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1.
用微卫星标记定位太空诱变玉米核不育基因   总被引:14,自引:0,他引:14  
用姊妹交多代的太空诱变玉米雄性不育材料RP3195(A)×S37(自交系)的两个不同果穗的F2代群体作为育性调查和基因定位群体,这两个果穗的F2代群体分别为138株和247株。用326对微卫星引物进行差异筛选,其中有56对引物出现多态性,然后用56对引物对F2代群体进行分析,结果表明引物bnlg197和umc1012与不育基因连锁,其中在F2代群体的不同果穗中引物bnlg197与不育基因之间的遗传距离分别为7cM和14.5cM,标记umc1012在F2代群体(138株)中与不育基因之间的遗传距离为28.5cM,据此将该核不育基因定位在3L染色体上。  相似文献   

2.
玉米自交系CML470抗南方锈病基因的定位   总被引:2,自引:0,他引:2  
南方锈病是我国玉米产区的主要病害,玉米抗病品种的利用是控制其为害的一条最为安全和经济的途径。但是,在我国当前的玉米育种中,所利用的玉米南方锈病基因多来自美国杂交种78599等。为寻找新的南方锈病抗病基因,本研究对CIMMYT自交系CML470的抗性进行了遗传分析。结果发现CML470的抗性由一个显性抗病基因(定名为RppC)控制,该抗病基因被定位于10号染色体短臂端部,位于SSR标记umc1380和umc1291之间,分别与两标记相距3.5 cM和8.8 cM。通过回交,并利用分子标记辅助选择,RppC被转移到了优良自交系昌7-2中。  相似文献   

3.
为丰富黄瓜雄性不育基因库及雄性不育理论研究,该研究以1个性状稳定遗传的黄瓜雄性不育突变体C0128为材料,对其进行表型鉴定、遗传分析和雄性不育基因初步定位。结果表明:(1)突变体C0128的雄花花瓣和花药均较小,且花药上无花粉粒产生。(2)遗传规律分析发现,突变体C0128的雄性不育性状受1对隐性核基因MS-4调控。(3)利用来自Gy14×C0128 F_(2)群体的1231个单株及12个多态性的SSR分子标记,最终将MS-4初步定位在黄瓜Chr3上遗传距离为3.7 cM、物理距离为1.21 Mb的区间内。研究证实,C0128为一个新的黄瓜雄性不育突变体,MS-4的初步定位结果可为进一步克隆目的基因、研究雄性不育机制奠定基础。  相似文献   

4.
利用甲基磺酸乙酯(ethylmethane sulphonate, EMS)诱变粳稻品种日本晴获得了一个遗传稳定的叶形突变体 thread-like leaf 1 (tll1)。该突变体在杭州表现为矮化、窄叶, 极端时仅剩主脉, 呈细丝状。将该突变体分别与籼稻品种南京6号、浙辐802和9311进行正反交配组, 遗传分析表明该突变体性状由1对隐性单基因控制。通过SSR和STS分子标记对F2代分离群体进行遗传定位, 将该基因初步定位在第12染色体SSR标记RM247和RM101之间。随后利用已公布的粳稻品种日本晴和籼稻品种9311的基因组序列, 发展了7对有多态的STS标记, 最终将该基因定位在FL13和FL14之间约94.3 kb的区间内, 为进一步克隆TLL1基因奠定了基础。  相似文献   

5.
为了对葡萄雄性不育基因进行定位研究,以可育葡萄‘魏可’(Vitis vinifera L.)为亲本构建的自交群体88株为试验材料,运用分离群体分组混合分析法(bulked segregant analysis,BSA),构建了可育株和不育株基因池,结合SSR技术对葡萄雄性不育基因进行定位研究和生物信息学分析。该研究筛选到2个与葡萄雄性不育基因连锁的SSR标记VVMD34和VVIB23,且位于该基因两侧,遗传距离分别为3.5cM和1.9cM。2个标记间物理距离为1 134kb,在该区域总共预测到了111个候选基因。该研究对葡萄雄性不育基因的精细定位及分子标记辅助育种奠定了良好的基础。  相似文献   

