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81.
人早孕子宫蜕膜催乳素分泌的调节 总被引:1,自引:0,他引:1
子宫内膜蜕膜化对胚泡植入与妊娠维持是非常重要的。为探讨蜕膜化维持的调节机制 ,本文研究了妊娠早期人子宫蜕膜细胞催乳素 (PRL)分泌的调节。结果表明 :(1)孕酮显著地刺激PRL的分泌。 (2 )雌激素的作用与其浓度有关 ,生理浓度的雌激素对PRL分泌无明显影响 ,而高水平的雌激素抑制孕酮的刺激作用。合适的雌孕激素比例对蜕膜化的维持是必要的。 (3)RU486明显地抑制PRL的分泌 ,故认为孕酮的作用至少是部分通过受体介导的机制。 (4 )高浓度的cAMP (≥ 10 -5mol/L)显著增加PRL的分泌 ,cAMP信号系统可能在蜕膜化反应中发挥重要作用。 相似文献
82.
83.
座壳孢及其有性型是一类重要的虫生真菌,隶属子囊菌门、粪菌纲、肉座菌目、麦角菌科,能寄生粉虱和蚧类昆虫,可开发成一种环境友好型的生物农药。座壳孢及其有性型属成员广泛分布于热带和亚热带地区,该类群物种、栖息环境和生态适应的多样性使它们的代谢产物化学结构及其生物活性彰显出多样性特点,结构和功能多样的真菌代谢产物已成为发现新药先导化合物的重要资源。虫生真菌因其独特的生活方式和多种生存环境形成了与众不同的适应寄主特性及代谢通路,明显提高获得新颖结构、显著活性的代谢产物的几率,目前已是药物重点研发的领域。在座壳孢及其有性型代谢产物研究中已报道了萜类、黄酮类、醌类、环肽和甾醇等多种化合物,并具有抗肿瘤、抗疟疾、抗菌和杀虫等多种生物活性,可在农业、工业和医药保健等方面应用。本文对近年座壳孢及其有性型代谢产物的化学成分和生物活性等方面的研究进展进行概述,为促进座壳孢及其有性型代谢产物的深入研究、开发利用和新药创制提供参考。 相似文献
84.
Photosynthetic characteristics and tolerance to photo-oxidation of transgenic rice expressing C4 photosynthesis enzymes 总被引:16,自引:0,他引:16
The photosynthetic characteristics of four transgenic rice lines over-expressing rice NADP-malic enzyme (ME), and maize phosphoenolpyruvate carboxylase (PC), pyruvate,orthophosphate dikinase (PK), and PC+PK (CK) were investigated using outdoor-grown plants.
Relative to untransformed wild-type (WT) rice, PC transgenic rice exhibited high PC activity (25-fold increase) and enhanced
activity of carbonic anhydrase (more than two-fold increase), while the activity of ribulose-bisphosphate carboxylase/oxygenase
(Rubisco) and its kinetic property were not significantly altered. The PC transgenic plants also showed a higher light intensity
for saturation of photosynthesis, higher photosynthetic CO2 uptake rate and carboxylation efficiency, and slightly reduced CO2 compensation point. In addition, chlorophyll a fluorescence analysis indicates that PC transgenic plants are more tolerant to photo-oxidative stress, due to a higher capacity
to quench excess light energy via photochemical and non-photochemical means. Furthermore, PC and CK transgenic rice produced
22–24% more grains than WT plants. Taken together, these results suggest that expression of maize C4 photosynthesis enzymes in rice, a C3 plant, can improve its photosynthetic capacity with enhanced tolerance to photo-oxidation.
This revised version was published online in June 2006 with corrections to the Cover Date. 相似文献
85.
Linlin Jiang Yingbo Wang Shuhui Zhang Rui He Wei Li Jiao Han Xianguo Cheng 《Plant Growth Regulation》2017,81(1):131-145
86.
人溶菌酶工程菌株培养条件的研究 总被引:4,自引:1,他引:4
人溶菌酶在食品工业和医药上具有广泛的用途,最近发现它在癌症的继承性免疫治疗上也有作用。为使人溶菌酶达到工业化生产,我们已成功地人工合成厂人溶菌酶基因,并构建了人溶菌酶基因的重组质粒和工程菌株。为提高该工程菌人溶菌酶的表达水平,我们对影响该工程菌表达人溶菌酶的培养条件进行探讨。 相似文献
87.
