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Endo-β-glucanases play vital roles in the regulation of pollen tube growth. Here, a previously identified endo-l,4-β-glucanase from Lilium Iongiflorum (lily), named LlpCell, was expressed in Escherichia coli, purified, and further investigated for its physiological function. The recombinant LlpCell protein hydrolyzed carboxy-methylcellulose (CMC) and exhibited activity towards laminarin from Eisenia. arborea and 1,3:l,4-β-glucan of barley. The pH for the optimum activity was 6.0 and the value of Km calculated from CMC was 5.0 mg/mL. Adding EDTA resulted in the total loss of the enzymatic activity, and this effect could be restored by the addition of Ca^2+. Western blotting analysis showed that LlpCell protein was present in pollen grains and rehydrated pollen grains, and the amount of the protein was increased during pollen germinating, but not in the pollen tube. Consistently, the immunofluorescence labeling study with the antibody against LIpCell also indicated the presence of LIpCell at the begin-ning of germination, but not in the elongating pollen tube. Furthermore, incubation of LlpCell with pollen at the beginning of pollen germination increased the germination percentage and the length of pollen tube. All of these results suggested that LlpCell could play an important role in the regulation of lily pollen germination and the initiation of pollen tube growth.  相似文献   

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从人胚肺成纤维细胞中提取总RNA,利用RT-PCR法获得人角质细胞生长因子-2(hKGF-2)cDNA,并通过PCR方法扩增,再与原核表达载体pET3c连接后转化至BL21(DE3)宿主细胞中获得表达菌株.通过流加补料方式和发酵条件的控制,进行高密度培养,并通过IPTG诱导获得可溶性表达的目的产物.结果表明:目的蛋白占...  相似文献   

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二维(2D)过渡金属碳/氮化物(MXene)材料是当前最受关注的二维材料之一,其中二维碳化钛(Ti3C2Tx MXene)材料的研究最为广泛。该材料目前主要通过刻蚀三元碳化物或氮化物(MAX相)后进一步插层得到,因此MAX相材料的纯度和制备工艺条件直接决定了Ti3C2Tx MXene材料的物化性质。主要完成了不同Ti3AlC2 MAX相材料的筛选,选择氢氟酸(HF)刻蚀,并优化了不同的插层方法,制备了一系列Ti3C2Tx MXene材料。通过X射线衍射(XRD)、场发射扫描电镜(FESEM)、透射电子显微镜(TEM)、原子力显微镜(AFM)和X射线光电子能谱(XPS)等表征,确定使用原位锂离子(Li+)插层法可有效获得单层Ti3C2Tx MXene材料。制备的单层Ti3C2Tx MXene材料的表面平整,片径约为150 nm,厚度约为2 nm。同时,创新性地采用涡旋震荡辅助材料分层,极大地缩短了超声时间,提高了单层Ti3C2Tx MXene材料的产率(可达70%),并且可以避免材料氧化,为Ti3C2Tx MXene材料未来应用提供了新方法。  相似文献   

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Measured results of magnetoelectric (ME) and converse magnetoelectric (CME) effects of TbxDy1-xFe2-y/ Pb(Mg1/3Nb2/3)(1-x)TixO3/TbxDy1-xFe2-y (TD/PMNT/TD) and PMNT/TD/PMNT laminated composites are presented. ME effect was determined by measuring laminate voltage output under a Helmholtz-generated AC field biased by a DC field (0-1 kOe) (1Oe = 79.58 A/m). The CME effect was measured by recording the voltage induced in a solenoid encompassing the ME sample while exposed to a DC bias field and PMNT layer driven by a 10 V AC source. The ME and CME responses in the two laminated structure are linear. The highest values of ME coefficients in TD/PMNT/TD and PMNT/TD/PMNT composites are 384 mV/Oe and 158 mV/Oe, respectively, while the highest values of CME coefficients in the two composites are 118 mG/V and 162 mG/V (1 G=10^-4 T), respectively.  相似文献   

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二维过渡金属碳/氮化合物基(MXene)催化剂对于水解产氢反应具有优异的催化活性.以二维过渡金属碳化钛(Ti3C2Tx MXene)材料为载体,采用原位还原法,制备了超高分散度的二维Ti3C2Tx MXene材料担载的金属铑(Rh)催化剂(Rh/Ti3C2Tx MXene).利用单层二维Ti3C2Tx MXene材料高度暴露的表面,实现了Rh亚纳米团簇的高度分散.在常压的温和条件下,将制得的Rh/Ti3C2Tx MXene催化剂用于氨硼烷的常温分解.在35℃,0.1 MPa的条件下,氨硼烷可以在3 min内完全实现氢气(H2)的释放.催化剂的结构表征证明:Rh亚纳米团簇的平均尺寸约为0.66 nm.构效关系研究表明:二维Ti3C2Tx MXene载体表面高度暴露的碳钛键(C-Ti)结构可以起到锚定和高度分散Rh亚纳米团簇的作用.  相似文献   

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The synthetic method of the novel chiral synthon, 5-l-menthyloxy-3-chloro-2-(5H)-furanone 5a and its application in asymmetric reactions were investigated. 5a is easily obtained in highly optical purity, and acts as a stable acceptor of Michael addition with oxygen nucleophiles in tandem double Michael addition / internal nucleophilic substitution to offer the spiro-cyclopropane derivative containing four stereogenic centers 8, which it is difficult to obtain by routine methods. The synthetic methods for 5a and 8 are reported in detail and the new compounds are identified on the basis of their analytical data and spectroscopic data, such as UV, IR,1H NMR,13C NMR, MS and elementary analysis. The absolute configuration of the interesting spiro-cyclopropanes, spiro [1-chloro-4-(l-menthyloxy)-5-oxo-6-oxa-biscyclo[3.1.0]hexane-2,3′-(4′-/-menthyloxy-5′-l-menthyloxybutyrolactone)] 8 was established by X-ray crystallography. This result can provide important synthetic strategy in synthesis of some complex molecules containing spiro-cyclopropane skeleton with multiple chiral centers.  相似文献   

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