6.
结合SSR标记和STS标记对家蚕无鳞毛翅基因的定位   总被引:3,自引:0,他引:3  
家蚕突变表型无鳞毛翅(non-lepis wing, nlw)由隐性基因nlw控制。由于家蚕雌性不发生交换, 文章采用有鳞毛翅品系P50和无鳞毛翅品系U06两个品系组配F1代及BC1回交群体, (U06×P50)×U06和U06×(U06×P50)分别记作BC1F和BC1M, 根据已经构建的家蚕SSR分子标记连锁图谱及已经发表的有关序列对nlw基因进行了连锁及定位分析。得到8个与nlw基因连锁的SSR(Simple sequence repeat)标记和1个STS(Sequence-tagged sites)标记。BC1F群中的所有正常翅个体均表现出与(U06×P50)F1相同的杂合带型; 而所有无鳞毛个体带型与亲本U06一致, 为纯合型。利用BC1M群体构建了关于nlw基因的遗传连锁图, 连锁图的遗传距离为125.7 cM, 与nlw基因最近的引物为STS标记cash2p, 图距为11.4 cM。  相似文献   

7.
玉米干旱胁迫相关突变体在发掘玉米耐旱关键基因研究中具有重要利用价值。在玉米自交系综31的田间扩繁过程中,发现一个玉米干旱胁迫敏感的自然突变体,该突变体在轻度干旱条件下叶片发生卷曲,严重干旱时叶尖变黄,衰老坏死。遗传分析表明突变性状受1对主效单基因控制,表现为隐性遗传,将突变基因命名为DS。利用B73与突变体ds组配F2分离群体,以干旱条件下叶片是否卷曲为指标,将DS基因初定位在第3号染色体SSR标记umc1772和umc2158之间,物理距离为5 Mb。以上研究结果为该基因的克隆及功能分析奠定了基础。  相似文献   

8.
【目的】从2016年天宫二号空间实验室经历33 d后返回的1头成活“秋丰×白玉”杂交后代雌蚕Bombyx mori与地面“白玉”雄蚕交配的后代个体中,发现有结小茧突变体,进而分离并建立了飞天蚕(space silkworm)正常茧品系TG和小茧突变体品系sc。本研究通过对sc进行遗传分析和基因定位,旨在揭示产生小茧突变体的基因。【方法】对TG和sc进行表型分析;以sc, TG和正常大茧品系0223V1为试验材料,组配(sc♀×0223V1♂)F1及回交群体BC1F——(sc♀×0223V1♂)F1♀×sc♂和BC1M——sc♀×(sc♀×0223V1♂)F1♂。以sc, 0223V1和F1基因组DNA为模板,每个连锁群随机选10个SSR引物进行PCR扩增,筛选多态性SSR标记。利用雌性家蚕减数分裂染色体不交换的特点,用BC1F确定sc基因所属连锁群;再根据家蚕SSR分子标记连锁图谱,用BC1M进行基因定位。【结果】表型分析表明sc幼虫体型小于TG幼虫的,蚕茧重约为TG的1/2。遗传分析表明突变受一对隐性基因sc控制;基因定位结果表明该基因位于家蚕基因组第3连锁群S2930-363和S2930-289 SSR标记之间,物理距离为684 kb,包含33个候选基因。【结论】飞天蚕小茧突变受位于家蚕基因组第3连锁群的一对隐性基因sc控制。  相似文献   

9.
利用SSR标记对143株Java14/珍珠矮F2随机群体进行分析,构建了水稻第4染色体上抗白叶枯病基因Xa12高饱和度的SSR标记区间连锁图。该分子图谱整合了SSR标记RM349、RM348、RM255、MRG4611,为进一步利用SSR标记在Java14/珍珠矮F2群体中精细定位Xa12以及克隆该基因奠定了基础。  相似文献   

