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1)  Rhizomucor variabilis
多变根毛霉
1.
A case report of primary cutaneous mucormycosis caused by Rhizomucor variabilis;
多变根毛霉引起原发皮肤毛霉病1例
2.
Facial Mucormycosis due to Rhizomucor variabilis: A Case Report;
目的报道1例因多变根毛霉引起的面部感染。
2)  rhizomucor miehei
米黑根毛霉
1.
High Level Expression of Rhizomucor miehei Lipase Gene in Pichia pastoris;
米黑根毛霉脂肪酶基因在毕赤酵母中的高效表达
3)  Rhizomucor pusillus
微小根毛霉
1.
In order to further develop a rapid diagnosis of deep filamentous fungus infection a detection experime- nt of Rhizomucor pusillus with immunofluorescent assay method was carried out.
近几年因医源性导致患者机体免疫功能低下或受损有所增加,从而使深部丝状真菌感染有逐年上升的趋势,由于检测上的种种原因,大部份是尸检后发现,难以鉴定到属种,对临床治疗带来直接影响,为进一步探讨丝状真菌的快速诊断,我们从肺活组织中分离出的微小根毛霉,注射接种到不同剂量的~(60)Co-γ辐照鼠体内后,间隔一定时间,用间接免疫荧光法检测,发现3GY辐照后14—28日检出率是41。
4)  root hair deformation(RHD)
根毛变形
1.
To elucidate the mechanisms of the toxicity of Al to leguminous plants at initial stages of symbiotic nodulation,the effects of Al on the growth of primary root,root hair deformation(RHD),nodulation of Medicago sativa L.
以紫花苜蓿为材料,探讨了铝对根伸长、根毛变形、结瘤和苜蓿根瘤菌(Rhizobiummeliloti)生长的影响,旨在阐明豆科作物共生结瘤的初期铝毒害的机制。
2.
Effects of low pH on root hair deformation(RHD)and nodulation in Medicago sativa were investigated and corresponded mechanisms was also discussed in present study.
探讨了低pH条件下紫花苜蓿根毛变形和结瘤受到的影响及其机制。
5)  root hair deformation
根毛变形
1.
Under neutral pH condition, applying Ca2+ didn’t have any significant effects on root hair deformation, while under low pH condition, Ca2+ demonstra.
中性pH条件下,Ca2+的加入对苜蓿根毛变形率无显著影响;低pH条件下,加入2、5和10mmol·L-1的Ca2+均可提高根毛变形率,Ca2+浓度越高,其影响越显著,说明低pH下Ca2+可能会促进苜蓿根瘤菌与其宿主之间的识别。
2.
The idebitmg effect of combmed N on met hair defonnaion of alfalfa mduced by the supematan of the cultUre solution of Rhizobium meliloti was studied Nitrae and ammonia could ef fectively inhibit root hair deformation(Fig.
以苜蓿根瘤菌和其宿主苜蓿为材料,由结合态氮影响苜蓿根瘤菌生长液诱导宿主根毛变形的功能发现,硝态氮和铵态氮均能有效地抑制根瘤菌生长液诱导的宿主根毛变形。
6)  multicellular root hairs
多细胞根毛
1.
Development of multicellular root hairs may occur from a part of epidermal cells of the tip ofaerial adventitious roots of Kalanchoe fedtschankoi through cell division.
玉吊钟(Kalanchoefedtschenkoi)气生不定根根尖区域的部分表皮细胞经分裂可形成多细胞根毛,根毛长0。
补充资料:根毛
密生在根的尖端的细毛,是根吸收水分和养料的主要部分。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条