology (GO), and Kyoto encyclopedia of genes and genomes (KEGG) databases to annotate QTLs for gene function. [Result] A total of 157 QTLs related to fiber quality were obtained and distributed on 20 chromosomes. QTLs with more traits on A03, A04, D02, A11 and D07 chromosomes clustered and may be the key chromosomes controlling fiber quality traits. A total of 13 stable QTLs were obtained, of which qFL-A03-1 and qFin-A11-4 were repeated in three environments, and nine other QTLs were repeated in two environments. And 4 763 candidate genes were annotated, with 2 416, 4 188, and 2 512 genes being annotated in COG, GO, and KEGG, respectively. Among them, 429 genes were annotated in stable QTLs. Some of these genes may be closely related to fiber quality. [Conclusion] The high-density genetic map obtained by high-throughput sequencing can help to obtain more QTLs, which is beneficial to the screening of candidate genes related to fiber quality and the improvement of fiber traits, and improves the breeding efficiency.  相似文献   

6.
[Objective] The purpose of this study was to map QTLs for yield, maturity, and fiber quality traits of cotton interspecific hybrid populations and to mine favorable alleles from the cotton genome for QTL fine mapping, gene cloning, and molecular marker-assisted selection. [Method] Four BC1F1 populations, E(E3), E(3E), (E3)E, and (3E)E, were developed by crossing sea island cotton 3-79 ("3") and upland cotton 'Emian 22' ("E"), and with "Emian 22" as the recurrent parent. BC1F2 populations derived from BC1F1 populations were phenotyped to allow mapping of QTLs for yield-, maturity-, and fiber quality-related traits on chromosomes showing segregation distortion. [Result] A normal distribution test indicated that six fiber quality-related traits, except for the micronaire value in E (E3) and the short fiber ratio in all populations, followed a normal distribution pattern; in contrast, earliness-related traits were not normally distributed in all populations, which suggests that genotype-environment interactions have strong effects on maturity-related traits. Using composite interval mapping, 47 QTLs were detected on three chromosomes (2, 16, and 18): 15 in (E3)E, 13 in (3E)E, 12 in E(E3), and 7 in E(3E), with the phenotypic variation explained (PVE) ranging from 8.8%–30.9%. A total of 27 fiber-related QTLs were discovered, with the PVE ranging from 9.0%–30.9%. Five yield-related QTLs (PVE = 8.8%–17.4%) and 13 maturity-related QTLs (PVE = 9.4%–19.4%) were also identified. [Conclusion] Comparison analysis showed that most QTLs in our study were consistent with the MetaQTL, including QTLs for boll weight, fiber length, fiber length uniformity, lint percentage, and micronaire value on chromosome 2; QTLs for fiber length, fiber strength, and fiber length uniformity on chromosome 16; and QTLs for boll weight, date of boll opening, fiber length, fiber strength, fiber length uniformity, and micronaire value on chromosome 18. Several detected QTLs in our study were not found in the MetaQTL, such as QTLs for date of boll opening and lint percentage on chromosome 16 and a QTL for the date from seedling to flowering stages on chromosome 18. These newly identified QTLs may provide novel insights for cotton QTL analysis.  相似文献   

7.
[Objective] The aim of this study was to map quantitative trait loci (QTLs) of Verticillium wilt resistance in cotton. [Method]In this study, with the cultivar Lumianyan 28(Gossypium hirsutumL.) as the recipient parent and the F1generation obtained from the cross Hai7124 (G. barbadense) and TM-1(G. hirsutumL.) as the donor parent, an interspecific advanced backcross population was constructed. Compared with the integrated high density genetic linkage map published, simple sequence repeat(SSR) markers of polymorphism were used to construct genetic linkage map. QTLs detection was conducted by composite interval mapping method in field and disease nursery. [Result] 216 simple sequence repeated (SSR) markers of polymorphism were assigned to 26 Chromosomes with a total map distance of 3 380 cM and an average distance of about 15.77 cM between two adjacent markers. Six QTLs located on 6 chromosomes had been detected and could explain phenotypic variance with 8.56%~20.26%. Five of Six QTLs were consistent with the previous study. Moreover, one novel QTL which located on Chromosome 1 was detected in this study. These results maybe helpful for the marker-assisted development of new cultivars which were resistant to Verticillium wilt. [Conclusion] Six QTLs were detected, one of them is a new QTL on chromosome 1.  相似文献   

