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141.
142.
光质对烟叶光合特性、类胡萝卜素和表面提取物含量的影响 总被引:4,自引:0,他引:4
以烤烟云烟87为材料,在烟株团棵期和打顶期用透光率相近的有色薄膜分别对其进行遮光处理直到采收结束,研究光质对烟叶光合特性、类胡萝卜素和表面提取物含量的影响.结果表明:烟叶生育前期各光质的整体光合性能依次为红光>自然光>白光>蓝光>黄光,后期蓝光的作用逐渐凸显.烤后烟叶β-胡萝卜素和叶黄素含量之间呈极显著正相关,且β-胡萝卜素含量明显高于叶黄素含量.团棵期增加红光,打顶期补充蓝光,有利于提高烤后烟叶β-胡萝卜素和叶黄素含量.光质对腺毛分泌物中的β-西柏三烯二醇影响最大,对降茄二酮影响最小.烷烃类蜡质成分中的三十一烷、三十三烷和异三十三烷含量受光质影响较大,异三十二烷和二十九烷含量受光质影响较小.相对于腺毛分泌物和烷烃类蜡质而言,光质对新植二烯影响较小.黄膜处理烤后烟叶的腺毛分泌物及其降解产物总量最高,光质对新植二烯和烷烃类蜡质含量的影响存在多种变化.红光和蓝光对烟叶表面提取物的影响效应主要表现在烟株生长前期,黄光和白光的影响效应主要体现在烟株生长后期.烟株生长前期增加红光比例,有利于增加烤后烟叶新植二烯和烷烃类蜡质成分积累;烟株生长后期补充黄光光质有助于提高烤后烟叶腺毛分泌物含量和表面提取物总量. 相似文献
143.
Alkaline lipase production was performed in submerged fermentation by Penicillium expansum PED-03. It was found that the suitable carbon source and nitrogen source for lipase production were 0.5% starch and 4.0% soybean meal, respectively. The maximal lipase activity (850 U/mL) of production was achieved at initial pH 5.5-6.0, 26 degrees C, 72 h. Tween-80 was an effective enhancer for lipase production. Agitation speed of the fermentor played an important role, and the suitable agitation speed for lipase production was 500 r/min. The lipase was stable within the range of pH 7.0-10.0 and 20-40 degrees C, and the optimum conditions for the enzymatic reaction were 35 degrees C and pH 9.5. The enzymatic resolution of racemic allethrolone (4-hydroxy-3-methyl-2-(2-propenyl)-2- cyclopenten-1-one) was carried out by the lipase from P. expansum PED-03, and the conversion reached 48% with excellent enantioselectivity (E > 100), which showed a good application potential in the production of optically pure allethrolone. 相似文献
144.
花青素苷(anthocyanins)成分和含量的分析是花色研究的重要内容之一。该文利用高效液相色谱-电喷雾离子化-质谱技术(HPLC-ESI-MS), 建立了一种快速有效地分析烟草(Nicotiana tabacum)花冠中花青素苷成分及含量的方法。在保证良好分离效果的基础上, 将分析时间缩短至15分钟, 大大提高了分析速度, 降低了成本, 并成功应用于转基因烟草花冠中花青素苷成分的分析。为不具备高效分析仪器(如超高效液相色谱-串联质谱(UPLC-MS/MS))的一般实验室研究花青素苷合成相关基因在烟草中的异源表达提供了一种有效且实用的分析方法。 相似文献
145.
146.
为研究植物病毒在RNA水平上对寄主植物的基因表达产生的影响,采用离子对高效液相色谱法,对黄瓜花叶病毒侵染烟草造成的总RNA的组成成分变化进行研究。离子对液相色谱法,是近几年才应用于对RNA进行分离、纯化和分析的一种试验技术,具有操作简单、重复性好、所需时间短等优点。选择适宜的离子对试剂,并对选定的离子对试剂正己胺/1,1,1,3,3,3-六氟-2-丙醇进行了优化,达到了较好的总RNA分离效果,并观察到健康植株和染病植株分离峰之间的差异,有差异的RNA种类还需进一步试验来验证。为研究植物病毒的致病机制提供一种新的试验方法和途径。 相似文献
147.
All the phosphate rock Japan needs must be presently imported from abroad because the country has no subterranean phosphorous resources. Therefore, there is a need to accelerate the development of and establish the technologies for phosphorous recovery from waste and wastewater. Swine wastewater has a high potential for phosphorous recovery in Japan. A reactor for removing and recovering phosphorous from swine wastewater was designed with dual functions, crystallization through aeration and separation of formed struvite by settling. However, a dehydration, composting and characterization process was first needed before using sediment sludge, including struvite, on farmland, since the struvite will settle along with huge amounts of other suspended solids (organic matter). For the recovery of pure struvite, an accumulation device was designed and its efficiency examined. The device has a struvite-accumulation face made of stainless steel wire mesh (1 mm in diameter, 1 cm(2) square) to reduce its total weight. During submergence in the aeration column of the demonstration reactor, struvite cross-bridged and accumulated on the face of the device. The struvite could be scraped off easily with only a light brushing, and was found to be approximately 95% pure. Because this device is a very simple structure, it is thought to be acceptable to swine farmers. 相似文献
148.
