• Here are branching Aspergillus hyphae.

    分枝状曲霉菌菌丝。

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  • All lack septate hyphae and are commonly coenocytic;

    所有缺乏隔膜的菌丝通用的多核细胞的;

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  • The hyphae can fuse and form a heterocaryotic mycelium .

    菌丝可以融合形成异核菌丝体。

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  • At higher magnification, Aspergillus hyphae are seen to branch.

    高倍放大可见曲霉菌菌丝分叉。

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  • The digested hyphae penetrate into large cells to be further digested.

    初步被消化菌丝由菌丝结集细胞侵入大型细胞最终消化。

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  • Seen here are branching hyphae of Aspergillus invading a cerebral vessel.

    图示曲霉菌分枝状菌丝侵入脑血管

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  • Hyphae with nuclei of different genotypes can fuse to form a heterokaryon.

    当含有两种不同基因型菌丝融合在一起时,可以形成体。

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  • Branching, septate hyphae are close-packed here and radiating outward in this aspergilloma.

    曲霉肿中有分支、有隔膜菌丝聚集并呈放射状排列

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  • The dry weight of hyphae had positive correlation with the concentration of culture medium.

    菌丝质量培养基质量浓度呈正向关系。

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  • Other examples include a septate fungal hyphae and certain green algae such as acetabularia.

    其他例子包括隔膜的真菌菌丝以及一些绿藻,例如伞藻。

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  • It means cortical cells were able to release hydrolytic enzyme to digest the invaded hyphae.

    说明皮层细胞主动释放水解参与对菌丝消化

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  • The harvested pure hyphae were inoculated in liquid medium and cultured at room temperature.

    菌丝接种液体培养基中,置室温下进行振荡培养。

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  • The vegetative hyphae and sclerotia are polykaryotic and the reproductive hyphae dikaryotic.

    营养菌丝菌核等多核的,生殖菌丝是双核的。

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  • The urediospores developed by the hyphae next year are the main primary inocula of the disease.

    次年产生孢子堆为主要初次侵染来源。

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  • In some of the parenchyma cells in cortex of root, there are clusters of symbiotic fungal hyphae.

    皮层薄壁细胞有的共生真菌菌丝。

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  • Club-shaped hyphae in the hymenial layer of certain basidiomycete fungi are also termed paraphyses.

    某些担子子实中的棒状菌丝称为侧丝。

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  • Trama The inner tissue of the gills in basidiomycete fungi that is made up of loosely packed hyphae.

    菌髓:担子多条菌丝松散围绕形成内部存在的组织

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  • Poor ventilation helps the fungus to produce brown hyphae, multiply, and to make more brown spots on a deck.

    较差通风使得菌类产生棕色菌丝繁殖增加从而板上形成棕色的斑点

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  • When the hyphae grew slowly at the same time, the larvae have grown up with the slow, but drilled the ground.

    菌丝慢慢成长同时幼虫也随著慢慢长大钻出地面

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  • The concentration of P in roots was significantly and positively correlated to the length of external hyphae .

    植株浓度根外菌丝量、根外菌丝量与孢子数均显著相关。

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  • The hyphae of Aspergillus are seen more clearly here. Aspergillus has a propensity to invade into blood vessels.

    高倍镜曲霉菌菌丝清楚可见。曲霉菌浸润血管的倾向

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  • There is a contrary relationship between the growth of fungal hyphae and the accumulation of taxol in the mycelium.

    紫杉醇内生真菌菌丝体生长紫杉醇积累之间存在相反关系

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  • The fungus primarily grows along tree roots via hyphae, fine filaments that mat together and excrete digestive enzymes.

    一般说来,真菌沿着树根生长,伸出菌丝分泌很多消化酶

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  • Lomasome an infolding of the plasma membrane found particularly in fungal hyphae and spores and also in some algae and higher plants.

    外泡:原生质内折,尤其存在于真菌菌丝孢子中,某些藻类高等植物中存在。

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  • Lomasome an infolding of the plasma membrane found particularly in fungal hyphae and spores, and also in some algae and higher plants.

    原生质内折,尤其存在于真菌菌丝孢子中某些藻类高等植物中存在。

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  • Ultrastructure of intercellular hyphae of wheat stripe rust was studies with electron microscopy and cytochemical methods in this paper.

    本文应用电镜技术细胞化学方法小麦锈菌寄主胞间菌丝超微结构进行了研究

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  • Hyphae and swollen cells resembling chlamydospores were observed in the scrapings of skin lesion of the experimental infection of the rabbit.

    实验家兔皮损刮屑可见菌丝类似厚壁孢子肿胀细胞

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  • These observations suggested that the growth of extraradical hyphae and metabolic activity of the AM fungi was regulated by the P status of the host plant.

    宿主植物营养状况较好时,根真菌生长代谢活性受到抑制,表明宿主植物磷营养状况AM真菌生长和代谢活性具有调控作用

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  • The ALP activity in intraradical hyphae of AM fungi was significantly decreased, and the total hyphal density of AM fungi increased with applied Na phytate.

    外源酸钠存在,显著降低AM真菌根内菌丝碱性磷酸酶活性增加了AM真菌土壤中的菌丝密度

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  • The effective method is that ectomycorrhizal fungi are introduced just beside the callus of host plant, which can evidently upgrade the growth of the hyphae.

    初步研究了一个较好的外生菌根菌菌丝体培养方法即将宿主伤组织与外生根共同培养,可以明显地促进真菌菌丝的萌发和生长。

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