8.
[Objective] The purpose of this study is to supply basis for selecting strong heterosis hybrid and the feasibility of F2 utilization, by evaluating yield heterosis and fiber quality traits of hybrid F1 and F2 generated by transgenic Bt varieties in upland cotton. [Method] Ten upland cotton varieties (lines) with good comprehensive characteristics were selected to produce 10 crosses, and four of them with better competitive heterosis (CH) in yield were screened out to analyze the lint yield and fiber traits of F1 and F2. [Result] The results indicated there was a strong CH in yield of F1, but the yearly variation was large. Hybrids performed better in the poor production year. The CH in yield decreased obviously in most of the F2 combinations. Further analysis showed that the decrease of boll weight was the main cause of drop of yield CH in F2. The fiber quality index in F2 showed a downward trend compared with F1, and the coefficient of range and variation(CV) increased. The coefficient of variation of quality traits was much lower than that of yield components, with a trend of F1 < SCRC 28 (CK) and F2 > F1. The CH of lint yield and fiber traits changed between F1 and F2 in different combinations. We screened out a combination with higher CH of yield in both F1 and F2, and with less decreased yield CH, fine fiber quality and light separation in F2. [Conclusion] The hybrids generated by transgenic Bt varieties in upland cotton characterized by strong adversity resistance and yield stability. Fine fiber quality and light separation in F2 came from crosses with the parents of fine fiber quality and small differences. So, it is possible for breedersto select valuable F2 combinations in production.  相似文献   

9.
[Objective] Dimorphic InDel markers can be used for cotton variety identification and purity detection, to improve the accuracy and efficiency of cotton seed testing, and to play a role in molecular breeding of cotton. [Method] Based on the whole genome sequencing of 121 cotton varieties from different sources, the InDel markers with high polymorphism were developed according to polymorphism information content(PIC) and were applied in the genetic distance analysis and cluster analysis by using 66 cotton varieties in China. [Result] Totally 10 967 InDel were identified based on the next generation sequencing data of 121 cotton varieties. Among the 85 pairs of InDel primers synthesized, 64 were selected including 35 from At group and 29 from Dt group. The minimum average allelic frequency(MAF) of At and Dt chromosomes were 0.45 and 0.32, respectively, while the PIC were 0.49 and 0.40, respectively. The genetic distances of the 66 cotton varieties ranged from 0.04 to 0.65 centimorgan (cM), with an average of 0.39 cM. The two varieties with the largest genetic distance were Simian 3 and CCRI 36, and the two varieties with the smallest genetic distance were Xumian 18 and Xuza 3. [Conclusion] The 64 cotton dimorphic InDel markers can effectively reveal the relationships among varieties based on the genetic distance, and distinguish cotton varieties from different sources, which has certain theoretical significance and application value.  相似文献   

