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111.
112.
Lord Horder 《BMJ (Clinical research ed.)》1935,2(3908):1031-1033
113.
Thomas Horder 《BMJ (Clinical research ed.)》1927,1(3465):993-995
114.
Restriction mapping is used to estimate nucleotide sequence polymorphism
when the regions to be studied are too long or too numerous to be
sequenced. Restriction mapping is less costly than DNA sequencing, but it
does not allow direct measurement of underlying nucleotide polymorphism. It
is therefore useful to be able to estimate underlying nucleotide
polymorphism from observations of polymorphism in restriction maps, as this
offers some of the resolution afforded by DNA sequencing at a reduced cost.
Previous estimators of underlying nucleotide polymorphism have assumed that
each restriction-enzyme- binding site contains, at most, a single
polymorphic nucleotide position (the low-polymorphism-frequency
assumption), and this assumption has placed an upper limit on the level of
polymorphism that can be resolved by these estimators. The present study
documents an estimator which allows relaxation of this assumption. The new
estimator more accurately estimates underlying nucleotide polymorphism when
the polymorphism level is high enough to falsify the low-polymorphism-
frequency assumption. The new estimator therefore yields good results for
data sets that are too divergent for analysis by present methods.
相似文献
115.
116.
不同退化阶段高寒草甸土壤化学计量特征 总被引:13,自引:1,他引:13
为了阐明不同退化阶段高寒草甸土壤的化学计量特征,沿着高寒草甸退化的梯度选取了原生嵩草草甸、轻度退化草甸和严重沙化草甸,测定了高寒草甸退化过程中不同深度土壤的有机碳、全氮、全磷和全钾含量。结果表明:随着高寒草甸的退化,0~100cm土壤的有机碳、全氮、全磷和全钾含量以及碳氮比、碳磷比、碳钾比、氮磷比、氮钾比和磷钾比均呈降低趋势,且土壤有机碳对高寒草甸退化的敏感性最高,全氮、全磷和全钾的敏感性依次降低,表层20cm的土壤有机碳和全氮可作为表征高寒草甸退化程度最敏感的土壤养分指标。另外,随着草甸的退化,土壤的有机碳、全氮、全磷和全钾含量及其化学计量比的垂直分布明显不同:随着土壤深度的增加,原生嵩草草甸和轻度退化草甸的土壤有机碳、全氮和全磷含量以及碳氮比、碳磷比、碳钾比、氮磷比、氮钾比和磷钾比在0~40cm范围内锐减,在40cm以下缓慢降低并趋于稳定;而沙化草甸土壤的有机碳、全氮、全磷和全钾及其化学计量比随着土壤深度的增加保持不变。 相似文献
117.
ANETT HARSÁNYI MARGARETA RYBERG MATS X. ANDERSSON KÁROLY BÓKA LAJOS LÁSZLÓ GERGELY BOTOND BÉLA BÖDDI RICHARD GÁBORJÁNYI 《Molecular Plant Pathology》2006,7(6):533-541
To understand the phenomenon by which infection of seed-transmitted Barley stripe mosaic virus (BSMV) alters membrane structures and inhibits protochlorophyllide biosynthesis of dark-grown barley ( Hordeum vulgare L.) plants, we analysed the presence of NADPH:protochlorophyllide oxidoreductase (POR, EC 1.3.1.33) and the galactolipid content and fatty acid composition. The amount of POR in etioplasts of infected leaves, compared with non-infected leaves, was reduced, as measured by immunoelectron microscopy and Western blot. These results are in agreement with the previously described reduction of the ratio of the photoactive 650 nm to non-photoactive 630 nm absorbing protochlorophyllide forms ( Harsányi et al. , 2002 . Physiol. Plant 114 , 149–155). The galactolipid content was lower in infected leaves. Monogalactosyl-diacylglycerol (MGDG) content was reduced to 40% and digalactosyl-diacylglycerol to 55% of control plants on a fresh weight basis. In infected plants, the proportion of linolenic acid decreased in both galactolipids. The lower amount of highly unsaturated fatty acids and the reduced abundance of MGDG correlated well with the previously detected reduction in the membrane ratio of prolamellar body (PLB) to prothylakoid ( Harsányi et al. , 2002 . Physiol. Plant 114 , 149–155). The reduced amount of POR and the above described alterations in the lipid composition resulted in a disturbed structure of PLBs. As a consequence, pigment synthesis and the greening process were inhibited in infected cells, in turn explaining the appearance of chlorotic stripes of BSMV-infected barley leaves. Our results show that BSMV infection can be detected at a very early stage of leaf development. 相似文献
118.
W. Russell Brain Horder W. McAdam Eccles Alan Moncrieff Arthur Ellis J. P. Monkhouse Richard W. B. Ellis E. P. Poulton David Forsyth H. E. Roaf R. D. Gillespie John A. Ryle Donald Hunter Adrian Stephen Arthur Hurst C. P. Wilson Robert Hutchison W. H. Wynn 《BMJ (Clinical research ed.)》1938,1(4029):705-706
119.