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辣椒株高遗传分析 总被引:7,自引:3,他引:4
以辣椒矮秆自交系B9431(P1)和高秆自交系‘吉林长椒’(P2)为双亲,构建P1、F1、P1、B1、B2和F2 6个家系世代群体,应用植物数量性状主基因+多基因混合遗传模型对该6个世代群体株高进行多世代联合分析,结果显示:株高遗传符合1对主基因+多基因遗传模型,高秆对矮秆表现为不完全显性,F1代株高的势能比值为0.39,显性程度为0.91。B1、B2和F2群体主基因遗传率分别为20.35%、17.20%和35.29%,多基因遗传率分别为5.08%、19.75%和0;主基因效应表现为负向加性效应,其值为-6.43,显性效应为0;多基因加性效应值和显性效应值分别为-8.89和9.77。研究还表明,主基因与多基因间的基因效应存在一定差异,主基因加性效应值相当于多基因加性效应值的72.33%,主基因无显性效应,显性效应是由多基因控制遗传。 相似文献
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Buba Ibrahim Ahmed Aliya Abubakar Sani Yusuf Ringim Namwa Voncir 《Archives Of Phytopathology And Plant Protection》2013,46(7):650-658
Abstract Field experiments were carried out at the Teaching and Research Farm of the Abubakar Tafawa Balewa University, Bauchi during the rainy season of 2005. The study was carried out with sole objective of evaluating the efficacy of six selected plant materials (sweetsop, red pepper, garlic, neem, mahogany and gmalina) against the major insect pests of cowpea variety, Dan Sokoto. The experiment was laid down in randomised complete block design with seven treatments. Each treatment was replicated three times. The results of the study showed that all the plant materials used were significantly (p < 0.05) better than control where no plant material was used in controlling the population of B. tabaci, E. dolichi, M. sjostedti and C. tomentosicollis at 1, 2 and 3 days after application of the treatments. Similarly the effects of these plant materials on the number of seeds/pod showed a significant (p < 0.05) difference between plots treated with plant materials and control. On the grain yield of the crop, all the plant materials showed significant effect except mahogany and the control which were statistically similar. Furthermore, the order of level of control indicated that sweet sop has (70.7%), garlic (69.3%), neem (61.0%), red pepper (54.0%), ash (30.9%), and mahogany (3.5%). The result of the present finding therefore recommends the use of sweet sop, garlic and neem as they were found to be the most promising in the control of major cowpea insect pests. 相似文献
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Maria Schiller 《Ethnic and racial studies》2013,36(7):1120-1136
How migration and mobilizations of difference are accommodated at the local level is a burning question. Concepts adopted by local governments and the capacities of cities to formulate and implement these have received increasing attention, but often without examining the ideas and norms that underlie local concepts and practices. This article assesses the hypothesis of local-level pragmatism, which it rejects, and develops the notion of ‘paradigmatic pragmatism’ to characterize how local-level politics address mobilizations of difference. Based on empirical findings from Amsterdam, Antwerp and Leeds, and comparing the content and the implementation of ‘diversity policies’, I argue against a dichotomy of pragmatic vs ideational politics. Instead, these cities draw on a variety of ideas and pragmatically combine them under the header of diversity. This paradigmatic pragmatism invites further research on the effects of potential incompatibilities of immigrant policy ideas. 相似文献
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Major histocompatibility complex (Mhc) genes are frequently used as a model for adaptive genetic diversity. Although associations between Mhc and disease resistance are frequently documented, little is known about the fitness consequences of Mhc variation in wild populations. Further, most work to date has involved testing associations between Mhc genotypes and fitness components. However, the functional diversity of the Mhc, and hence the mechanism by which selection on Mhc acts, depends on how genotypes map to the functional properties of Mhc molecules. Here, we test three hypotheses that relate Mhc diversity to fitness: (i) the maximal diversity hypothesis, (ii) the optimal diversity hypothesis and (iii) effect of specific Mhc types. We combine mark–recapture methods with analysis of long‐term breeding data to investigate the effects of Mhc class I functional diversity (Mhc supertypes) on individual fitness in a wild great tit (Parus major) population. We found that the presence of three different Mhc supertypes was associated with three different components of individual fitness: survival, annual recruitment and lifetime reproductive success (LRS). Great tits possessing Mhc supertype 3 experienced higher survival rates than those that did not, whereas individuals with Mhc supertype 6 experienced higher LRS and were more likely to recruit offspring each year. Conversely, great tits that possessed Mhc supertype 5 had reduced LRS. We found no evidence for a selective advantage of Mhc diversity, in terms of either maximal or optimal supertype diversity. Our results support the suggestion that specific Mhc types are an important determinant of individual fitness. 相似文献
28.
