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61.
经果林种植可改变土壤质量、改善生态环境,同时具有较高的经济效益。合理的种植模式可通过物种间的互补性提高资源利用效率,改善土壤碳库质量并提高综合效益。为探讨桃树种植模式对土壤有机碳组分及碳库管理指数的影响,以云南省开远市不同桃树种植模式(桃树单种-SP和桃树南瓜套种-PP)为研究对象,以毗邻的天然林地(CK)为对照,分析不同种植模式下活性碳库,即高锰酸钾氧化有机碳(POXC)、颗粒有机碳(POC),惰性有机碳库即矿物结合态有机碳(MAOC)在0—40 cm土层的分布情况,明确土壤有机碳组分与土壤理化性质的关系;计算碳库活度指数(CPAI)、碳库指数(CPI)以及碳库管理指数(CPMI),明确不同桃树种植模式的碳库变化情况。结果表明:桃树种植模式和对照的土壤有机碳组分的含量均随着土层深度的增加而减少,平均土壤有机碳(SOC)含量为:14.68 g/kg(CK)>9.57 g/kg(PP)>8.58 g/kg(SP)。平均活性有机碳组分所占比例与POC/MAOC均表现为:SP>CK>PP,PP的活性有机碳比例较低,具有较高的有机碳稳定性。两种桃树种植模式的CPMI在1...  相似文献   
62.
63.
A pair of -cyano analogues of decarboxylated S-adenosylmethionine (2a and 2b) were synthesized as potential enzyme activated, irreversible inhibitors of the[pyruvoyl enzyme S-adenosylmethionine decarboxylase (AdoMet-DC). Each of these analogues acts as an irreversible inactivator for ADoMet-DC from Escherichia coli (IC50 values of 9 and 50 μM, respectively). These analogues also inactivate human AdoMet-DC, with KI values of 246.6 and 7.2 μM, and kinact values of 0.29 and 0.03 min−1, respectively.  相似文献   
64.
The conformationally restricted S-adenosylmethionine analogue AdoMac (S-(5′-deoxy-5′-adenosyl)-1-ammonio-4-methylsulfonio-2-cyclopentene has been shown to act as an enzyme activated, irreversible inhibitor of theEscherichia coli form of the enzyme S-adenosylmethionine decarboxylase. Inactivation of the enzyme is presumably initiated by formation of an imine linkage between the inhibitor and the terminal pyruvate of the enzyme, followed by base-catalyzed elimination of methylthioadenosine and generation of a latent electrophile. Removal of the driving force for the elimination of methylthioadenosine resulted in a reversibly binding inhibitor. Thus, the thioether analogue corresponding to AdoMac, and the corresponding dihydro derivative (H2-AdoMac), reversibly inhibit the enzyme. AdoMac was resolved into its four pure diastereomeric forms, and each diastereomer was evaluated as an irreversible inhibitor of the enzyme. The KI values for the individual diastereomers range between 3.83 and 39.6 μM, with the cis-1S,4R diastereomer being the most potent inhibitor. However, the kinact values for the four diastereomers are not significantly different, suggesting that the binding of each diastereomer to the enzyme is configuration-dependent, while the subsequent inactivation likely proceeds through a single intermediate which is formed from each of the four diastereomers. Since each pure diastereomer represents a distinct conformational mimic exhibiting restricted sidechain rotation, the data suggests that these and related analogues may be useful as conformational probes for the catalytic site of AdoMet-DC.  相似文献   
65.
洞庭平原褐家鼠年龄分组及种群年龄动态分析   总被引:10,自引:1,他引:9  
李世斌  陈安国 《兽类学报》1993,13(2):123-130
本文采用1986年10月—1989年12月在洞庭平原收集的褐家鼠(Rattus norvegicus)标本,以胴体重作指标,参考繁殖特征,将褐家鼠划分5个年龄组:Ⅰ.幼体组,雌鼠<60克,雄鼠<70克;Ⅱ.亚成体组,雌鼠60—99克,雄鼠70—119克;Ⅲ.成体Ⅰ组,雌鼠100—139克,雄鼠120—169克;Ⅳ.成体Ⅱ组,雌鼠140—189克,雄鼠170—219克;Ⅴ.老体组,雌鼠>190克,雄鼠>220克。种群年龄结构的季节动态特征是:开春时以Ⅲ、Ⅳ组占优势,初夏时Ⅰ、Ⅱ组明显增加,7、8、9月各年龄组比例较均匀,冬季以Ⅱ、Ⅲ组为主。还探讨了年龄与体重、体长、尾长及繁殖率的相互关系。  相似文献   
66.
[背景]关于高原生境轮作制度对土壤固氮微生物群落组成及多样性的影响研究尚少。[目的]深入认识攀西高原不同轮作制度对农田土壤肥力及土壤固氮微生物nifH基因群落结构与多样性的影响,以期建立合理的轮作制度。[方法]以凉山州冕宁县不同作物轮作制度[包括光叶紫花苕-烤烟(分轮作15年和20年两种,分别为G1和G2)、苦荞-烤烟(KQ)、大麦-烤烟(DM)和撂荒(CK)]的土壤为研究对象,通过化学分析和Illumina MiSeq技术,对土壤理化性质、土壤固氮微生物nifH基因多样性及群落组成进行分析。[结果]撂荒土壤全氮、铵态氮、硝态氮、有机碳和含水量最显著(P<0.05)。KQ轮作下土壤有效磷和速效钾分别提高了43.0%和2.60%,而DM轮作下的土壤理化性质均下降。土壤固氮酶活以撂荒土壤最高,G2轮作最低。土壤固氮微生物nifH基因多样性以G1轮作最高、G2轮作最低,门水平上以变形菌门(Proteobacteria)是优势共有nifH基因类群,相对丰度占群落的63.0%-92.4%;属水平上,偶氮氢单胞菌属(Azohydromonas)是不同轮作制度下的优势物种,慢生根瘤属(Brad...  相似文献   
67.
