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To investigate the main forces controlling the containment of transposable elements (TE) in natural populations, we analyzed the copia, mdg1, and 412 elements in various populations of Drosophila melanogaster and D. simulans. A lower proportion of insertion sites on the X chromosome in comparison with the autosomes suggests that selection against the detrimental effects of TE insertions is the major force containing TE copies in populations of Drosophila. This selection effect hypothesis is strengthened by the absence of the negative correlation between recombination rate and TE copy number along the chromosomes, which was expected under the alternative ectopic exchange model (selection against the deleterious rearrangements promoted by recombination between TE insertions). A cline in 412 copy number in relation to latitude was observed among the natural populations of D. simulans, with very high numbers existing in some local populations (around 60 copies in a sample from Canberra, Australia). An apparent absence of selection effects in this Canberra sample and a value of transposition rate equal to 1–2 × 10-3 whatever the population and its copy number agree with the idea of recent but temporarily drastic TE movements in local populations. The high values of transposition rate in D. simulans clearly disfavor the hypothesis that the low amount of transposable elements in this species could result from a low transposition rate. This revised version was published online in August 2006 with corrections to the Cover Date.  相似文献   
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秦岭雄性羚牛的发情行为与其社会状态的关系   总被引:1,自引:0,他引:1  
2004年5月31日至8月31日在陕西省佛坪县国家级自然保护区,对羚牛秦岭亚种(Budorcas taxicolor bedfordi)的繁殖行为及雄牛的社会状态进行了研究。研究期间每天在比较容易见到羚牛的区域内沿固定路线寻找羚牛,在不惊扰羚牛正常活动的情况下,记录牛群大小、群内个体的性别、年龄、雄性的社会状态,即是单独活动还是在繁殖群中;社会状态的变动,即每只是进入还是离开繁殖群;羚牛群中个体之间的相互关系,包括入群的独牛与群内其它雄牛之间的行为、与群内雌牛之间的行为。同时用摄像机辅助记录羚牛在群内的行为,并根据图像资料对记录的数据进行校正。研究期间累计对277 头次雄性羚牛的繁殖行为进行了观察,记录到241次繁殖行为。虽然6月初至8月下旬都可以见到羚牛的繁殖活动,但80% 以上的繁殖行为发生在6月20日至7月10日期间,其中以6月21 ~ 30日间的繁殖活动最多(105 次)。繁殖季节中雄性羚牛有两种社会状态,即在繁殖群中和单独活动(即独牛)。研究期间累计的独牛比例占成年雄性的30. 32%,其中72. 62%的独牛出现在6月10 日至7 月10 日。6 月21 ~ 30 日间独牛比例最高,占成年雄性个体的50. 67%。雄牛进出繁殖群的现象比较常见,独牛的比例与繁殖行为正相关。繁殖高峰期后,单独活动的雄牛数量迅速减少。雄牛的社会状态会随着繁殖期的不同阶段发生改变,独牛在不同繁殖群之间移动寻求更多的交配机会。我们的研究结果不支持以往认为独牛是繁殖争斗失败者的观点。  相似文献   
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Bioassay-directed fractionation of the cytotoxicity active fraction of the whole plant from Solanum lyratum led to the isolation of a new steroidal saponin, diosgenin 3-O-beta-D-glucopyranosiduronic acid methyl ester (2), as well as four known compounds, diosgenin (1), diosgenin 3-O-beta-D-glucopyranosiduronic acid (3), diosgenin 3-O-alpha-L-rhamnopyranosyl-(1-->2)-beta-D-glucopyranosiduronic acid (4), diosgenin 3-O-alpha-L-rhamnopyranosyl-(1-->2)-beta-D-glucuroniduronic acid methyl ester (5). The structures of the isolated compounds were elucidated on the basis of their spectral data and chemical evidences. Compound 1 was isolated for the first time from this plant, and compound 3 was isolated as a new natural product. Cytotoxic activities of the isolated compounds were evaluated and the cytotoxicities of compounds 2-5 reported for the first time.  相似文献   
5.
