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1.
本文从能量代谢与植物细胞质雄性不育(CMS)、线粒体的结构和数量与CMS、线粒体DNA多态性与CMS、线粒体基因转录与CMS、线粒体多肽差异与CMS几个方面介绍了植物线粒体与CMS的关系。并介绍了与CMS相关的线粒体基因研究进展并对CMS形成的分子机制进行了探讨。  相似文献   

2.
植物细胞质雄性不育及其育性恢复的分子生物学研究进展   总被引:3,自引:0,他引:3  
植物细胞质雄性不育(CMS)和恢复系统在作物杂交种子生产中具有重要的意义。综述了目前已发现的与植物CMS相关的线粒体DNA位点,育性恢复基因对CMS相关DNA位点表达的影响,育性恢复基因的分子标记定位、克隆,及育性恢复分子机理等方面的研究进展,并讨论了恢复基因在植物分子育种上的应用。  相似文献   

3.
叶绿体和线粒体是高等植物细胞内2种重要的细胞器。由于细胞质雄性不育(CMS)被认为是一种由线粒体基因编码的性状,因此,近10多年来,国内外研究者对线粒体基因组结构与功能、由线粒体基因编码的与CMS相关蛋白的研究积累了大量的资料。与线粒体相比,叶绿体与CMS关系的研究相对滞后。虽然一些研究者在核不育水稻中,观  相似文献   

4.
植物细胞质雄性不育(CMS)是广泛存在于自然界中的现象,主要表现为不能产生有功能的花粉从而导致不能正常受精结实的自然现象。CMS的起因源于受植物细胞质基因的影响表现出雄性不育的特征,目前研究表明为线粒体的基因引起的雄性不育。相应地,细胞核中存在某类基因能够编码一种蛋白使其育性得以恢复,这一类基因称为育性恢复基因(Rf genes)。杂交水稻的生产依赖于CMS的发掘和利用,并且这也是农作物增产的一条有效途径。迄今为止,水稻中CMS和育性恢复的相关研究较多,机理阐述相对比较深入,本文主要介绍水稻CMS及育性恢复基因的研究及CMS和育性恢复机理的最新研究进展,希望能为揭示水稻CMS与育性恢复机制以及其他作物的CMS/Rf研究提供参考,为新型杂交水稻的培育提供新思路。  相似文献   

5.
细胞质雄性不育(cytoplasmic male sterility, CMS)是由于核基因组与细胞质基因组之间不协调互作导致的一种雄性器官异常而雌器官可以接受外来花粉正常结实的自然现象。在生产上,CMS是植物杂交制种的有力工具和杂种优势利用的重要途径。对CMS分子机制的解析是其有效利用的基础,一直以来都是研究的热点,然而其机制研究却相对滞后。该文从线粒体嵌合基因(orfs)形成、特征及分类,基因转录后修饰(RNA编辑)的特点及与CMS的关系,基因翻译产物特征、分类及其与CMS的关系等3个方面综述了近年来植物胞质雄性不育的机制研究进展,以期为进一步深入解析其分子机制提供理论参考。  相似文献   

6.
付娟  高才昌 《植物学报》2000,17(5):401-406
本文列出了已发现的高等植物中的线粒体DNA质粒,按分子形状分为线粒体环状DNA质粒和线粒体线状DNA质粒,环状线粒体DNA质粒的特征是分子较小, 序列中有正向/反向重复序列,ORF一般较小。线状线粒体DNA质粒的特征是分子较大,末端有重复序列,5'端与蛋白质共价结合,有较长的ORF。还分别介绍了它们的复制机制、转录和起源。质粒间及质粒与核基因组、线粒体基因组、叶绿体基因组的同源性也作了介绍。最后,综述了植物线粒体DNA质粒与植物的细胞质雄性不育(CMS)之间的关系。  相似文献   

7.
细胞质雄性不育(cytoplasmic male sterility,CMS)在油菜杂交种子生产中具有重要的意义.文章主要从目前已发现的与油菜CMS相关的线粒体DNA位点,育性恢复基因对CMS相关DNA位点表达的影响,育性恢复基因的分子标记定位和育性恢复基因的克隆4个方面综述了近年来油菜CMS的研究进展.并就该领域今后的研究方向进行了探讨.  相似文献   