10.
叶型是作物理想株型育种的关键因素之一,发掘叶片发育相关基因对作物理想株型育种以及叶片发育的分子遗传机理研究具有重要意义。在玉米转座子Mutator活性系的杂交后代中,鉴定到一个玉米叶片卷曲的突变体,命名为rol1。突变体rol1在拔节期可明显观察到叶片内卷的表型,遗传分析表明,该卷叶表型受单隐性基因控制。将玉米骨干自交系B73和rol1杂交,构建遗传定位群体,利用BSR-Seq技术,对F2分离群体中的卷叶和展叶表型单株分别取样混池,进行转录组测序,将Rol1基因粗略地定位在玉米第5号染色体165~185 Mb区间内。进一步利用遗传分离群体中的卷叶表型单株缩小定位区间,将Rol1基因定位在SSR标记umc1822和umc1155之间,物理距离为5 Mb。本研究为Rol1基因的克隆和功能研究奠定了基础。  相似文献   

11.
The application of heterosis is a promising approach for greatly increasing yield in soybean (Glycine max L.). Nuclear male sterility is essential for hybrid seed production and the utilization of heterosis. Here we report the cloning of the gene underlying the soybean male-sterile mutant ms-1, which has been widely used for recurrent selection in soybean breeding programs. We initially delimited the ms1 locus to a 16.15 kb region on chromosome 13, based on SLAF_BSA sequencing followed by genotyping of an F2 population segregating for the locus. Compared with the same region in fertile plants, the mutant region lacks a sequence of approximately 38.7 kb containing five protein-coding genes, including an ortholog of the kinesin-like protein gene NACK2, named GmMs1. The GmMs1 knockout plants generated via CRISPR/Cas-mediated gene editing displayed a complete male-sterile phenotype. Metabolic profiling showed that fertile anthers accumulated starch and sucrose normally, whereas sterile anthers had higher anthocyanin levels and lower flavonoid levels and lower antioxidant enzyme activities. These results provide insights into the molecular mechanisms governing male sterility and demonstrate that GmMs1 could be used to create male-sterile lines through targeted mutagenesis. These findings pave the way for designing seed production technology and an intelligent male-sterile line system to utilize heterosis in soybean.  相似文献   

12.
Male sterile mutants play a very important role in the utilization of crop heterosis. A recessive genic male sterile (RGMS) two-type line 95ms-5AB was derived from a male sterile mutant of common white sesame (Sesamum indicum L.) cultivar Yuzhi 4 by treatment with gamma rays from 60Co. Male sterile 95ms-5A plants did not show any other obvious differences from the male fertile 95ms-5B plants, except for having greenish, shriveled and slim anthers with few, small and degenerative pollens. Genetic analysis indicated that the male sterility of 95ms-5A was controlled by a single RGMS gene, Sims1 (Sesamum indicum male sterility 1). An allelic test with a previously identified RGMS mutant, ms86-1, confirmed that Sims1 in 95ms-5A is different from Sims2 in ms86-1. Amplified fragment length polymorphism markers linked to SiMs1 were screened using bulked segregant analysis. A genetic linkage map of the SiMs1 gene was constructed using 237 plants derived from the sib-mating between the near-isogenic lines 95ms-5A and 95ms-5B. The SiMs1 gene was found to be located in a region of 8.0 cM, at a distance of 1.2 cM from P06MG04 and 6.8 cM from P12EA14. In this genetic region, another marker P01MC08 was identified to be co-segregated with SiMs1. The linkage map constructed in this study will be very useful for marker-assisted selection and map-based cloning of SiMs1 as well as for hybrid breeding in sesame crop.  相似文献   

13.
为改良水稻(Oryza sativa)核不育系柱头性状提供遗传信息, 调查了粳型核不育系7001S、籼型核不育系Z913S及其杂交、自交获得的F1、F2和F2:3群体的4个柱头性状, 分析了4个性状间的相关性, 并利用主基因+多基因遗传模型对2个世代4个性状进行遗传分析。结果表明, 4个性状两两间呈极显著正相关, 相关系数介于0.274-0.897之间。除F2:3群体中花柱长度和柱头外露率分别表现出受2对加性-显性主基因和1对负等效加性-显性主基因+多基因控制外, F2和F2:3群体的柱头长度、花柱长度、柱头-花柱总长度以及柱头外露率均表现出受2对主基因和多基因控制, 且F2:3群体中控制花柱长度的主基因表现出加性-显性效应, 其余均表现出加性-显性-上位性效应。2个世代中4个性状均以主基因遗传为主。  相似文献   