Plant defense responses need to be tightly regulated to prevent auto-immunity, which is detrimental to growth and development. To identify negative regulators of Resistance (R) protein-mediated resistance, we screened for mutants with constitutive defense responses in the npr1-1 background. Map-based cloning revealed that one of the mutant genes encodes a conserved TPR domain-containing protein previously known as SRFR1 (SUPPRESSOR OF rps4-RLD). The constitutive defense responses in the srfr1 mutants in Col-0 background are suppressed by mutations in SNC1, which encodes a TIR-NB-LRR (Toll Interleukin1 Receptor-Nucleotide Binding-Leu-Rich Repeat) R protein. Yeast two-hybrid screens identified SGT1a and SGT1b as interacting proteins of SRFR1. The interactions between SGT1 and SRFR1 were further confirmed by co-immunoprecipitation analysis. In srfr1 mutants, levels of multiple NB-LRR R proteins including SNC1, RPS2 and RPS4 are increased. Increased accumulation of SNC1 is also observed in the sgt1b mutant. Our data suggest that SRFR1 functions together with SGT1 to negatively regulate R protein accumulation, which is required for preventing auto-activation of plant immunity.  相似文献   
6.
Apoptosis and autophagy mutually regulate various cellular physiological and pathological processes. The crosstalk between autophagy and apoptosis is multifaceted and complicated. Elucidating the molecular mechanism of their crosstalk will advance the therapeutic applications of autophagy for treating cancer and other diseases. NOXA, a BH3-only member of the BCL-2 family, was reported to induce apoptosis and promote autophagy. Here, we report that autophagy regulates apoptosis by targeting NOXA for degradation. Inhibiting autophagy increases NOXA protein levels by extending the protein half-life. NOXA accumulation effectively suppresses tumor cell growth by inducing apoptosis, which is further enhanced when p53 is present. Mechanistically, NOXA is hijacked by p62 as autophagic cargo, and its three lysine residues at the C-terminus are necessary for NOXA degradation in lysosomes. Taken together, our study demonstrates that NOXA serves as a bridge in the crosstalk between autophagy and apoptosis and implies that autophagy inhibitors could be an effective therapy for cancer, especially wild-type p53-containing cancer.  相似文献   
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超低频脉冲磁场抑制癌瘤和提高细胞免疫功能的实验研究   总被引:4,自引:0,他引:4  
在报道用电子显微镜观测超低频脉冲磁场(峰值磁场0.6~2.0T,磁场梯度10~100T·m-1,脉冲宽度20~200ms,重复频率0.16~1.34Hz)抑制鼠S-180肉瘤和加强免疫细胞溶癌作用以后,报道了用Faulgen染色法测定肉瘤细胞核的DNA倍性,和用电镜技术和细胞结构的体视学分析磁场对癌细胞形态的影响,观测到磁场影响癌细胞的代谢:磁场使癌细胞的恶性程度降低,抑制其高速和异形生长;磁场抑制癌细胞的分裂和DNA的复制;磁场提高细胞免疫功能,加强淋巴细胞、浆细胞反应.  相似文献   
10.
Bi GQ 《Biological cybernetics》2002,87(5-6):319-332
Recent experimental results on spike-timing-dependent plasticity (STDP) and heterosynaptic interaction in various systems have revealed new temporal and spatial properties of activity-dependent synaptic plasticity. These results challenge the conventional understanding of Hebb's rule and raise intriguing questions regarding the fundamental processes of cellular signaling. In this article, I review these new findings that lead to formulation of a new set of cellular rules. Emphasis is on evaluating potential molecular and cellular mechanisms that may underlie the spike-timing window of STDP and different patterns of heterosynaptic modifications. I also highlight several unresolved issues, and suggest future lines of research.  相似文献   
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