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91.
Wang F  Kou Z  Zhang Y  Gao S 《Biology of reproduction》2007,77(6):1007-1016
Epigenetic reprogramming is thought to play an important role in the development of cloned embryos reconstructed by somatic cell nuclear transfer (SCNT). In the present study, dynamic reprogramming of histone acetylation and methylation modifications was investigated in the first cell cycle of cloned embryos. Our results demonstrated that part of somatic inherited lysine acetylation on core histones (H3K9, H3K14, H4K16) could be quickly deacetylated following SCNT, and reacetylation occurred following activation treatment. However, acetylation marks of the other lysine residues on core histones (H4K8, H4K12) persisted in the genome of cloned embryos with only mild deacetylation occurring in the process of SCNT and activation treatment. The somatic cloned embryos established histone acetylation modifications resembling those in normal embryos produced by intracytoplasmic sperm injection through these two different programs. Moreover, treatment of cloned embryos with a histone deacetylase inhibitor, Trichostatin A (TSA), improved the histone acetylation in a manner similar to that in normal embryos, and the improved histone acetylation in cloned embryos treated with TSA might contribute to improved development of TSA-treated clones. In contrast to the asymmetric histone H3K9 tri- and dimethylation present in the parental genomes of fertilized embryos, the tri- and dimethylations of H3K9 were gradually demethylated in the cloned embryos, and this histone H3K9 demethylation may be crucial for gene activation of cloned embryos. Together, our results indicate that dynamic reprogramming of histone acetylation and methylation modifications in cloned embryos is developmentally regulated.  相似文献   
92.
After low temperature (16℃) treatment, the net photosynthetic rate, chlorophyll content and FBPase activity tended to decrease and ratio of chlorophyll a/b, stomatal resistance, sucrose and starch content tended to increase in rice flag leaves at heading stage. However, the Pi content and water potential did not show pronounced change. The flag leaf chloroplasts contained large starch grains after three days at low temperature. The recovery of net photosynthetic rate in the flag leaves which had recieved stress at 16℃ for three days and transferred to normal nature condition was gradually increased. It almost came up to the value of control after five days. However, the decrease in stomatal resistance was rapid. It was almost lowered to the value of control after one day. Under normal nature comdition for five days, the chlorophyll content and FBPase activity reached near to the value of control. Meanwhile, the ratio of chlorophyll a/b, the sucrose and starch content almost declined to the value of control. The large starch grain in flag leaf chloroplast also disappeared. According to the experimental results, we discussed the relationship between the above-mentioned various changes and net photosynthetic rate We suggested that the effect of low temperature on photosynthesis might be one of factors in yield-reduction of rice.  相似文献   
93.
开封沙地试验区不同作物种植方式的综合效益评价   总被引:9,自引:0,他引:9  
开封沙区地处河南省沙区腹地,风沙灾害严重,旱涝灾害频繁,地力瘠薄,严重障碍着沙区农牧业生产的发展。因此,自1983年在国家科技攻关的基础上建立了开封沙地试验区,探索平原沙区农业生产的发展模式。尤其是“八五”攻关期间,深化农林牧复合生态系统的优化研究,...  相似文献   
94.
部分双壳贝类的线粒体遗传方式不同于标准的母系遗传(SMI),被称为双单性遗传现象(DUI)。池蝶蚌(Hyriopsis schlegelii)是淡水双壳贝类,是否存在双单性遗传现象?本文采用普通PCR扩增、SHOT-GUN测序及软件拼接获得了雄性池蝶蚌线粒体基因组(以下简称Hs-mtDNA)全序列,并与本实验室已报道的雌性池蝶蚌线粒体基因组全序列进行差异性分析。结果表明,雄性和雌性Hs-mtDNA全长分别为15961 bp和15939 bp,雄性比雌性长22 bp,雌雄线粒体基因组成与排列顺序一致。各蛋白编码基因的碱基数目均一致,碱基转换率为1.01%~7.34%,颠换率为0.00%~0.62%,氨基酸差异率为0.00%~9.35%;其中,COX1基因变异率为2.72%;COX2基因碱基变异率最高,达7.50%,雄性COX2的3'末端没有出现编码延伸区。雄性12S rRNA基因发生5 bp的碱基转换,差异率为0.6%;16S rRNA基因比雌性长9 bp,碱基差异率仅为1.2%。雌雄tRNA-His均位于H链上,介于COX2与ND3之间,没有出现位置的差异性。雌雄Hs-mtDNA的非编码区共有28个1~393 bp的片段,但未见控制区。在tRNA-Glu与tRNA-Tyr间有一段长393 bp的非编码区存在蛋白质翻译功能,但非雄性特异性蛋白。以COX1基因建立系统进化树,池蝶蚌和三角帆蚌(H.cumingii)聚在一起,而含有双单性遗传现象的无齿蚌属的Pyganodon grandis、小方蚌亚科的Venustaconcha ellipsiformis及小方形蚌属的Quadrula quadrula三者雄性聚为一支,雌性聚为一支。因此,雌雄池蝶蚌线粒体存在一定的差异性,但其差异要比其他具有双单性遗传现象的淡水双壳类小得多,且池蝶蚌线粒体遗传可能不存在双单性遗传现象。  相似文献   
95.
Didymodon mesopapillosus J. Kou, X.‐M. Shao & C. Feng is described and illustrated as a new species from Tibet, China. It is characterized mainly by its ovate to ovate‐lanceolate leaves appressed to weakly erect when dry, margins recurved from leaf base to apex, laminal cell superficial walls markedly thicker than the internal walls, laminal papillae present only on both sides of costa, short‐excurrent costa, undifferentiated basal cells and differentiated perichaetial leaves. This species is compared with similar species and its ecology is discussed.  相似文献   
96.
