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961.
七姊妹山常绿落叶阔叶混交林物种多样性格局及其环境解释 总被引:2,自引:0,他引:2
依托七姊妹山自然保护区6 hm2森林动态监测样地研究平台,基于样地和物种基本信息数据,采用多元回归树和冗余分析研究方法,探讨地形因子对生境的塑造作用及物种分布特征,分析不同群丛类型下物种多样性的变化规律。结果表明:(1)依据“1 SE”规则,4次分割依次以海拔(1 453 m)、坡度(23.13°)、海拔(1 398 m)、凹凸度(4.094)为分界点可将150个样地分为5个群丛。(2)冗余分析表明地形因子对物种分布解释量为0.077 6,解释率为16.36%,各环境因子对物种分布的解释力度依次为:海拔>坡度>凹凸度;坡向与物种的分布无显著相关性。(3)5个群丛中立木密度与胸高截面积最高的均为群丛5(527.4株/400 m2;3.495 cm2/株),立木密度与平均胸高截面积最低为群丛4(225.4株/400 m2;3.057 cm2/株)。(4)5个群丛中Shannon Winener丰富度指数与Simpson优势度指数最高的均为群丛2,最低的为群丛5,物种多样性尺度效应明显;Pielou均匀度指数最高为群丛4,最低为群丛5。(5)两两群丛间Jaccard相似性系数最低为群丛1 群丛2(0.331),最高的为群丛4 群丛5(0.645),海拔对β多样性格局影响较大。研究认为,七姊妹山自然保护区6 hm2样地地形因子对该区域生境的塑造具有一定作用,海拔、坡度、凹凸度组成的“环境筛”影响了该区域的物种分布及多样性格局。 相似文献
962.
Zhe‐Long Jin Namgoong Suk Nam‐Hyung Kim 《Molecular reproduction and development》2019,86(9):1126-1137
Meiotic oocytes lack classic centrosomes; therefore, bipolar spindle assembly depends on the clustering of acentriolar microtubule‐organizing centers (MTOCs) into two poles. The bipolar spindle is an essential cellular component that ensures accurate chromosome segregation during anaphase. If the spindle does not form properly, it can result in aneuploidy or cell death. However, the molecular mechanism by which the bipolar spindle is established is not yet fully understood. Tumor suppressor p53‐binding protein 1 (TP53BP1) is known to mediate the DNA damage response. Several recent studies have indicated that TP53BP1 has noncanonical roles in processes, such as spindle formation; however, the role of TP53BP1 in oocyte meiosis is currently unclear. Our results show that TP53BP1 knockdown affects spindle bipolarity and chromatin alignment by altering MTOC stability during oocyte maturation. TP53BP1 was localized in the cytoplasm and displayed an irregular cloud pattern around the spindle/chromosome region. TP53BP1 was also required for the correct localization of MTOCs into the two spindle poles during pro‐meiosis I. TP53BP1 deletion altered the MTOC‐localized Aurora Kinase A. TP53BP1 knockdown caused the microtubules to detach from the kinetochores and increased the rate of aneuploidy. Taken together, our data show that TP53BP1 plays crucial roles in chromosome stability and spindle bipolarity during meiotic maturation. 相似文献
963.
Yong‐Han Kim In‐Won Lee Yu‐Jin Jo Nam‐Hyung Kim Suk Namgoong 《Molecular reproduction and development》2019,86(8):972-983
Mammalian oocytes lack centrioles but can generate bipolar spindles using several different mechanisms. For example, mouse oocytes have acentriolar microtubule organization centers (MTOCs) that contain many components of the centrosome, and which initiate microtubule polymerization. On the contrary, human oocytes lack MTOCs and the Ran‐mediated mechanisms may be responsible for spindle assembly. Complete knowledge of the different mechanisms of spindle assembly is lacking in various mammalian oocytes. In this study, we demonstrate that both MTOC‐ and Ran‐mediated microtubule nucleation are required for functional meiotic metaphase I spindle generation in porcine oocytes. Acentriolar MTOC components, including Cep192 and pericentrin, were absent in the germinal vesicle and germinal vesicle breakdown stages. However, they start to colocalize to the spindle microtubules, but are absent in the meiotic spindle poles. Knockdown of Cep192 or inhibition of Polo‐like kinase 1 activity impaired the recruitment of Cep192 and pericentrin to the spindles, impaired microtubule assembly, and decreased the polar body extrusion rate. When the RanGTP gradient was perturbed by the expression of dominant negative or constitutively active Ran mutants, severe defects in microtubule nucleation and cytokinesis were observed, and the localization of MTOC materials in the spindles was abolished. These results demonstrate that the stepwise involvement of MTOC‐ and Ran‐mediated microtubule assembly is crucial for the formation of meiotic spindles in porcine oocytes, indicating the diversity of spindle formation mechanisms among mammalian oocytes. 相似文献
964.
