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1.
Chunli TANG Fengxian ZHAO Hongxia CHEN Jiabao MA Jiangcun WEI Meiyan QIU Zhen XIE 《Medicinal Plant》2019,(6):60-65
[Objectives]To optimize the water extraction process of Chinese Herbal Compound Man Gan Ning and establish a method for its extraction and content determination... 相似文献
2.
为了建立青蒿的SRAP最佳扩增体系,并筛选出SRAP多态性引物,本研究以青蒿叶片DNA为模板,采用正交试验设计,以Mg^2+、dNTP Mix、Taq DNA聚合酶、引物和DNA模板5种因素5个水平,对青蒿SRAP反应体系进行研究。结果表明,青蒿SRAP-PCR最佳反应体系为:引物0.6μmol/L、Mg^2+2.0 mmol/L、模板DNA 5.1 ng、Taq DNA聚合酶2.0 U、dNTPs 0.25 mmol/L,总体积为25μL。各因素对扩增反应均有不同影响,其中引物浓度的影响最大,dNTPs的影响最小。运用该体系对不同种质资源的青蒿进行验证,证明该体系稳定可靠,并在30个引物组合中筛选出了25对扩增条带清晰,多态性丰富的引物组合。这一结论为今后利用SRAP标记技术进行青蒿分子遗传学研究提供了科学依据。 相似文献
3.
异黄酮是大豆的重要次生代谢物,参与植物与微生物互作。2-羟基异黄酮脱水酶(hydroxyisoflavanone dehydratase,HID)催化2-羟基异黄酮形成稳定的异黄酮。HID属于Abhydrolase_3基因家族,该基因家族具有多种功能,但该基因家族在大豆中的进化模式尚待研究。为了研究Abhydrolase_3基因家族在大豆中的进化模式,本文在大豆基因组中鉴定了62个Abhydrolase_3基因,串联和片段复制是该基因家族主要扩增方式。根据系统进化关系,将大豆Abhydrolase_3基因家族划分为8个亚家族,其中HID所在的亚家族I基因数量最多,并发生多次基因扩增事件。对大豆Abhydrolase_3基因家族结构分析表明,不同亚家族具有不同的基序。多态性分析表明,亚家族Ⅰ、Ⅲ和Ⅴ具有较高的核苷酸差异,并受到放松的自然选择。基因表达分析表明,除了亚家族II和IV外,其它亚家族的基因在大豆不同组织中有较高表达;亚家族Ⅰ、Ⅲ、Ⅳ、Ⅴ和Ⅵ基因受病原菌诱导表达。结果说明HID所在的亚家族I存在基因扩增和功能分化,与病原菌互作相关的基因具有较高的遗传多样性并受病原菌诱导表达。 相似文献
4.
橡胶树白粉菌(Oidium heveae Steinm.)是专性寄生的丝状真菌。目前,有关橡胶树白粉菌启动子的研究较为落后。启动子是调控基因表达重要的顺式作用元件,是分子生物学研究的热点。为了开发研究橡胶树白粉菌的内源启动子,为植物基因工程提供新的材料及从分子水平理解橡胶树白粉菌遗传组成与进化。本研究在橡胶树白粉菌HO-73基因组基础上,利用生物信息学在线软件PromoterScan预测得到一个疑似启动子,命名为WY193。采用qRT-PCR技术测定WY193调控GUS基因的表达量,其表达量明显高于阳性对照CaMV 35S(35S)启动子,为35S的8.34倍。WY193均能驱动GUS基因在双子叶植物烟草和火龙果,以及单子叶植物椰子和玉米中进行瞬时表达。因此,本研究得到的橡胶树白粉菌内源启动子WY193,其表达范围较广,效率高,具有较好的应用前景,丰富了橡胶树白粉菌内源启动子研究。 相似文献
5.