10.
滴施缩节胺与氮肥对棉花生长发育及产量的影响   总被引:3,自引:0,他引:3  
张特  王蜜蜂  赵强 《作物学报》2022,(2):396-409
为探明缩节胺与氮肥对棉花农艺性状的互作效应,试验采用双因素随机区组设计,设置150 (N1)、300 (N2)、450 kg hm–2 (N3) 3个施氮(纯N)水平, 525 (D1)、1050 (D2)、2100 g hm–2 (D3) 3个缩节胺水平,交互共9个处理。研究滴施不同剂量氮肥与缩节胺对棉花农艺性状、棉铃时空分布、干物质积累及分配、产量及纤维品质的影响。结果表明,缩节胺与氮肥互作效应对棉花农艺性状影响显著,在低氮状态下缩节胺对棉花生长的延缓作用减弱甚至消失。N1处理下, D3处理相比D1处理棉株的株高、果枝始节高、第4果枝长、第7果枝长分别增加12.07、1.54、1.28和1.20cm。在正常或高氮状态下缩节胺对棉花生长产生一定的延缓作用,其控制效果并不随缩节胺剂量增加而增强,N3处理下,D3处理相比D1处理棉株的株高、第1果枝长、第2果节间平均长度分别降低1.05、1.68和1.52cm。棉株的株高、茎粗与果枝数随施氮量增加而增加, N3处理相比N1处理分别增加3.30 cm、0.75 mm与0.29台;其果枝长与果节间长在不同施氮量间无明显差异。D2处理相比D1与...  相似文献   

11.
毛棉苗期抗旱性状的QTL定位   总被引:2,自引:1,他引:1  
【目的】通过分析毛棉苗期抗旱相关性状的数量性状位点(Quantitative trait locus,QTL),以期检测稳定的主效QTL,促进栽培品种抗旱性状遗传改良及提高抗旱育种效率。【方法】以四倍体野生种毛棉(Gossypium tomentosum)和陆地棉品种中棉所12(CCRI 12)的种间杂种F2及其F2:3家系为研究材料,用于基因型分型的F2有188个系,用于表型分型的F2:3家系有149个株系。分别在干旱胁迫和正常灌水2个环境下调查表型数据。采用复合区间作图法对F2:3家系苗期相关性状抗旱系数进行QTL定位。【结果】对苗期相关性状抗旱系数的QTL定位分析,共得到16个QTL,其中与株高、叶片数、叶绿素含量、脯氨酸含量、丙二醛含量抗旱系数相关的QTL分别有5个、1个、3个、3个、4个,分布在13条染色体上。来自毛棉的5个加性QTL分别为qSHDC-19-1、qSHDC-19-2、qSLNDC-5-1、qMDADC-24-1、qMDADC-24-2,其加性效应值为0.10~0.22,解释变异9.4%~25.8%。【结论】这些与抗旱相关的QTL有助于棉花抗旱分子标记辅助选择。  相似文献   

12.
[Objective] The purpose of this study was to map quantitative trait loci (QTL) related to chlorophyll content based on Soil and Plant Analyzer Development (SPAD) readings in cotton. [Method] The 195 BILs (Backcross Inbred Lines) were produced by a cross between Gossypium barbadense Hai 7124 and G. hirsutum CRI 36, using CRI 36 as the recurrent parent for backcrossing with F1 to produce BC1F1, followed by seven generations of selfing. The genetic linkage map was constructed in a previous study. QTLs of chlorophyll SPAD value in the first flowering and boll development stages were identified with inclusive composite interval mapping (ICIM) method of the BIP and MET models in IciMapping 4.1 software, respectively. [Result] In total, nine chlorophyll SPAD reading QTLs were identified on 6 chromosomes. The q-SPAD-A11-1 detected at the first flowering stage overlapped with q-SPAD-A11-2 detected at the boll development stage, contributing 5.08% and 5.75% of the phenotypic variation, respectively. The q-SPAD-D08-2 physical position ranged from 48.71 to 53.65 Mb on chromosome D08, which overlapped with a chlorophyll content QTL detected in a previous study. [Conclusion] The novel stable QTLs, q-SPAD-A11-1 and q-SPAD-A11-2 detected in this study provide an important piece of information for fine mapping chlorophyll content in cotton.  相似文献   