目的: 研究姜黄素(CUR)及其类似物J7对糖尿病大鼠睾丸氧化应激损伤的干预作用。方法: 60只SD大鼠随机分组,其中10只作为正常(NC)组,余50只通过高脂饮食和腹腔注射链脲佐菌素诱导建立糖尿病大鼠模型,造模成功后将其再分为4组:糖尿病(DM,n=12)组、姜黄素治疗(CUR,n=10)组、J7高剂量治疗(J+,n=10)组、J7低剂量治疗(J-,n=10)组。CUR组大鼠每天予以姜黄素20 mg/kg灌胃治疗,J+及J-组分别予以J7 20 mg/kg、10 mg/kg灌胃治疗,8周后处死大鼠,测量各组大鼠体重、空腹血糖,羟胺法和硫代巴比妥酸法分别检测超氧化物歧化酶(SOD)活性和丙二醛(MDA)含量,Western blot法检测tNrf2、pNrf2、CAT、NQO1蛋白表达水平,qRT-PCR检测CAT、NQO1、HO1 mRNA表达水平,光镜下观察大鼠睾丸形态学改变,免疫组化检测Nrf2及CAT蛋白表达情况。结果: DM组血糖、MDA水平升高(P<0.05),体重、SOD活性、pNrf2/tNrf2、CAT、NQO1蛋白及CAT、NQO1、HO1 mRNA水平均有下降(P<0.05);光镜下见睾丸各级生精细胞减少、排列紊乱;免疫组化显示Nrf2蛋白核周表达量下降,CAT蛋白表达水平降低。经姜黄素及J7治疗后,三个治疗组的MDA水平均下降(P<0.05),SOD活性、pNrf2/tNrf2、CAT、NQO1蛋白及NQO1、HO1 mRNA水平均上升(P<0.05),J+及J-组血糖显著下降(P<0.05),J+组CAT mRNA水平显著上升(P<0.05);J+组pNrf2/tNrf2比值明显高于CUR组及J-组(P<0.05),J+组CAT蛋白水平也明显高于J-组(P<0.05),其余指标在三个治疗组间不具有显著性差异。光镜下见三个治疗组睾丸形态学病变减轻;免疫组化显示Nrf2蛋白核周表达量上升,CAT蛋白表达水平升高。提示高剂量J7抗糖尿病大鼠睾丸的氧化应激损伤的能力较强。结论: 姜黄素及J7可在一定程度上对抗糖尿病大鼠睾丸的氧化应激损伤,其机制可能与Nrf2-ARE信号通路的激活相关。 相似文献
965.
目的 比较不同分子大小的6A型肺炎球菌(serotype 6A Streptococcus Pneumoniae )结合物和佐剂吸附在小鼠体内免疫原性的影响。方法 通过乙酸水解降低6A型荚膜多糖的相对分子质量制备成水解物,水解物经1-氰基-4-二甲胺基吡啶四氟硼酸盐(CDAP)活化并与破伤风类毒素己二酸酰肼衍生物TT AH 结合,制备成结合物。用Sepharose 4 Fast Flow 纯化结合物,并根据化学检测结果将结合物分为 K D 0.0~0.2、 K D 0.2~0.4、 K D 0.4~0.6等3个组分,每个组分分别以磷酸铝佐剂吸附,将吸附前后的各个组分按照每针次每只小鼠0.2 μg分别免疫小鼠,并采用ELISA检测结合物在小鼠体内的抗体水平。结果 3种不同相对分子质量吸附前后的结合物在小鼠体内均能产生较高水平的抗体,各组2、3针之间具有明显的加强效应。在吸附组和未吸附组中,3种不同分子大小的结合物在小鼠体内产生抗体水平无明显差异。各组分佐剂吸附后的结合物血清抗体滴度高于未吸附组,但这种差异无统计学意义( P > 0.05)。结论 结合物的分子大小对小鼠体内抗体水平的产生没有明显影响;磷酸铝佐剂吸附对于不同分子大小的结合物在小鼠体内的免疫原性有一定的增强效应,但这种增强效应差异无统计学意义。 相似文献
966.