14.
 Genetic and cytological studies were conducted with a new male-sterile, female-fertile soybean [Glycine max (L.) Merr.] mutant. This mutant was completely male sterile and was inherited as a single-recessive gene. No differences in female or male gamete transmission of the recessive allele were observed between reciprocal cross-pollinations in the F1 or F2 generations. This mutant was not allelic to any previously identified soybean genic male-sterile mutants: ms1, ms2, ms3, ms4, ms5, or ms6. No linkage was detected between sterility and flower color (W1 locus), or between sterility and pubescence color (T1 locus). Light microscopic and cytological observations of microsporogenesis in fertile and sterile anthers were conducted. The structure of microspore mother cells (MMC) in male-sterile plants was identical to the MMCs in male-fertile plants. Enzyme extraction analyses showed that there was no callase activity in male-sterile anthers, and this suggests that sterility was caused by retention of the callose walls, which normally are degraded around tetrads at the late tetrad stage. The tapetum from male-sterile anthers also showed abnormalities at the tetrad stage and later stages, which were expressed by an unusual formation of vacuoles, and by accumulation of densely staining material. At maturity, anthers from sterile plants were devoid of pollen grains. Received: 13 May 1996 / Revision accepted: 19 August 1996  相似文献   

15.
The present study describes a novel thermo-sensitive genic male sterile (TGMS) line, Qiong68ms. To analyse the mode of fertility inheritance and tag the TGMS gene, a set of F2, BC1 and F2:3 populations derived from a cross between Qiong68ms and K12 were evaluated for a period of 2 years. Classical genetic analyses and QTL mapping using the mean restoration percentage of the F2:3 populations revealed that the fertility of Qiong68ms was likely to be governed by a single recessive gene, which was named tms3; the tms3 gene was mapped to a location between SSR markers umc2129 and umc1041, at a distance of 3.7 cM form umc2129 and 1.5 cM form umc1041. The molecular markers tightly linked with tms3 gene will aid in the transfer of the TGMS gene to various background inbred lines using the MAS method.  相似文献   

16.
水稻细胞质型雄性不育系IR69700A的幼穗经离体培养,获得一个体细胞克隆突变体0A15-1。经短日照和低温处理表明,0A15-1具有在高温下不育和低温下转为可育的特性,是一例温敏不育突变体。花粉染色显示0A15-l属于典败型不育。通过与明恢63、优B和广陆矮等多个父本的杂交,其F2和BC1群体的育性分离比都揭示0A15-1的不育性状受一对隐性核基因控制,并且为孢子体型雄性不育。该新种质可以用于对相关温敏核不育基因进行分子标记及用于两系法生产杂交水稻。  相似文献   

17.
Pollen development is disturbed in the microspore development stage of the double-recessive nuclear male-sterile line ms5ms6 (Gossypium hirsutum L.). This study aimed to identify differentially expressed anther proteins and their potential roles in pollen development and male sterility. We compared the proteomes of sterile and fertile anthers of the double recessive nuclear male-sterile line ms5ms6. Approximately 1,390 protein spots were detected by two-dimensional differential gel electrophoresis. Proteins with altered accumulation levels in sterile anthers compared with fertile anthers were identified by mass spectrometry and the NCBInr and Viridiplantae EST databases. Down-regulated proteins in the sterile anthers included cytosolic ascorbate peroxidase 1 and glutaminyl-tRNA synthetase (glutamine-tRNA ligase). Several carbohydrate metabolism- and photosynthesis-related enzymes were also present at lower levels in the mutant anthers. By contrast, ATP-dependent RNA helicase eIF4A-13, NADH dehydrogenase subunit 1, enolase, gibberellin 20-oxidase, gibberellin 3-hydroxylase 1, alcohol dehydrogenase 2d, 3-ketoacyl-CoA synthase, and trehalose 6-phosphate synthase were expressed at higher levels in sterile anthers than in fertile anthers. The regulation of upland cotton pollen development involves a complex network of differentially expressed genes. This study provides the foundation for future investigations of gene function in upland cotton pollen development and male sterility.  相似文献   