Silicate minerals are dominant soil components. Thus, plant roots are constantly exposed to silicic acid. High silicon intake, enabled by root silicon transporters, correlates with increased tolerance to many biotic and abiotic stresses. However, the underlying protection mechanisms are largely unknown. Here, we tested the hypothesis that silicon interacts with the plant hormones, and specifically, that silicic acid intake increases cytokinin biosynthesis. The reaction of sorghum (Sorghum bicolor) and Arabidopsis plants, modified to absorb high versus low amounts of silicon, to dark‐induced senescence was monitored, by quantifying expression levels of genes along the senescence pathway and measuring tissue cytokinin levels. In both species, detached leaves with high silicon content senesced more slowly than leaves that were not exposed to silicic acid. Expression levels of genes along the senescence pathway suggested increased cytokinin biosynthesis with silicon exposure. Mass spectrometry measurements of cytokinin suggested a positive correlation between silicon exposure and active cytokinin concentrations. Our results indicate a similar reaction to silicon treatment in distantly related plants, proposing a general function of silicon as a stress reliever, acting via increased cytokinin biosynthesis.  相似文献   
97.
In this study, the complete mitochondrial (mt) genome sequence of the South China deep‐sea giant isopod Bathynomus sp. was determined, and this study is the first to explore in detail the mt genome of a deep‐sea member of the order Isopoda. This species belongs to the genus Bathynomus, the members of which are saprophagous residents of the deep‐sea benthic environment; based on their large size, Bathynomus is included in the “supergiant group” of isopods. The mt genome of Bathynomus sp. is 14,965 bp in length and consists of 13 protein‐coding genes, two ribosomal RNA genes, only 18 transfer RNA genes, and a noncoding control region 362 bp in length, which is the smallest control region discovered in Isopoda to date. Although the overall genome organization is typical for metazoans, the mt genome of Bathynomus sp. shows a number of derived characters, such as an inversion of 10 genes when compared to the pancrustacean ground pattern. Rearrangements in some genes (e.g., cob, trnT, nad5, and trnF) are shared by nearly all isopod mt genomes analyzed thus far, and when compared to the putative isopod ground pattern, five rearrangements were found in Bathynomus sp. Two tRNAs exhibit modified secondary structures: The TΨC arm is absent from trnQ, and trnC lacks the DHU. Within the class Malacostraca, trnC arm loss is only found in other isopods. Phylogenetic analysis revealed that Bathynomus sp. (Cymothoida) and Sphaeroma serratum (Sphaeromatidea) form a single clade, although it is unclear whether Cymothoida is monophyletic or paraphyletic. Moreover, the evolutionary rate of Bathynomus sp. (dN/dS [nonsynonymous mutational rate/synonymous mutational rate] = 0.0705) is the slowest measured to date among Cymothoida, which may be associated with its relatively constant deep‐sea environment. Overall, our results may provide useful information for understanding the evolution of deep‐sea Isopoda species.  相似文献   
98.
99.
Bidentate ligands 2,2′-biquinoline (biq) and 6,6′-dimethyl-2,2′-bipyridine (dmbpy) with steric hindrance substituents cis to the nitrogen atoms have been used in the synthesis of transition metal complexes. Six new doubly end-on azido-bridged binuclear complexes [M2(biq)21,1-N3)2(N3)2] (M = Ni (1), M = Co (2)), [M2(biq)21,1-N3)2Cl2] (M = Ni (3), M = Co (4)), [M2(dmbpy)21,1-N3)2(N3)2] (M = Ni (5), M = Co (6)) and one end-to-end thiocyanato-bridged polymeric [Ni(dmbpy)(μ1,3-SCN)(NCS)]n (7) have been synthesized and characterized by single crystal X-ray diffraction analysis and magnetic studies. Complexes 1-6 comprise five-coordinate M(II) ions bridged by two end-on azide ligands. The bridging M-N-M bond angles are in the small range 104.1-105.2°. Complex 7 consists of a singly thiocyanate-bridged Ni(II) chain in which Ni(II) ions are five-coordinate. This research suggests that the bulky ligands play a key role in the formation of five-coordinate coordination structure. All complexes display intramolecular intermetallic ferromagnetic coupling with JNiNi and JCoCo of ca. 23 or 13 cm−1 based on the Hamiltonian (S1 = S2 = 1 for Ni2, or 3/2 for Co2). The singly SCN-bridged chainlike complex 7 shows intrachain ferromagnetic interaction with J = 3.96(2) cm−1 and D = −4.55(8) cm−1 (. Magneto-structural correlationship has been investigated.  相似文献   
100.
Photosystem II (PSII) is a large multiprotein complex, which catalyses water splitting and plastoquinone reduction necessary to transform sunlight into chemical energy. Detailed functional and structural studies of the complex from higher plants have been hampered by the impossibility to purify it to homogeneity. In this work, homogeneous preparations ranging from a newly identified particle composed by a monomeric core and antenna proteins to the largest C2S2M2 supercomplex were isolated. Characterization by biochemical methods and single particle electron microscopy allowed to relate for the first time the supramolecular organization to the protein content. A projection map of C2S2M2 at 12 Å resolution was obtained, which allowed determining the location and the orientation of the antenna proteins. Comparison of the supercomplexes obtained from WT and Lhcb‐deficient plants reveals the importance of the individual subunits for the supramolecular organization. The functional implications of these findings are discussed and allow redefining previous suggestions on PSII energy transfer, assembly, photoinhibition, state transition and non‐photochemical quenching.  相似文献   
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