8.
植物细胞质雄性不育的能量代谢及其分子机制   总被引:7,自引:0,他引:7  
介绍了植物细胞质雄性不育的能量代谢及其线粒体基因组的研究进展,并从能量代谢与线粒体以及线粒体基因关系角度阐述细胞质雄性不育机理,  相似文献   

9.
植物细胞质雄性不育分子机理研究进展   总被引:15,自引:0,他引:15  
本文从线粒体基因组、线粒体基因、线粒体转录RNA、线粒体蛋白、转基因植物以及花粉败育机理六个方面详细介绍了植物细胞质雄性不育分子生物学研究的技术和方法。综述了植物细胞质雄性不育分子机理研究的进展 ,并对植物细胞质雄性不育分子机理的前景作了展望。  相似文献   

10.
植物细胞质雄性不育分子机理研究进展   总被引:1,自引:0,他引:1  
本文从线粒体基因组、线粒体基因、线粒体转录 RNA、 线粒体蛋白、转基因植物以及花粉败育机理六个方面详细介绍了植物细胞质雄性不育分子生物学研究的技术和方法。综述了植物细胞质雄性不育分子机理研究的进展,并对植物细胞质雄性不育分子机理的前景作了展望。  相似文献   

11.
向日葵CMS育性恢复的研究   总被引:4,自引:1,他引:3  
季静  王萍 《遗传学报》1998,25(3):265-270
向日葵细胞质雄性不育(Cytoplasmicmalesterility,CMS)育性恢复的机理是非常复杂的。运用遗传学和分子生物学方法,分析了具代表性的4种不同细胞质类型的CMS育性被恢复的频率和20种向日葵自交系对19种CMS的恢复能力及个别CMS植株自发恢复的原因。实验结果表明,4种CMS品系育性被恢复的频率分别为58.8%.56.3%.11.8%和0%.20种自交系的恢复力为5.9-75.0%。部分CMS品系和大多数自交系含有恢复基因,恢复基因的数量及类型决定了CMS品系被恢复的程度及自交系的恢复能力。同时,提出并证实了线粒体不育基因变异是导致ARG1CMS植株自发恢复育性的主要原因。  相似文献   

12.
13.
In gynodioecious plant populations, sex determination often involves both cytoplasmic male-sterility (CMS) genes and specific nuclear genes that restore male function. How gynodioecy is maintained under the joint dynamics of CMS and restorer genes remains controversial. Although many theoretical models deal with interactions between CMS genes and restorer genes with sexual phenotypes and predict changes in their frequencies, it is difficult to observe the frequencies because no molecular markers have been established for either CMS or restorer genes in well-studied gynodioecious plants. This is the first report of the frequency of a CMS gene determined using a molecular marker in natural populations of a gynodioecious plant. Using a set of CMS gene-specific polymerase chain reaction primers, we compared female and CMS gene frequencies in 18 natural populations of Raphanus sativus. Female frequency was relatively low, ranging from 0 to 0.21. In contrast, the CMS gene frequency was highly variable among populations, ranging from 0 to 1. Estimated restorer gene frequency seemed less variable than observed CMS gene frequency, probably due to higher gene flow than in the CMS gene. Genetic drift may play a role in maintaining high variability of the CMS gene, although other possibilities are not excluded.  相似文献   

14.
Mitochondrial function depends on the coordinate action of nuclear and mitochondrial genomes. The genetic dissection of these interactions presents special challenges in obligate aerobes, because the viability of these organisms depends on mitochondrial respiration. The plant trait cytoplasmic male sterility (CMS) is determined by the mitochondrial genome and is associated with a pollen sterility phenotype that can be suppressed or counteracted by nuclear genes known as restorer-of-fertility genes. Here, I review the nature and the origin of the genes that determine CMS, together with recent investigations that have exploited CMS to provide new insights into plant mitochondrial-nuclear communication. These studies have implicated mitochondrial signaling pathways, including those involved in regulating cell death and nuclear gene expression, in the elaboration of CMS. The molecular cloning of nuclear genes that restore fertility (i.e. restorer-of-fertility genes) has identified genes encoding pentatricopeptide-repeat proteins as key regulators of plant mitochondrial gene expression.  相似文献   

