apical bud 中文意思是什麼

apical bud 解釋
頂芽
  • apical : adj. 1. 頂點的,頂端的。2. 【語言學】用舌尖發音的。n. 舌尖音〈如 t, d, s, l 等〉。
  • bud : n 1 芽,萌芽,幼芽;蓓蕾,?朵;【動物;動物學】芽體,芽狀凸起。2 未成熟的人[東西];〈比喻〉少女,...
  1. Pea ; apical bud ; senescence ; programmed cell death

    豌豆頂芽衰老細胞編程性死亡pcd
  2. Shoots grow in flushes, showing rapid growth, then stopping as the apical bud aborts

    花苞最先開始快速的漲大,花苞的尖牙會自然的掉落。
  3. Microstructural, ultrastructural and ndna changes of the cells during the apical bud senescence in pea

    豌豆頂芽衰老過程中的顯微超微結構和ndna的變化
  4. Labeling tunel method. the cell ultrastructural changes were similar to apoptosis in animal cells : the apical meristemetic cells underwent the programmed cell death. this was first detected in the apex cells of apical meristem, while peripheral cells differentiated gradually into different parts of a floral bud. but all the cells in the floral bud were subjected to the pcd process before it developed into a complete flower. 140bp dna fragment was found to deposit in apical bud during the plant development. the most important role of caspase - 8 was detected by western blot, and the expression of the procaspase - 8 was time - related with the dna frgmentation and the transformation from vegetative to the reproductive growth. these results suggested that pcd was an active process during the differentiation of apical meristem, and the senescence observed in the apical bud was due to the pcd process

    顯微超微結構研究表明,短日照條件下豌豆頂芽的衰老過程是從營養生長錐向花芽的轉化,而用dna原位末端標記tunel caspase - 8 western blot和140 bp dna片斷積累的試驗結果證明,轉化為花芽的整個生長錐細胞發生了編程性死亡pcd ,而且其最頂端部分細胞首先發生pcd ,而頂端周圍的分生組織細胞逐漸分化出花芽的各部分,但頂芽最後並沒有發育成為完整的花,所有細胞就都發生pcd ,從而頂芽衰老。
  5. The cell division element class plant growth regulator is one kind of promotion plant being of ability to promote the vegetable cell fission and the variation, delay the leaf blade senescence, promote lateral bud growth, break the apical dominance, induce injuries of the organization, split up the different organs and promote chloroplast growth and synthesis

    細胞分裂素類植物生長調節劑是一種促進型植物激素,能夠促進植物細胞的分裂和變異,延緩葉片衰老;促進側芽發育,打破頂端優勢;誘導愈傷組織,分化成不同器官;促進葉綠體的發育和合成。
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