Elise Huchard Alice Baniel Susanne Schliehe‐Diecks Peter M. Kappeler 《Molecular ecology》2013,22(15):4071-4086
Sexual selection theory suggests that choice for partners carrying dissimilar genes at the major histocompatibility complex (MHC) may play a role in maintaining genetic variation in animal populations by limiting inbreeding or improving the immunity of future offspring. However, it is often difficult to establish whether the observed MHC dissimilarity among mates drives mate choice or represents a by‐product of inbreeding avoidance based on MHC‐independent cues. Here, we used 454‐sequencing and a 10‐year study of wild grey mouse lemurs (Microcebus murinus), small, solitary primates from western Madagascar, to compare the relative importance on the mate choice of two MHC class II genes, DRB and DQB, that are equally variable but display contrasting patterns of selection at the molecular level, with DRB under stronger diversifying selection. We further assessed the effect of the genetic relatedness and of the spatial distance among candidate mates on the detection of MHC‐dependent mate choice. Our results reveal inbreeding avoidance, along with disassortative mate choice at DRB, but not at DQB. DRB‐disassortative mate choice remains detectable after excluding all related dyads (characterized by a relatedness coefficient r > 0), but varies slightly with the spatial distance among candidate mates. These findings suggest that the observed deviations from random mate choice at MHC are driven by functionally important MHC genes (like DRB) rather than passively resulting from inbreeding avoidance and further emphasize the need for taking into account the spatial and genetic structure of the population in correlative tests of MHC‐dependent mate choice. 相似文献
29.
《Chronobiology international》2013,30(2):283-289
In a large, prospective, 8-week open study of 721 outpatients receiving agomelatine treatment for a current major depressive episode (MDE), morningness–eveningness (Composite Scale of Morningness) was assessed before and after treatment to investigate possible changes in morningness–eveningness after treatment and evaluate whether morningness–eveningness at baseline predicted treatment response. A change towards morningness was observed after treatment. This change was greater in responders than non-responders. Moreover, being a morning type at baseline was an independent predictor of response to treatment. Once thought to be a trait variable, morningness–eveningness is a potential treatment target that should be systematically assessed in MDE patients. 相似文献
30.
Neil W. Blackstone 《Philosophical transactions of the Royal Society of London. Series B, Biological sciences》2013,368(1622)
According to multi-level theory, evolutionary transitions require mediating conflicts between lower-level units in favour of the higher-level unit. By this view, the origin of eukaryotes and the origin of multicellularity would seem largely equivalent. Yet, eukaryotes evolved only once in the history of life, whereas multicellular eukaryotes have evolved many times. Examining conflicts between evolutionary units and mechanisms that mediate these conflicts can illuminate these differences. Energy-converting endosymbionts that allow eukaryotes to transcend surface-to-volume constraints also can allocate energy into their own selfish replication. This principal conflict in the origin of eukaryotes can be mediated by genetic or energetic mechanisms. Genome transfer diminishes the heritable variation of the symbiont, but requires the de novo evolution of the protein-import apparatus and was opposed by selection for selfish symbionts. By contrast, metabolic signalling is a shared primitive feature of all cells. Redox state of the cytosol is an emergent feature that cannot be subverted by an individual symbiont. Hypothetical scenarios illustrate how metabolic regulation may have mediated the conflicts inherent at different stages in the origin of eukaryotes. Aspects of metabolic regulation may have subsequently been coopted from within-cell to between-cell pathways, allowing multicellularity to emerge repeatedly. 相似文献