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1.
为了解不同量天尺(火龙果)品种根部内生真菌菌群组成及多样性,采集GHL-1、GHL-2、GHL-3、ML-1和DL 5个量天尺品种健康根部样品,进行内生真菌分离,采用形态观察和ITS序列分析相结合的方法进行鉴定、归类。共分离得到内生真菌菌株117株,总体分离率为25.71%,分别隶属于13个属,其中Trichoderma、Fusarium、Chaetomium和Phoma为量天尺内生真菌的优势种群,分别占总菌株数的24.79%、35.04%、10.26%和10.26%;不同量天尺品种内生真菌的结构和组成存在一定差异,GHL-2、GHL-3和DL 3个品种中分离频率最高的内生真菌类群为Fusarium,GHL-1和ML-1分离频率最高的类群为Trichoderma;多样性分析结果反映出不同量天尺品种内生真菌菌群的多样性指数、丰富度指数和均匀度指数水平存在差异,其中GHL-2的3项指数均为最高。表明品种差异对内生真菌的组成和多样性均有影响。 相似文献
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《植物生态学报》2015,39(8):816
Aims Fractal root system is phenotypic plasticity result of plant root architecture to respond to environmental heterogeneity, may reflect the growth strategy of plants to adapt to environmental conditions. Our objective was to explore the relationship between root fractal dimension and fractal abundance of fractal root system of Melica przewalskyi population in response to aspect variation in the northwest of China. Methods The study site was located in a degraded alpine grassland on the northern slope in Qilian Mountains, Gansu Province, China. Survey and sampling were carried out at 40 plots which were set up along four slope aspects transects with 20 m distance between adjacent plots. Handheld GPS was used to determine the elevation, longitude and latitude of each plot. ArcGIS was used to set up digital elevation model (DEM). Community traits were investigated and six individuals roots of M. przewalskyi were collected randomly at each plot. The samples were cleaned and divided into different organs, then scanning the root with the Win-RHIZO for measurements of fractal dimension and fractal abundance in laboratory, and their biomass were then measured after being dried at 80 °C in an oven. Important findings With the slope aspect turned from north to east, west, and south, the density, height and soil moisture content of the plant community displayed a pattern of initial decline, the height, density, root fractal abundance of M. przewalskyi increased and the root fractal dimension decreased. The root fractal dimension was negatively associated with the fractal abundance in all aspects, but the relationship varied along the slope aspects gradient; there was a highly significant negative correlation (p < 0.01) between the root fractal dimension and fractal abundance at north slope and south slope aspect, whereas the correlation only reached a significant level (p < 0.05) at the east slope aspect and west slope aspect; indicating that there is a trade-off between the root fractal dimension and fractal abundance. In addition, when the slope aspect changed from north to east, west and south, the standardized major axis (SMA) slope of the regression equation in the scaling relationships between root fractal dimension and fractal abundance increased (p < 0.05), indicating that the roots of M. przewalskyi at the droughty southern slope have less branch and more sparse in the same soil volume of root exploitation and utilization. Consequently, the resource allocation pattern on reasonable trade-off between root fractal dimension and fractal abundance in different slope aspect of M. przewalskyi, reflects the relationship between the income and the cost of construction of plant root architecture. 相似文献
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为了提高发酵终了时毛头鬼伞(Coprinus comatus Fr.)CC-8810的菌丝浓度以获取高等真菌多糖,对CC-8810的深层培养工艺进行了研究。确定了最适发酵条件为:4%葡萄糖、3%黄豆饼粉、0.5%酵母浸出粉、3%麸皮、0.1%KH_2PO_4、0.05%MgSO_4·7H_2O,pH5.5—6,温度28℃,摇床转速140—160 r/min,摇瓶种子培养4天接种。当发酵液pH降至5.0—4.9、残糖量在1.2%以下,5—6天可终止发酵。发酵罐中放大试验表明,最终菌丝体浓度达4 相似文献
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在浙江省采集仓贮稻谷及大米样品,共分离到真菌17属48种(不包括酵母菌)。其中:曲霉属(Aspergillus)18种,青霉属(Penicillium)10种,镰孢霉属(Eusarium)4种。研究表明:在浙江省地区之间,贮粮真菌种类无明显差异。稻谷加工成大米后,籽粒表面带菌量及内部带菌率均明显下降,其真菌区系以贮藏真菌为主。稻谷在贮藏前以田间真菌为主。贮藏1—4个月的稻谷因贮藏真菌的种类、数量明显增长,而田间真菌的种类和数量仍保持在较高的水平上,其表面带菌量及谷粒带菌率处于高峰期;贮藏1年以上的稻谷,其主要带菌种类为贮藏真菌,带菌量及带菌率明显下降。早籼谷和晚粳谷在相同贮藏条件下其带菌种类和数量基本一致。 相似文献