13.
【目的】精细定位和克隆陆地棉光敏雄性不育基因。【方法】从陆地棉中040029的航天诱变后代中选育出新型光敏雄性不育系中9106,以中9106与11个陆地棉材料配制杂交组合,初步分析了中9106的杂种优势。以中9106为母本与陆地棉乐土603构建遗传分离群体F1、F2,分析不育性状的遗传特征。利用集团分离分析法筛选简单序列重复(Simple sequence repeat,SSR),并在包含186个单株的中9106×乐土603 F2群体中用上述SSR初步定位不育基因。【结果】中9106为母本×陆地棉乐土603的F1单株育性均表现正常,而F2群体中的可育单株数∶不育单株数符合3∶1的分离比,推测中9106的不育性状受1对隐性核基因控制。利用集团分离分析法从16 544对SSR中筛选到18对与该不育基因连锁的标记。利用中9106×乐土603的F2群体和18对SSR标记,将不育基因定位于D12染色体,位于标记NAU3442与CGR6339之间,遗传距离均为0.2c M,将该不育基因命名为ys-1。【结论】本研究有助于ys-1的精细定位及其克隆。  相似文献   

14.
以1套陆地棉染色体片段代换系为亲本材料,采用株系间随机成对杂交组配F1,在5个环境下鉴定片段代换系亲本及F1的皮棉产量与纤维品质性状表现。结果表明,与轮回亲本(中棉所36)相比,F1在铃重与皮棉产量性状上具有一定的对照优势,亲本与F1的纤维长度与比强度均表现出明显的对照优势,且环境间表现一致。F1铃重、衣分与皮棉产量在各个环境下的中亲优势均值全部为正,且相对较大。除个别环境外,纤维长度、马克隆值与比强度的中亲优势均值也全部为正,但数值相对较小。片段代换系及F1的遗传变异丰富,部分亲本与F1在多个环境下的综合表现优异,其皮棉产量与纤维品质得到同步提高,群体材料的遗传改良与杂种优势利用具有广阔前景。  相似文献   

15.
[Objective] The purpose of this study was to shape the good canopy structure and achieve efficiency production of cotton. [Method] With Jimian 958 as test material, a split-plot field experiment was conducted over two years (2016—2017) to determine the effect of different pruning methods (removal and retention of vegetative branches) and canopy height treatments (high and low staggered canopy, low canopy and high canopy) on the temporal-spatial distribution of cotton bolls, yield and yield components in Baoding. [Result] Pruning method and canopy pattern had significant effects on the temporal-spatial distribution of cotton bolls. Regarding temporal distribution, retention of vegetative branch treatment (P2) significantly increased the number of total bolls (pre-summer, summer and autumn bolls) compared with removal of vegetative branch treatment (P1). Staggered canopy (C1) increased the number of pre-summer bolls but resulted in relatively fewer autumn bolls to that of the high canopy (C3) pattern. Spatial distribution of bolls varied by pruning method, with P2 treatment producing a greater number of fruit bolls concentrated in the middle part of the plant. P1 treatment produced a greater number of fruit bolls concentrated in the lower canopy. The combined effects of pruning methods and canopy pattern on seed cotton yield were significant, with the largest yield observed in P1C1 (vegetative branch removal×staggered canopy). The P1C1 group did not make significant difference in lint yield to the P2C1 (vegetative branch retention×staggered canopy) group. [Conclusion] The P2C1 canopy structure can produce a greater number of fruit bolls concentrated in the middle part of the cotton, enhance the number and proportion of summer bolls, increase the number of bolls per unit area, and produce higher yields while reducing labour usage, material resources and costs. This simplified cultivation measure offers an important opportunity to efficiently achieve high yields of cotton in the Yellow River Region.  相似文献   

