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sieve tube相关的网络例句

查询词典 sieve tube

与 sieve tube 相关的网络例句 [注:此内容来源于网络,仅供参考]

Cyclosis The streaming of cytoplasm in a circular motion around the cell observed in some plants, particularly young sieve tube elements.

胞质环流:在一些植物细胞特别是在幼筛管分子中观察到的细胞质围绕细胞的环形流动的现象。

In contrast to xylem components , sieve tube elements have nonlignified cell walls , and a living enucleate without a nucleus protoplast .

与木质部组分不同,筛管分子具有未木质化的细胞壁,没有核但有活的原生质体,因此是活细胞。

The cortical cells had thin walls and mitochondrium, and nucleus wassurrounded by chloroplasts, and vesicles were next to cell plasmalemma. However, cellwalls of velamen, cortex and exodermis in the mycorrhiza of D. nobile had ring orpapillary thickenings in many cases. The hyphae were surrounded by moremitochondria and vesicles of plant, and the hyphae were digested and their structure waschanged at last. The cell wall of endodermis also had typical ring thickenings, and manysieve orifices in sieve tube elements of phloem were covered by callose, while therewere liaison cords in a few sieve orifices.

金钗石斛菌根的根被细胞的细胞壁多处出现环形圈,外皮层细胞壁加厚,木质化,也有环形圈存在,皮层细胞细胞壁多角形明显,加厚,皮层细胞中存在被消化、失去结构的真菌菌丝,在菌丝周围有较多的线粒体、小泡,内皮层细胞的细胞壁呈现的典型的加厚及木质化环形圈,韧皮部筛管的筛板结构,绝大多数筛孔已为胼胝质所覆盖,仅个别筛孔中还存在连络索。

To do some researches on the physiological function of sieve tube elements in secondary phloem,it is key to observe the changes of plasm components during the development of SE.

观察次生韧皮部筛管分子发育过程中原生质组分的变化,对于研究筛管的生理功能具有重要作用。

Cytological observation showed that after spraying Paclobutrazol and Unlconazole, the length of the epidermal cells of the stem became significantly shorter but not its width, its pilus epidermidis significantly shorter, the number of cells for each pilus epidermidis significantly less and the diameter of its sieve tube became significantly smaller.

细胞学观察表明,喷施多效唑和烯效唑,其茎秆表皮细胞长径显著变短,短径无显著变化;茎秆表皮毛显著变短,每个表皮毛的细胞数显著减少;茎秆筛管直径显著变小。

I plant mine production of screen products have sieve, sieve blue, sieve tube and so on.

我厂生产的矿筛网制品有筛片、筛蓝、筛筒等。

JA transportation is likely to be through ray parenchyma cell, vessel tube and sieve tube in H.

JA在橡胶树内可快速通过韧皮部经由形成层径向运输到木质部,同时,JA能通过木质部和韧皮部进行纵向长距离双向运输。

It has a nucleus, dense cytoplasm, and many mitochondria, and is thought to provide, Via PLASMODESMATA, the needs of the less metabolically active, enucleated sieve element and perhaps plays a role in regulating the flow of metabolites through the sieve tube.

伴胞具有细胞核和浓厚的细胞质,还有大量的线粒体提供能量。筛管分子去除细胞核,仍能生活,可能与伴胞的存在有关。

Our results showed that the transportation of JA from phloem to xylem occurred mainly through ray parenchyma cells and cambium regions, and that JA could be transported rapidly upwards and downwards through vessel tube and sieve tube.

3H—JA分布在筛管、次生韧皮部的薄壁细胞和射线细胞、形成层区以及导管、次生木质部的薄壁细胞和射线细胞,其中,在韧皮部和木质部的射线细胞及筛管、导管壁周围分布最多。

And the development and formation of the sieve tube elements of the different cultivars were influenced by the different levels of B: the sieve tube elements of the two cultivars were not formed at the level of 0.001mg/L; At the level of 0.01mg/L, the sieve tube elements of the high efficiency (Qingyou 10) cultivar could be formed, but the structure of the sieve tube elements was not complete, and the abruption and differenciation of the sieve tube elements of the low efficiency cultivar were inhibited, they were not formed; At the level of 0.01mg/L, the sieve tube elements of the two cultivars were formed.

不同硼水平下,不同硼效率甘蓝型油菜品种根尖筛管分子的发育与形成受到影响:硼浓度为0.001mg/L时,两个油菜品种都不能形成筛管分子;硼浓度为0.01mg/L时,硼高效品种青油10号筛管分子可以形成,但结构受到破坏,而硼低效品种Bakow筛管分子的分裂与分化受阻,几乎不可能形成成熟的筛管分子;硼浓度为0.5 mg/L时,两个油菜品种都能正常生长发育。

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