Xiaokun Sun Linzhi Dai Hang Zhang Xuejun He Fandi Hou Wengao He Shijun Tang Dong Zhao 《Neurochemical research》2018,43(7):1383-1391
Neuritin is an extracellular glycophosphatidylinositol-linked protein that promotes neuronal survival, differentiation, function, and repair, but the exact mechanism of this neuroprotective effect remains unclear. Meanwhile, endoplasmic reticulum stress (ERS) induced apoptosis is attracting increased attention. In this work, we hypothesized that neuritin inhibited ERS to protect cortical neurons. To check this hypothesis, we exposed primary cultured cortical neurons to oxygen and glucose deprivation (OGD) for 45 min followed by reperfusion (R) to activate ERS. We then performed resuscitation for 6, 12, 24, and 48 h. ERS-related factors such as glucose-regulated protein 78 (GRP78), caspase-12 and CHOP were detected by Western blotting and quantitative real-time polymerase chain reaction assay. Apoptosis was assessed by Annexin V binding and propidium iodide staining. Ultrastructural changes of endoplasmic reticulum were observed under a transmission electron microscope. Results showed that GRP78 expression significantly increased at 12, 24, and 48 h and peaked at 24 h. Caspase-12 and CHOP expression significantly increased in a time-dependent manner at 12, 24, and 48 h. GRP78, caspase-12 and CHOP expression as well as apoptosis rate of primary cultured neurons and the ultrastructural changes of endoplasmic reticulum in the OGD/R?+?neuritin group significantly improved compared with the OGD/R group. In conclusion, the neuroprotection function of neuritin may be involved in ERS pathways. 相似文献
149.
Jianxin Fu Shuai Qi Liwen Yang Yi Dai Silan Dai 《Plant Molecular Biology Reporter》2014,32(3):740-749
The MADS-box gene SOC1/TM3 (SUPPRESSOR OF OVEREXPRESSION OF CONSTANS 1/ Tomato MADS-box gene 3) is a main integrator in the Arabidopsis flowering pathway; its structure and function are highly conserved in many plant species. SOC1-like genes have been isolated in chrysanthemum, one of the most well-known ornamental plants, but it has not been well characterized thus far. We isolated and characterized ClSOC1-1 and ClSOC1-2, two putative orthologs of Arabidopsis SOC1, from the wild diploid chrysanthemum, Chrysanthemum lavandulifolium, to investigate the regulatory mechanisms of flowering time control in chrysanthemum. Expression analysis indicated that ClSOC1-1 and ClSOC1-2 were expressed in all examined organs/tissues (leaves, shoot apices, petioles, stems and roots) with different expression levels, and with high expression in the shoot apices and leaves during the early stage of floral transition. The expression levels of ClSOC1-1 and ClSOC1-2 in the shoot apices increased at different developmental stages with the highest expression levels after 7 days of short-day treatment. Overexpression of ClSOC1-1 and ClSOC1-2 in wild-type Arabidopsis resulted in early flowering, which was coupled with the upregulation of one of the flowering promoter genes LEAFY. Our results suggested that the ClSOC1-1 and ClSOC1-2 genes play an evolutionarily conserved role in promoting flowering in Chrysanthemum lavandulifolium and could serve as a vital target for the genetic manipulation of flowering time in the chrysanthemum. 相似文献
150.
Shutao Xie Nana Jin Jianlan Gu Jianhua Shi Jianming Sun Dandan Chu Liang Zhang Chun‐ling Dai Jin‐hua Gu Cheng‐Xin Gong Khalid Iqbal Fei Liu 《Aging cell》2016,15(3):455-464
Alzheimer's disease (AD) is characterized clinically by memory loss and cognitive decline. Protein kinase A (PKA)‐CREB signaling plays a critical role in learning and memory. It is known that glucose uptake and O‐GlcNAcylation are reduced in AD brain. In this study, we found that PKA catalytic subunits (PKAcs) were posttranslationally modified by O‐linked N‐acetylglucosamine (O‐GlcNAc). O‐GlcNAcylation regulated the subcellular location of PKAcα and PKAcβ and enhanced their kinase activity. Upregulation of O‐GlcNAcylation in metabolically active rat brain slices by O‐(2‐acetamido‐2‐deoxy‐d ‐glucopyranosylidenamino) N‐phenylcarbamate (PUGNAc), an inhibitor of N‐acetylglucosaminidase, increased the phosphorylation of tau at the PKA site, Ser214, but not at the non‐PKA site, Thr205. In contrast, in rat and mouse brains, downregulation of O‐GlcNAcylation caused decreases in the phosphorylation of CREB at Ser133 and of tau at Ser214, but not at Thr205. Reduction in O‐GlcNAcylation through intracerebroventricular injection of 6‐diazo‐5‐oxo‐l ‐norleucine (DON), the inhibitor of glutamine fructose‐6‐phosphate amidotransferase, suppressed PKA‐CREB signaling and impaired learning and memory in mice. These results indicate that in addition to cAMP and phosphorylation, O‐GlcNAcylation is a novel mechanism that regulates PKA‐CREB signaling. Downregulation of O‐GlcNAcylation suppresses PKA‐CREB signaling and consequently causes learning and memory deficits in AD. 相似文献