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991.
本研究旨在筛选调控北极狐毛色基因CBD103的启动子活性区域及转录因子结合位点,为揭示CBD103基因调控北极狐毛色形成的分子遗传机制提供依据。克隆获得了北极狐CBD103基因5′侧翼区2 123 bp的片段,并构建了4个不同长度的启动子缺失片段表达载体,通过双荧光素酶检测系统对启动子活性进行检测。对启动子活性最高区域预测出的3个特异性蛋白1 (Sp1)转录因子结合位点分别进行点突变并构建3个突变载体,利用双荧光素酶检测系统测定其活性。结果显示,在构建的4个不同长度启动子缺失片段中1 656 (-1 604/+51)区域活性最高,在此区域构建的3个突变载体的启动子活性较野生型(片段1 656)均显著降低,说明-1 604/+51区域为北极狐CBD103基因的核心启动子区,-1 552/-1 564、-1 439/-1 454和-329/-339区域为正调控区域。文中成功获得了北极狐CBD103基因的核心启动子区域和正调控区域,这为进一步研究该基因调控北极狐被毛颜色分子遗传机制奠定了基础。 相似文献
992.
Yuan‐Yuan Li Lei Guo Hui Li Jian Li Feng Dong Zi‐Yun Yi Ying‐Chun Ouyang Yi Hou Zhen‐Bo Wang Qing‐Yuan Sun Sheng‐Sheng Lu Zhiming Han 《Molecular reproduction and development》2019,86(9):1189-1198
NEK5, a member of never in mitosis‐gene A‐related protein kinase, is involved in the regulation of centrosome integrity and centrosome cohesion at mitosis in somatic cells. In this study, we investigated the expression and function of NEK5 during mouse oocyte maturation and preimplantation embryonic development. The results showed that NEK5 was expressed from germinal vesicle (GV) to metaphase II (MII) stages during oocyte maturation with the highest level of expression at the GV stage. It was shown that NEK5 localized in the cytoplasm of oocytes at GV stage, concentrated around chromosomes at germinal vesicle breakdown (GVBD) stage, and localized to the entire spindle at prometaphase I, MI and MII stages. The small interfering RNA‐mediated depletion of Nek5 significantly increased the phosphorylation level of cyclin‐dependent kinase 1 in oocytes, resulting in a decrease of maturation‐promoting factor activity, and severely impaired GVBD. The failure of meiotic resumption caused by Nek5 depletion could be rescued by the depletion of Wee1B. We found that Nek5 depletion did not affect CDC25B translocation into the GV. We also found that NEK5 was expressed from 1‐cell to blastocyst stages with the highest expression at the blastocyst stage, and Nek5 depletion severely impaired preimplantation embryonic development. This study demonstrated for the first time that NEK5 plays important roles during meiotic G2/M transition and preimplantation embryonic development. 相似文献
993.
Su Ya-ting Liu Chun Long Zhu Ren Hang Guo Xiao-hua 《Probiotics and antimicrobial proteins》2019,11(3):921-930
Probiotics and Antimicrobial Proteins - A dipicolonic acid fluorimetry assay was used instead of plate counting for the assessment of spore yields for enhanced optimization efficiency. The... 相似文献
994.
Bang An Xingrong Hou Yunfeng Guo Shixue Zhao Hongli Luo Chaozu He Qiannan Wang 《Fungal biology》2019,123(5):423-430
Plant pathogens employ effectors as molecular weapons to manipulate host immunity and facilitate colonization. Fusarium oxysporum f. sp. cubense is the agent of wilt disease in banana plantlets and four races of the pathogen have been identified based on the cultivar specificity. A total of 9 SIX genes have been detected in the genome of Foc TR4 and 6 genes detected in Foc1. Among these SIX genes, SIX2 and SIX8 are only detected in Foc TR4, not identified in Foc1. Expression profiles analysis revealed that SIX genes of Foc TR4 are highly induced after inoculation to Cavendish banana plantlets. Virulence analysis of the SIX2 and SIX8 knock-out mutants showed that SIX8 is required for the virulence of Foc TR4 while SIX2 has no obvious functions. Over expression of SIX8-FLAG proteins in the SIX8 knock-out mutant partly restored the virulence. Western blot analysis suggested that SIX8 could be secreted into the extracellular space and a signal peptide resided the N-terminal polypeptide sequence. This study provides some clues for further research on mechanism of SIX8 in regulating virulence of Foc TR4. 相似文献
995.
996.
Photoacoustic microscopy (PAM) is a noninvasive imaging technique and is excellent to study structural and functional changes in the microcirculation. In this work, a lipopolysaccharide (LPS)‐induced inflammation model in mice is noninvasively evaluated by PAM. PAM is used to image the microvascular structural changes in mice for 8 hours after the LPS with different concentrations is applied. Quantitative analysis of five vessel parameters is conducted, which shows that the rate of reduction in microvasculature is highly dependent on the applied LPS concentrations. For low‐concentration LPS, changes in the microvasculature are not obvious over the observation period, whereas for high‐concentration LPS, quick and marked reduction in the microvasculature is observed. In addition, changes in capillaries are more significant than those in relatively large vessels. The results show that PAM is able to evaluate the inflammation mouse model by studying structural (and potentially functional) changes in the microcirculation. Furthermore, PAM may have potential for early intervention and treatment plan optimization of sepsis by monitoring the microcirculation and inflammatory response. 相似文献
997.
Jianing Fu Julien Zuber Mercedes Martinez Brittany Shonts Aleksandar Obradovic Hui Wang Sai-ping Lau Amy Xia Elizabeth E. Waffarn Kristjana Frangaj Thomas M. Savage Michael T. Simpson Suxiao Yang Xinzheng V. Guo Michelle Miron Takashi Senda Kortney Rogers Adeeb Rahman Megan Sykes 《Cell Stem Cell》2019,24(2):227-239.e8
998.
999.
Licong Dai Xiaowei Guo Xun Ke Fawei Zhang Yikang Li Cuoji Peng Kai Shu Qian Li Li Lin Guangmin Cao Yangong Du 《Ecology and evolution》2019,9(16):9395-9406
Grazing is an important modulator of both plant productivity and biodiversity in grassland community, yet how to determine a suitable grazing intensity in alpine grassland is still controversy. Here, we explore the effects of different grazing intensities on plant biomass and species composition, both at community level and functional group level, and examines the productivity–species richness relationship under four grazing patterns: no grazing (CK), light grazing (LG), moderate grazing, (MG) and heavy grazing (HG), attempt to determine a suitable grazing intensity in alpine grassland. The results were as follows. The total aboveground biomass (AGB) reduced with increasing grazing intensity, and the response of plant functional groups was different. AGB of both sedges and legumes increased from MG to HG, while the AGB of forbs reduced sharply and the grass AGB remained steady. There was a significant positive relationship between productivity and species richness both at community level and functional group level. In contrast, the belowground biomass (BGB) showed a unimodal relationship from CK to HG, peaking in MG (8,297.72 ± 621.29 g/m2). Interestingly, the grassland community tends to allocate more root biomass to the upper soil layer under increasing grazing intensities. Our results suggesting that moderate levels of disturbance may be the optimal grassland management strategy for alpine meadow in terms of root production. 相似文献