15.
植物细胞质雄性不育是一种广泛存在于高等植物中的母性遗传性状。细胞质雄性不育不仅为研究核质互作提供了良好材料,同时也是植物杂种优势利用的重要基础,其分子机理是目前研究的重点。多种研究证据表明,线粒体基因与细胞质雄性不育密切相关。随着分子生物学和分子遗传学的不断发展,许多植物的恢复基因已经被定位和克隆,进一步阐明了植物细胞质雄性不育和育性恢复的分子机理。本文综述了近几年植物中细胞质雄性不育和育性恢复相关基因的研究进展,并探讨了细胞质雄性不育/育性恢复系统在育种方面的应用。  相似文献   

16.
In this study, we have investigated the cytoplasmic male sterility (CMS) of a novel male sterile radish line, designated NWB CMS. The NWB CMS was crossed with 16 fertile breeding lines, and all the progenies were completely male sterile. The degree of male sterility exhibited by NWB CMS is more than Ogura CMS from the Cruciferae family. The NWB CMS was found to induce 100% male sterility when crossed with all the tested breeding lines, whereas the Ogura CMS did not induce male sterility with any of the breeding lines. PCR analysis revealed that the molecular factor that influenced Ogura CMS, the orf138 gene, was absent in the NWB CMS line, and that the orf138 gene was not also expressed in this CMS line. In order to identify the cytoplasmic factors that confer male sterility in the NWB CMS line, we carried out RFLP analyses with 32 mitochondrial genes, all of which were used as probes. Fourteen genes exhibited polymorphisms between the NWB CMS line and other radish cultivars. Based on these RFLP data, intergenic primers were developed in order to amplify the intergenic regions between the polymorphic genes. Among these, a primer pair at the 3′ region of the atp6 gene (5′-cgcttggactatgctatgtatga-3′) and the 5′ region of the nad3 gene (5′-tcatagagaaatccaatcgtcaa-3′) produced a 2 kbp DNA fragment as a result of PCR. This DNA fragment was found to be specific to NWB CMS and was not present in other CMS types. It appears that this fragment could be used as a DNA marker to select NWB CMS line in a radish-breeding program.  相似文献   

17.
植物细胞质雄性不育是广泛存在于高等植物中的现象, 其表现为母性遗传、花粉败育, 但雌蕊正常。细胞质雄性不育在杂交种子生产中起着重要作用, 研究其分子作用机制有利于更有效地利用细胞质雄性不育。随着一些不育基因和恢复基因相继被克隆, 人们对一些细胞质雄性不育和恢复系统的分子作用机理已经有一定了解。本文综述了近年来对植物细胞质雄性不育基因和恢复基因作用机理研究的进展。  相似文献   

18.
Homeotic conversions of anthers were found in cytoplasmic male sterile (CMS) plants of Brassica napus derived from somatic hybrids of B. napus and Arabidopsis thaliana. CMS line flowers displayed petals reduced in size and width and stamens replaced by carpelloid structures. In order to investigate when these developmental aberrations appeared, flower development was analysed histologically, ultrastructurally and molecularly. Disorganized cell divisions were detected in the floral meristems of the CMS lines at stage 4. As CMS is associated with mitochondrial aberrations, ultrastructural analysis of the mitochondria in the floral meristems was performed. Two mitochondrial populations were found in the CMS lines. One type had disrupted cristae, while the other resembled mitochondria typical of B. napus. Furthermore, expression patterns of genes expressed in particular floral whorls were determined. In spite of the aberrant development of the third whorl organs, BnAP3 was expressed as in B. napus during the first six stages of development. However, the levels of BnPI were reduced. At later developmental stages, the expression of both BnAP3 and BnPI was strongly reduced. Interestingly the expression levels of genes responsible for AP3 and PI activation such as LFY, UFO and ASK1 were higher in the CMS lines, which indicates that activation of B-genes in the CMS lines does not occur as in B. napus. Disrupted and dysfunctional mitochondria seem to be one of the first aberrations manifested in CMS which result in a retrograde influence of the expression levels of genes responsible for the second and third whorl organ differentiation.  相似文献   

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