16.
17.
[Objective] The aim of this study is to study the hereditary of heterosis of fiber quality and yield-related traits in the upland-island interspecific hybrids, and breed new interspecific hybrid varieties with high yield and fine fiber quality. [Method] In this study, 12 upland cotton materials and 5 sea-island cotton materials were selected to determine the fiber quality and yield traits of their parents and F1 in Lin’an, Zhejiang and Sanya, Hainan. [Result] It was found that fiber length and fiber strength of F1 (Gossypium hirsutum × G. barbadense) generally had significant mid-parent heterosis (MPH), some hybrid combinations showed strong over-parent heterosis (OPH), fiber length had a small coefficient of variation between the two places and could be stably inherited. And in terms of yield, seed cotton weight, lint weight, and lint percentage of some upland-island hybrids had MPH, but they were still significantly lower than those of upland cotton parents. [Conclusion] Two long-staple cotton hybrid combinations T035 and T044 with 5A grade high-quality were obtained, and an excellent material of G. barbadense Ta10-280 was screened. This study provides valuable data for the genetic law of fiber quality heterosis of upland-island hybrid cotton.  相似文献   

18.
In this study, F2 populations from two chromosome segment substitution lines MBI7455 and MBI7358, were quantified using SSR to evaluate the parents' genotype and detect QTL related to fiber quality plus yield traits of cotton. Results show that the recurrent parent (CCRI45) hosted 96.70% and 95.60% of chromosome segment substitution in MBI7455 with 12 chromosome segments and in MBI7358 with 16 chromosome substitution segments of Gossypium barbadense, respectively. In the F2 population, the average rate of chromosome substitution of the recurrent parent (CCRI45) was 96.44%, and the average segments of chromosome substitution of Gossypium barbadense was 13.42, with an average segments of homozygous donor chromosome value of 3.90. Analysis showed 19 fiber quality-related QTL with a phenotypic variance of between 2.52%-13.11% and seven yield traits-related QTL with a range of 2.93%-11.40% phenotypic variance, resulting in a total of 26 QTL. The CSSLs could be used to detect QTL for fiber yield and quality traits, which offer an important foundation for the cotton molecular-assisted breeding.  相似文献   

19.
[Objective] Cotton fibers are single cells derived from the ovule epidermis, cotton fuzz of seeds are also formed by the ovule epidermis. Therefore, we conduct this experiment to locate the fuzzless gene n2 so as to lay a foundation for its clone and function study. [Method] Two F2 populations derived from a cross between the Xinhai 21 and the fuzzless mutant of upland cotton (Gossypium hirsutum L.) n2 was constructed. Combined with cotton genomic data and developed simple sequence repeat markers to locate the gene. The predicted gene sequence was acquired and the differences in its expression in two parents were analyzed by using the quantitative real time polymerase chain reaction method. [Result] The fuzzless gene was located in a 181 kbp region on chromosome A12 within markers P61 and Z10. There are seven candidate genes in the region. Quantitative real time polymerase chain reaction verification shows significant differences in the expression of 72098 gene in two parents. [Conclusion] In this experiment, the fine mapping and candidate genes analysis of gene n2 were completed, which laid a foundation for n2 gene cloning and functional verification.  相似文献   

20.
玉米株高主效QTL qPH3.2精细定位及遗传效应分析   总被引:1,自引:0,他引:1  
株高是影响玉米产量的重要因子之一, 节间数目和节间长度是导致株高差异的主要因素。本研究发现2个高代回交重组自交系W1和W2株高差异显著(P<0.001), 二者穗上部和穗下部节间数目都相同, 细胞形态分析发现节间细胞长度是引起二者株高差异的主要原因; 外源GA试验结果表明控制株高差异的QTL/基因是GA途径之外的新基因。因此, 利用来源于W1和W2的F2及F2:3家系群体在2年3个环境中将控制株高的主效QTL qPH3.2共定位在第3染色体标记C42-P17之间20 Mb范围内, 最高可解释22.22%的表型变异。进一步利用目标区段重组交换单株及自交后代家系将qPH3.2分解为2个主效QTL qPH3.2.1qPH3.2.2; 随后利用目标区段的跨叠系将qPH3.2.1qPH3.2.2分别精细定位在YH305-Y72 (2 Mb)及YH112-Y150 (1.6 Mb)之间。本研究的结果为玉米株高的遗传改良提供了真实可靠的遗传位点, 也为后续株高QTL的克隆奠定了良好的工作基础。  相似文献   

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