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首页> 外文期刊>Protoplasma: An International Journal of Cell Biology >Structural development of wheat nutrient transfer tissues and their relationships with filial tissues development
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Structural development of wheat nutrient transfer tissues and their relationships with filial tissues development

机译:小麦养分转运组织的结构发育及其与孝子组织发育的关系

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Nutrients from spikelet phloem are commonly delivered to endosperm via caryopsis nutrient transfer tissues (NTTs). Elucidation of NTTs development is paramount to developing an understanding of the control of assimilate partitioning. Little information was available on the structural development of the entire NTTs and their functions, particularly those involved in the relationship between development of NTTs and growth of filial tissues including endosperm and embryo. In this study, wheat caryopses at different development stages were collected for observation of the NTTs by light microscopy, stereoscopic microscopy, and scanning electron microscopy. The cytological features of NTTs in the developing wheat caryopsis were clearly elucidated. The results were as follows: NTTs in the wheat caryopsis include maternal transfer tissues that are composed of vascular bundle, chalaza and nucellar projection transfer cells, and endosperm transfer tissues that consist of the aleurone transfer cells, starchy endosperm transfer cells, and endosperm conducting cells. The initiation, development, and apoptosis of these NTTs revealed the pattern of temporal and spatial gradient and were closely coordinated with endosperm and embryo development. These results may give us a further understanding about the functions of NTTs and their relationships with endosperm and embryo development.
机译:来自小穗韧皮部的营养通常通过颖果营养转移组织(NTT)输送至胚乳。阐明NTT的发展对于理解同化分区的控制至关重要。关于整个NTTs的结构发育及其功能的信息很少,特别是那些涉及NTTs发育与包括胚乳和胚在内的孝子组织生长之间关系的信息。在这项研究中,收集了不同发育阶段的小麦颖果,通过光学显微镜,立体显微镜和扫描电子显微镜观察NTT。清楚阐明了发育中的小麦颖果中NTT的细胞学特征。结果如下:小麦颖果中的NTTs包括由血管束,chalaza和细胞核突起转移细胞组成的母体转移组织,以及由糊粉转移细胞,淀粉状胚乳转移细胞和胚乳传导细胞组成的胚乳转移组织。 。这些NTTs的启动,发育和凋亡揭示了时间和空间梯度的模式,并与胚乳和胚胎发育密切相关。这些结果可能使我们对NTT的功能及其与胚乳和胚胎发育的关系有了进一步的了解。

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