以白三叶3个品种瑞文德、铺地和海法的子叶和下胚轴为外植体,采用正交设计试验研究2,4-D、6-BA和KT三种生长调节剂的不同浓度水平对白三叶愈伤组织诱导及继代的影响,筛选最佳激素组合并进行体细胞胚的组织学观察.结果表明:同一品种同一时期不同外植体愈伤诱导的最佳激素组合不相同,不同品种间也不一致;瑞文德子叶胚性愈伤诱导的最佳培养基为改良SH+2,4-D 2mg/L+6-BA 0.35mg/L+KT 0.5mg/L,下胚轴为改良SH+2,4-D 2mg/L+6-BA 0.2mg/L+KT 0.35mg/L;铺地子叶胚性愈伤诱导的最佳培养基为改良SH+2,4-D 2mg/L+6-BA 0.5mg/L+KT 0.5mg/L,下胚轴为改良SH+2,4 D 5mg/L+6-BA 0.35mg/L+KT 0.5mg/L;海法子叶胚性愈伤诱导的最佳培养基为改良SH+2,4-D 2mg/L+6-BA 0.2mg/L+KT 0.35mg/L,下胚轴为改良SH+2,4-D5mg/L+6-BA 0.5mg/L+KT 0.5mg/L.组织学观察表明,体细胞胚的发育经历球形胚、心形胚、鱼雷胚及子叶胚四个阶段后形成一个完整的体细胞胚. 相似文献
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We made several buckling tests of wooden columns with intermediate slenderness ratios () and examined the empirical formulas. On the basis of the examination, we formulated an equation for predicting the buckling stress () of an intermediate wooden column. Sitka spruce (Picea sitchensis Carr.) and buna (Japanese beech, Fagus crenata BI.) were used for the studies. A compressive load was applied on the specimen supported with pin ends, and the buckling stress was predicted by the tangent modulus theory and two empirical equations: those of Tetmajer and Newlin-Gahagan. The predicted - relations were compared with the test results, and the applicability of these predictions were examined. Based on the comparisons, we formulated an equation that can predict the - relations of materials with various stress-strain characters in the plastic strain range. 相似文献
9.
Annualized diameter and height growth equations for Pacific Northwest plantation-grown Douglas-fir, western hemlock, and red alder 总被引:2,自引:0,他引:2
Aaron R. Weiskittel Sean M. Garber Gregory P. Johnson Douglas A. Maguire Robert A. Monserud 《Forest Ecology and Management》2007,250(3):266-278
Simulating the influence of intensive management and annual weather fluctuations on tree growth requires a shorter time step than currently employed by most regional growth models. High-quality data sets are available for several plantation species in the Pacific Northwest region of the United States, but the growth periods ranged from 2 to 12 years in length. Measurement periods of varying length complicate efforts to fit growth models because observed growth rates must be interpolated to a common length growth period or those growth periods longer or shorter than the desired model time step must be discarded. A variation of the iterative technique suggested by Cao [Cao, Q.V., 2000. Prediction of annual diameter growth and survival for individual trees from periodic measurements. Forest Sci. 46, 127–131] was applied to estimate annualized diameter and height growth equations for pure plantations of Douglas-fir, western hemlock, and red alder. Using this technique, fits were significantly improved for all three species by embedding a multi-level nonlinear mixed-effects framework (likelihood ratio test: p < 0.0001). The final models were consistent with expected biological behavior of diameter and height growth over tree, stand, and site variables. The random effects showed some correlation with key physiographic variables such as slope and aspect for Douglas-fir and red alder, but these relationships were not observed for western hemlock. Further, the random effects were more correlated with physiographic variables than actual climate or soils information. Long-term simulations (12–16 years) on an independent dataset using these annualized equations showed that the multi-level mixed effects models were more accurate and precise than those fitted without random effects as mean square error (MSE) was reduced by 13 and 21% for diameter and height growth prediction, respectively. The level of prediction error was also smaller than an existing similar growth model with a longer time step (ORGANON v8) as the annualized equations reduced MSE by 17 and 38% for diameter and height growth prediction, respectively. These models will prove to be quite useful for understanding the interaction of weather and silviculture in the Pacific Northwest and refining the precision of future growth model projections. 相似文献
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