Comparison of Starch, Protein Accumulation and Amyloplast Development in Wheat Cultivars with Strong, Medium, and Weak Gluten 强、中、弱筋小麦籽粒中淀粉、蛋白质积累和淀粉体发育的比较
The amyloplast envelope began to degrade and released starch granules into cell matrix when amyloplast was full of starch granules. 当淀粉体被淀粉粒所充满,淀粉体被膜降解消失,释放淀粉粒到细胞基质中。
Potatoes and rice arde farinose plants. Amyloplast A plastid that synthesizes and stores starch grains. 马铃薯及稻米是富淀粉质的食物。淀粉体:一种与合成和储存淀粉粒有关的质体。
Many small starch granules could form and develop in one amyloplast. 多个小淀粉粒可以同时在一个淀粉体内发生与发育;
Amyloplast A plastid that synthesizes and stores starch grains. 淀粉体:一种与合成和储存淀粉粒有关的质体。
The changes of amyloplast and amyloplast DNA in different development stages were also observed, indicating the relationship among the amyloplast core, crystal structure and the amyloplast DNA. 又系统观察了在不同发育时期淀粉体及淀粉体DNA的变化,揭示了淀粉体DNA与淀粉核心、晶体结构的关系。
Protein Electrophoretic Analysis of Amyloplast and Cytoplasm Ribosomes from Lotus Cotyledon 莲子叶淀粉质体和细胞质核糖体的蛋白质电泳分析
According to the distribution pattern of active products of ATPase, we infer that the web-like passage in amyloplast may be the transporting channel for nutrients flowing into the amyloplast. 根据ATPase活性产物分布特点,推测淀粉体内的网状通道是便于养分进入淀粉体内部的转运通道。
This paper still discussed the rule of amyloplast changes in the infected cells of pea root nodules and its relation to the development and nitrogen fixation of infected cells. 还讨论了豌豆根瘤侵染细胞中造粉体的变化规律及其与细胞发育和固氮的关系。
The double membranes of amyloplast invaginated and the inner membrane dilated to form new amyloplast in the amyloplast. 而淀粉质体内层被膜向内出泡或内外层被膜同时内陷,在淀粉质体内形成新淀粉质体,这是淀粉质体增殖的两种新方式。
Dynamic change of amyloplast DNA in developing cotyledon cells of lotus 莲幼胚子叶细胞造淀粉体DNA的动态变化
The relationship among amyloplast core, crystal structure and the amyloplast DNA during amyloplast development 淀粉体发育过程中淀粉核心、晶体结构与淀粉体DNA的关系
Study on the Relationship Between the Development of Amyloplast and Internal Membrane System in Fritillaria thunbergii Miq. 浙贝母淀粉体的发育与内膜系统的关系(英)
Results showed that the earliest appearance of amyloplast DNA was on the amyloplast core. 实验证明,淀粉核心是淀粉体DNA最先出现的地方。
Amyloplast had many ways of genesis and patterns of proliferation in endosperm cell of rice. 水稻胚乳淀粉质体有多种发生途径和增殖方式。
The role of the division ring in fission and other mechanism of amyloplast division are discussed. 对分裂环在造粉质体分裂中的作用及其他可能的分裂机制进行了讨论。
The sucrose-metabolizing enzymes participate in four futile cycles that involve sugar transport between cytosol, vacuole, amyloplast and apoplast. 蔗糖代谢酶参与了细胞内外4个与糖运输有关的无效循环。
The amyloplast usually possessed a larger, very low electron density starch grain which mainly was long shuttle and there were some higher electron density partition or wedge structure in it. 它的基质很少,多含有呈长梭形的、电子密度非常低的淀粉粒,并有一些电子密度较高的条带结构。
In the process of seed germination, the small amyloplast and protein body were consumed at first, and when the big amyloplast was being consumed, there would appear many small pits and holes on its surface, and the whole starch granule was completely consumed at last. 在种子萌发过程中,小淀粉体和蛋白体先被消耗,大淀粉体在消耗时表面先出现许多小坑,最后整粒淀粉被消化殆尽。
These results suggest that glucose 6-phosphate imported via GPT should be used for starch biosynthesis in amyloplast of rice endosperms. 说明水稻胚乳细胞中胞浆内碳水化合物可能是以葡萄糖-6-磷酸进入造粉体用于淀粉合成。
Crystal structures were formed by the copies of DNA, and the radio-shape of the crystal structure resulted from the continuous copies of amyloplast DNA in the development stages. DNA复制形成了晶体结构(晶体核)以及辐射状的晶体结构,这是淀粉体DNA随着发育时期的增长而不断复制的结果。
Relation between envelope and proliferation of amyloplast in endosperm cell of rice 水稻胚乳细胞淀粉质体被膜与其增殖的关系
A electron dense ring-shaped structure present at the neck of dumbbell shaped amyloplast during division. 造粉质体除以分裂的形式进行增殖外可能还有其他的形式,分裂过程中在颈部出现分裂环结构。
The Programmed Cell Death of Starchy Endosperm and the Genesis and Development of Amyloplast in Rice and Wheat 稻麦淀粉胚乳细胞程序性死亡和淀粉质体的发生发育
In addition, there are not amyloplast in the aleurone layer cells. 在糊粉层细胞中无淀粉体,不积累淀粉。
Samples fixed with Potassium permanganate show a good result in endomembrane system display, like nuclear membrane, tonoplast and amyloplast envelope. 高锰酸钾固定制样的能较好的显示出细胞中内膜结构,如细胞核、液泡的被膜、淀粉体被膜。
Little is known about the mechanism of PCD of wheat endosperm, and the development of amyloplast and programmed cell death in endosperm cells under waterlogging treatment. 目前,关于小麦胚乳细胞PCD机理及淹水胁迫对小麦胚乳淀粉质体和胚乳PCD进程的研究比较少。