Qiuchan Huan Zhengxian Gao Peigen Wu Yingdi Zhang Haitao Xiao Jiao Peng 《化学与生物多样性》2023,20(6):e202300572
This study aims to explore the protective effects of Picroside III, an active ingredient of Picrorhiza scrophulariiflora, on the intestinal epithelial barrier in tumor necrosis factor-α (TNF-α) induced Caco-2 cells and dextran sulfate sodium (DSS) induced colitis in mice. Results show that Picroside III significantly alleviated clinical signs of colitis including body weight loss, disease activity index increase, colon shortening, and colon tissue damage. It also increased claudin-3, ZO-1 and occludin expressions and decreased claudin-2 expression in the colon tissues of mice with colitis. In vitro, Picroside III also significantly promoted wound healing, decreased the permeability of cell monolayer, upregulated the expressions of claudin-3, ZO-1 and occludin and downregulated the expression of claudin-2 in TNF-α treated Caco-2 cells. Mechanism studies show that Picroside III significantly promoted AMP-activated protein kinase (AMPK) phosphorylation in vitro and in vivo, and blockade with AMPK could significantly attenuate the upregulation of Picroside III in ZO-1 and occludin expressions and the downregulation of claudin-2 expression in TNF-α treated Caco-2 cells. In conclusion, this study demonstrates that Picroside III attenuated DSS-induced colitis by promoting colonic mucosal wound healing and epithelial barrier function recovery via the activation of AMPK. 相似文献
88.
Amino Acids - Autophagy plays an important role in biological evolution and is regulated by many autophagy proteins. Accurate identification of autophagy proteins is crucially important to reveal... 相似文献
89.
Hongxia Liu Xuemei Si Zhenyu Wang Liangjing Cao Lifeng Gao Xiaolong Zhou Wenxi Wang Ke Wang Chengzhi Jiao Lei Zhuang Yunchuan Liu Jian Hou Tian Li Chenyang Hao Weilong Guo Jun Liu Xueyong Zhang 《Plant biotechnology journal》2023,21(6):1159-1175
Grain size and filling are two key determinants of grain thousand-kernel weight (TKW) and crop yield, therefore they have undergone strong selection since cereal was domesticated. Genetic dissection of the two traits will improve yield potential in crops. A quantitative trait locus significantly associated with wheat grain TKW was detected on chromosome 7AS flanked by a simple sequence repeat marker of Wmc17 in Chinese wheat 262 mini-core collection by genome-wide association study. Combined with the bulked segregant RNA-sequencing (BSR-seq) analysis of an F2 genetic segregation population with extremely different TKW traits, a candidate trehalose-6-phosphate phosphatase gene located at 135.0 Mb (CS V1.0), designated as TaTPP-7A, was identified. This gene was specifically expressed in developing grains and strongly influenced grain filling and size. Overexpression (OE) of TaTPP-7A in wheat enhanced grain TKW and wheat yield greatly. Detailed analysis revealed that OE of TaTPP-7A significantly increased the expression levels of starch synthesis- and senescence-related genes involved in abscisic acid (ABA) and ethylene pathways. Moreover, most of the sucrose metabolism and starch regulation-related genes were potentially regulated by SnRK1. In addition, TaTPP-7A is a crucial domestication- and breeding-targeted gene and it feedback regulates sucrose lysis, flux, and utilization in the grain endosperm mainly through the T6P-SnRK1 pathway and sugar–ABA interaction. Thus, we confirmed the T6P signalling pathway as the central regulatory system for sucrose allocation and source–sink interactions in wheat grains and propose that the trehalose pathway components have great potential to increase yields in cereal crops. 相似文献
90.
Purified nucleoli of HeLa cells were treated sequentially with nonionic detergent, nucleic acid enzyme, low salt and high salt. The residual nucleolar structure termed nucleolar skeleton (nucleolar matrix) was shown as a fine network under electron microscope with DGD embedding-unembedding technique. Such structures of BHK-21 cell and mouse liver cell are similar to that of HeLa cell. The protein composition of the nucleolar skeleton of HeLa cells was analyzed. The protein composition of such nucleolar residual shows obvious difference from the compositions of nuclear matrix and chromosome scaffold. The major protein composition of the nucleolar skeleton of HeLa cells contains 6–7 polypeptides. Their molecular weights are about 48, 43, 36 and 33 ku. Further studies show that actin and fibrillarin are two major protein components of nucleolar skeleton of HeLa cells. 相似文献