盐腺
- 名salt gland
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补血草盐腺细胞特异性cDNA文库构建
Construction of a Salt Gland Specific cDNA Library from Limonium
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NaCl对中华补血草叶片盐腺发育及其泌盐速率的影响
Effect of NaCl on Salt Gland Development and Salt-secretion Rate of the Leaves of Limonium sinense
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随着NaCl浓度的升高,盐腺密度显著升高且叶片上表面盐腺总数明显高于对照,单个盐腺的泌盐速率和叶片整体泌盐速率均显著升高。
The salt secretion rates of individual salt glands and the leaves significantly increased with increased NaCl concentration .
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由于时间和材料的限制,本研究仅对补血草盐腺细胞特异性cDNA文库的构建进行了初步的探讨,没有完成最后的cDNA文库的构建工作。
Summarily , in this experiment , only primary research was made on construction of a salt gland specific cDNA library from Limonium because of the limited time and material .
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人工合成带有FITC标记的卤虫trh基因(trachealessgene)寡核苷酸探针,检测到trh基因在卤虫无节幼体的头部背面盐腺中表达。
The artificially synthetic oligonucleotides probe of the trachealess gene of Artemia sinica with the mark of FITC has found out that trachealess gene is expressed in the salt gland of the back head of the nauplius .
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植物盐腺的结构、功能与泌盐机理
The Structure , Function and Salt-secreted Mechanism of Salt Glands
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柽柳泌盐腺结构、功能及分泌机制研究进展
A review on the study of salt glands of Tamarix
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一种新型的植物盐腺
A New Kind of Salt Glands In Plant
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⑷具有含晶细胞,枝叶具盐腺。
Crystal cells , salt glands in most of the leaves and assimilating branches .
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在叶上下表皮叶脉附近分布有多细胞盐腺;
Many multi-cell salt glands were found near the vein on upper and under epidermis .
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叶上表皮有盐腺;
Salt glands were observed on epidermis .
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主要讨论三个问题:盐腺的超微结构;
Three issues are mainly discussed : the characteristics of the ultrastructure of salt glands ;
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建筑的表皮盐腺盖。
Cuticle sheath of the salt gland .
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双细胞盐腺由1个收集细胞和1个分泌细胞组成;
The double-cell salt gland is composed of a collecting cell and a secreting cell ;
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盐腺泌盐功能的特点;
The function of salt glands ;
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白城红瑞木茎的表皮细胞大,角质层厚,具有盐腺。
Its stem has big epidermic cells , thick cuticle , many salt glands and big vessels .
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大亚湾红树林及海岸植物叶片盐腺与表皮非腺毛结构
Structure of salt glands and epidermal non-gland hairs on leaves of mangroves and coastal plants growing at Daya Bay
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多细胞盐腺由1个收集细胞、1个柄细胞和多个分泌细胞组成。
While the multi-cell salt gland consists of a collecting cell , a handle cell and several secreting cells .
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白天吸收到植物体内的Na+有48%~53%在当天就被盐腺分泌出去。
The salt absorbed at the daytime was secreted out by 53 % ~ 48 % on the same day .
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另外还发现花花柴茎叶表面有泌盐腺和泌盐孔。
It was also observed that there were salt glands and salt-stomata on the stem and leaf epidermis of Karelinia caspica .
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在卤虫胚胎发育早期,其渗透调节功能主要由盐腺和肠管来承担。
In the early embryo development stages of Artemia sinica , osmoregulation is accomplished by salt gland or / and intestines .
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植物通过盐腺活动有效降低其它细胞的盐分含量,以维持其正常的生理功能,适应盐渍环境。
The plant can reduce effectively the salt content in it to maintain normal physiological function , and to fit to the salt-environment .
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但4种植物在盐腺的密度、盐腺的大小、盐腺与周围表皮细胞的位置等方面存在差异。
However , each of the four species has a difference in the density , the size and the position of the salt gland .
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光镜下观察研究了大亚湾地区部分红树林和海岸植物叶片的盐腺(腺毛)和非腺毛的结构及部分种类的发育过程。
Under the optical microscope , the structure and development of the epidermal hairs on the leaves of some mangroves and coastal plants growing at Daya Bay regions are studied in this paper .
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单位面积盐腺系统数目和盐腺系统中分泌细胞数目均随土壤盐度的增加而增加,气孔数目则相反。
When the soil salinity rises , the numbers of salt gland at a unit area at the leaf surface and of secreting cell in a salt gland increase ; In contrast , the amount of stomata at a unit area of loaf surface decreases .
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博落回总生物碱硫酸氢盐对钉螺生殖腺超微结构的影响
Effect of total alkaloid hydrogen sulfate from Macleaya cordata on the ultrastructure of the reproductive system of Oncomelania hupensis
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阐明了大豆可以通过渗透调节、膜组分改变、清除活性氧等生理机制增强抗盐性,还可通过根瘤、盐腺等形态结构适应盐逆境。
The salt tolerance is promoted not only by physiological mechanisms , such as osmotic adjustment , changes of membrane components , removing active oxygen , but also by morphological structures , i.e. nodules and salt glands .
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实验观察结果证明,抗盐野生大豆不但茎、叶表面具有盐腺这一特殊泌盐结构,而且植物体内部也具有抗盐结构。
The results showed that there are salt glands on the surface of stems and leaves of G. soja , and other salt-resistant structures inside .
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适应盐离子毒害的抗盐结构特征。如盐腺、含盐液泡包、含晶细胞等。
The salt - resistant characteristic which is adapt to poisonousness of salt hydronium , such as salt - gland , crystal cell , and soon .
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如每一种材料都含有含盐液泡包,而只有625627630三种材料有盐腺,所以每种材料都具备一定的抗盐能力,只是能力大小有所差别。
But some special characteristics only existed in some of all , such as the salt glands , only existing in 625,627,630 . Each one had some salt resistant ability , but the ability was different among them .