18.
The double-recessive genic male-sterile (ms) line ms5 ms6 has been used to develop cotton (Gossypium hirsutum) hybrids for many years, but its molecular-genetic basis has remained unclear. Here, we identified the Ms5 and Ms6 loci through map-based cloning and confirmed their function in male sterility through CRISPR/Cas9 gene editing. Ms5 and Ms6 are highly expressed in stages 7–9 anthers and encode the cytochrome P450 mono-oxygenases CYP703A2-A and CYP703A2-D. The ms5 mutant carries a single-nucleotide C-to-T nonsense mutation leading to premature chain termination at amino acid 312 (GhCYP703A2-A312aa), and ms6 carries three nonsynonymous substitutions (D98E, E168K, and G198R) and a synonymous mutation (L11L). Enzyme assays showed that GhCYP703A2 proteins hydroxylate fatty acids, and the ms5 (GhCYP703A2-A312aa) and ms6 (GhCYP703A2-DD98E,E168K,G198R) mutant proteins have decreased enzyme activities. Biochemical and lipidomic analyses showed that in ms5 ms6 plants, C12–C18 free fatty acid and phospholipid levels are significantly elevated in stages 7–9 anthers, while stages 8–10 anthers lack sporopollenin fluorescence around the pollen, causing microspore degradation and male sterility. Overall, our characterization uncovered functions of GhCYP703A2 in sporopollenin formation and fertility, providing guidance for creating male-sterile lines to facilitate hybrid cotton production and therefore exploit heterosis for improvement of cotton.  相似文献   

19.
The male sterile mutant, ms35 , of Arabidopsis thaliana was produced by X-irradiation of seeds. The mutant produces fertile pollen, but is male sterile because the anthers do not dehisce. Anther development in ms35 plants occurs as in wild-type Arabidopsis until shortly after microspores are released from meiotic tetrads. Thereafter, in the wild type, bands of lignified, cellulosic secondary wall thickenings are laid down around the cells of the anther endothecium. In contrast, wall thickenings are not formed in the endothecium of the ms35 mutant. Development of other lignified tissues, for example the vascular tissue of the stamen, occurs normally in ms35 plants. In mutant anthers, as pollen maturation is completed, the stomium is cleaved but the anther wall does not retract to release pollen. The block in anther dehiscence in ms35 plants is specifically correlated with the absence of endothecial wall thickenings. The ms35 mutation represents the first genetic evidence in support of the proposed role of the endothecium in anther dehiscence. The ms35 gene was mapped to the top arm of chromosome 3 ( hy2 -(4.17±2.31 cM)- ms35 -(32.14±5.45 cM)- gl1 ).  相似文献   

20.
The application of genetic male sterility in hybrid rice production has great potential to revolutionize hybrid seed production methodology. The two-line breeding system by using thermo-sensitive genic male sterility (TGMS) has been discovered and successfully developed as a breeding strategy in rice. One TGMS gene was investigated by a spontaneous rice mutant line, Sokcho-MS, originated from a Korean japonica variety. It was shown that Sokcho-MS is completely sterile at a temperature higher than 27°C and/or lower than 25°C during the development of spikelets, but fertile at the temperature ranging from 25 to 27°C regardless of the levels of day-length. Genetic analysis and molecular mapping based on SSR, STS and EST markers revealed that a single recessive gene locus involved the control of genic male sterility in Sokcho-MS. By using an F2 mapping population derived from a cross between Sokcho-MS and a fertile indica variety Neda, the new TGMS gene, designated as tms6, was mapped primarily to the long arm of chromosome 5 of Oryza sativa at the interval between markers E60663 (2.0 cM) and RM440 (5.8 cM). Subsequently, tms6 was fine mapped to the interval between markers RM3351 (0.1 cM) and E60663 (1.9 cM). As tms6 appeared to be independent of other mapped TGMS genes in rice, the genetic basis of Sokcho-MS was further discussed.  相似文献   

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