目的:利用喷雾干燥工艺制备芽孢杆菌dhs-330-021菌粉,并研究菌粉的活性及稳定性。方法:以脱脂乳、海藻糖、β-环糊精和谷氨酸钠为保护剂,采用喷雾干燥(条件为:进口温度100℃,出口温度50~60℃,进样速度2~4mL/min)制备芽孢杆菌菌粉,以喷干存活率和菌粉活菌数为指标,选择最佳制备条件。结果:获得喷干保护剂配方为脱脂乳10.0%、海藻糖6.0%、β-环糊精13.0%、谷氨酸钠15.0%,喷干存活率为65.9%,菌粉活菌数为1.38×109CFU/g,存放180 d后菌粉活菌数为1.03×10~9CFU/g。结论:喷雾干燥工艺可以用于芽孢杆菌dhs-330-021菌粉的制备,获得的菌粉稳定性较好。 相似文献
967.
Xiaoting Qiu Wenjun Zhu Weikai Wang Haixiao Jin Peng Zhu Rongyu Zhuang Xiaojun Yan 《Journal of structural biology》2019,205(3):44-52
The 2-carboxy-6-hydroxyoctahydroindole (Choi) moiety is a hallmark of aeruginosins, a class of cyanobacterial derived bioactive linear tetrapeptides that possess antithrombotic activity. The biosynthetic pathway of Choi has yet to be resolved. AerE is a cupin superfamily enzyme that was shown to be involved in the biosynthesis of Choi, but its exact role remains unclear. This study reports the functional characterization and structural analyses of AerE. Enzymatic observation reveals that AerE can dramatically accelerate 1,3-allylic isomerization of the non-aromatic decarboxylation product of prephenate, dihydro-4-hydroxyphenylpyruvate (H2HPP). This olefin isomerization reaction can occur non-enzymatically and is the second step of the biosynthetic pathway from prephenate to Choi. The results of comparative structural analysis and substrate analogue binding geometry analysis combined with the results of mutational studies suggest that AerE employs an induced fit strategy to bind and stabilize the substrate in a particular conformation that is possibly favorable for 1,3-allylic isomerization of H2HPP through coordinate bonds, hydrogen bonds, π–π conjugation interaction and hydrophobic interactions. All of these interactions are critical for the catalytic efficiency. 相似文献
968.
969.
Suresh Anand Sadananthan Mya Thway Tint Navin Michael Izzuddin M. Aris See Ling Loy Kuan Jin Lee Lynette Pei‐Chi Shek Fabian Kok Peng Yap Kok Hian Tan Keith M. Godfrey Melvin Khee‐Shing Leow Yung Seng Lee Michael S. Kramer Peter D. Gluckman Yap Seng Chong Neerja Karnani Christiani Jeyakumar Henry Marielle Valerie Fortier S. Sendhil Velan 《Obesity (Silver Spring, Md.)》2019,27(3):470-478
970.
Yufei Wang Bang Wang Haihua Xie Qianwen Ren Xiexie Liu Fanfan Li Xiujuan Lv Xiubin He Congsheng Cheng Ruzhi Deng Jin Li Junzhao Zhao Zongming Song Feng Gu 《Biotechnology journal》2019,14(7)
Genome editing using RNA‐guided nucleases in their ribonucleoprotein (RNP) form represents a promising strategy for gene modification and therapy because they are free of exogenous DNA integration and have reduced toxicity in vivo and ex vivo. However, genome editing by Cas9 nuclease from Staphylococcus aureus (SaCas9) has not been reported in its RNP form, which recognizes a longer protospacer adjacent motif (PAM), 5′‐NNGRRT‐3′, compared with Streptococcus pyogenes Cas9 (SpCas9) of 5′‐NGG‐3′ PAM. Here, SaCas9‐RNP‐mediated genome editing is reported in human cells. The SaCas9‐RNP displayed efficient genome editing activities of enhanced green fluorescent protein (EGFP) coding gene as well as three endogenous genes (OPA1, RS1, and VEGFA). Further, SaCas9‐RNP is successfully implemented to correct a pathogenic RS1 mutation for X‐linked juvenile retinoschisis. It is also shown that off‐target effects triggered by SaCas9‐RNP are undetectable by targeted deep sequencing. Collectively, this study demonstrates the potential of SaCas9‐RNP‐mediated genome editing in human cells, which could facilitate genome‐editing‐based therapy. 相似文献