Li  Zhiyuan  Jiang  Hong  Liang  Zhiguo  Wang  Zepeng  Jiang  Xiumei  Qin  Yong 《Journal of Plant Growth Regulation》2023,42(2):922-934

This study examined the effects of nitrogen (N) fertilizer reduction on the carbon (C) metabolism and yield of Coreopsis tinctoria. A two-year (2020–2021) hydroponic experiment was conducted in accordance with a randomized complete group design with five N levels [0.875 mM Ca(NO3)2 (N1), 1.750 mM Ca(NO3)2 (N2), 3.500 mM Ca(NO3)2 (N3), 7.000 mM Ca(NO3)2 (N4), and 14.000 mM Ca(NO3)2 (N5)] and three replications. The results showed that low N significantly affected the functional leaf weight, C metabolism, and flower bud (or flower) numbers of C. tinctoria at harvest. Lower-N levels, especially those of the N2 treatment, significantly increased Rubisco, sucrose synthase (SS), sucrose phosphate synthase (SPS), soluble acid invertase (SAI), glucose 6-phosphate dehydrogenase (G6PDH), and 6-phosphogluconate dehydrogenase (6PGDH) activity and maintained the flower number of C. tinctoria. In addition, the balance of carbohydrates (sucrose, starch, glucose, and fructose) and ATP contents was more efficiently maintained under relatively low-N levels. These findings might suggest that reduced application of N fertilizer affects the C metabolism of leaves and maintains the number of flowers in Coreopsis tinctoria. Applying relatively low-N fertilizer levels is also a promising cultivation strategy for C. tinctoria.

  相似文献   
68.
美国白蛾是原产于北美地区的世界性植物检疫性害虫,自1979年发现入侵我国以来,严重威胁我国的生态安全。近年来,随着全球气候变暖,美国白蛾疫情不断南扩,其化性在一些地区出现新的变化。本文根据1979—2021年该虫发生扩散情况和各地区监测普查结果,结合部分地区温度变化数据,全面分析了美国白蛾入侵我国以来的发生扩散过程,对比分析了各地区发生世代数及变化情况,阐明部分地区世代数增加的原因。针对美国白蛾世代数演变规律和反复暴发成灾的情况,提出了当前应关注的几个重点问题:世代数增加引发的扩张速率显著上升;扩张潜力与沿长江地区扩散趋势减缓关系;暴发成灾时有发生与本土化趋势不明显。鉴于当前外来入侵物种管理要求提高及多年来美国白蛾防控工作中暴露的一些问题,提出要在守护国家生物安全底线前提下制定防治策略、在统筹生物多样性保护下实现控制目标、在做好应急准备下摸清暴发成灾规律、在强化疫情检疫管理中提高疫情认定效率等对策。  相似文献   
69.
Biochar and manure can be used for sustainable land management. However, little is known about how soil amendments might affect surface and belowground microbial processes and subsequent wood decomposition. In a split-split-split plot design, we amended soil with two rates of manure (whole plot; 0 and 9 Mg ha−1) and biochar (split plot; 0 and 10 Mg ha−1). Wood stakes of three species (hybrid poplar, triploid Populus tomentosa Carr.; aspen, Populus tremuloides Michx.; and pine, Pinus taeda L.) were placed in two positions (horizontally on the soil surface, and inserted vertically in the mineral soil), which served as a substrate for fungal growth. In 3 years, the decomposition rate (density loss), moisture content, and fungal community (via high-throughput sequencing methods) of stakes were evaluated. Results indicated that biochar and/or manure increased the wood stake decomposition rates, moisture content, and operational taxonomic unit abundance. However, the richness and diversity of fungi were dependent on wood stake position (surface > mineral), species (pine > the two Populus), and sample dates. This study highlights that soil amendment with biochar and/or manure can alter the fungal community, which in turn can enhance an important soil process (i.e., decomposition).  相似文献   
70.
R-1,3-butanediol (R-1,3-BDO) is an important chiral intermediate of penem and carbapenem synthesis. Among the different synthesis methods to obtain pure enantiomer R-1,3-BDO, oxidation–reduction cascades catalysed by enzymes are promising strategies for its production. Dehydrogenases have been used for the reduction step, but the enantio-selectivity is not high enough for further organic synthesis efforts. Here, a short-chain carbonyl reductase (LnRCR) was evaluated for the reduction step and developed via protein engineering. After docking result analysis with the substrate 4-hydroxy-2-butanone (4H2B), residues were selected for virtual mutagenesis, their substrate-binding energies were compared, and four sites were selected for saturation mutagenesis. High-throughput screening helped identify a Ser154Lys mutant which increased the catalytic efficiency by 115% compared to the parent enzyme. Computer-aided simulations indicated that after single residue replacement, movements in two flexible areas (VTDPAF and SVGFANK) facilitated the volumetric compression of the 4H2B-binding pocket. The number of hydrogen bonds between the stabilized 4H2B-binding pocket of the mutant enzyme and substrate was higher (from four to six) than the wild-type enzyme, while the substrate-binding energy was decreased (from −17.0 kJ/mol to −29.1 kJ/mol). Consequently, the catalytic efficiency increased by approximately 115% and enantio-selectivity increased from 95% to 99%. Our findings indicate that compact and stable substrate-binding pockets are critical for enzyme catalysis. Lastly, the utilization of a microbe expressing the Ser154Lys mutant enzyme was proven to be a robust process to conduct the oxidation–reduction cascade at larger scales.  相似文献   
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