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首页> 外文期刊>Protoplasma: An International Journal of Cell Biology >Cytological cycles and fates in Psidium myrtoides are altered towards new cell metabolism and functionalities by the galling activity of Nothotrioza myrtoidis
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Cytological cycles and fates in Psidium myrtoides are altered towards new cell metabolism and functionalities by the galling activity of Nothotrioza myrtoidis

机译:桃金娘Notnotrioza myrtoidis的胆汁活动改变了肉豆蔻毒杆菌的细胞周期和命运,使其朝着新的细胞代谢和功能转变。

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The morphogenesis of galls occurs by the redifferentiation of cells that assume new functions in the modified host plant organs. The redifferentiated cells in the galls of Nothotrioza myrtoidis on Psidium myrtoides have low complexity metabolism and are photosynthesis-deficient. These galls were studied in search for evidences of the establishment of new cell cycles and fates and cytological gradients that corroborate their metabolic profile. Young and mature leaves of P. myrtoides and leaf galls induced by N. myrtoidis at different developmental stages were collected along 24 months and analyzed under light and transmission electron microscopy. The leaves of P. myrtoides are long-lasting and did not senesce within the analyzed period, while the galls have a shorter cycle, and senesce within 1 year. A homogenous parenchyma is established by a "standby-redifferentiation" of the chlorophyllous tissues, and sclerenchyma cells redifferentiate from parenchyma cells in the outer cortex of the mature galls. The lack of organelles, the underdeveloped lamellation of chloroplasts, and the occurrence of few plastoglobules are related to the photosynthetic deficiency of the galls. No cytological gradients were observed, but the organelle-rich cells of the vascular and perivascular parenchymas are similar to those of the nutritive tissues of galls induced by other insect taxa. These cells nearest to the feeding sites of N. myrtoidis present higher metabolism and well-developed apparatus for the prevention of oxidative stress. The features herein described corroborate the low metabolic profile of the galls as the cell cycles and fates of P. myrtoides are manipulated for completely new functionalities.
机译:胆汁的形态发生是通过在修饰的宿主植物器官中承担新功能的细胞再分化而发生的。桃金娘座虫上的Nothotrioza myrtoidis胆汁中的再分化细胞具有低复杂性代谢且光合作用不足。对这些胆进行了研究,以寻找建立新的细胞周期,证实其代谢特征的命运和命运以及细胞学梯度的证据。沿着24个月收集桃金娘猪笼草在不同发育阶段诱导的桃金娘藻的幼嫩和成熟的叶和叶gall,并在光和透射电镜下进行分析。桃金娘科的叶子长久并且在分析期内没有衰老,而while虫的周期较短,并且在一年内衰老。通过叶绿素组织的“备用再分化”来建立同质的实质,而硬化的细胞则从成熟胆囊外皮层的实质细胞中重新分化。细胞器的缺乏,叶绿体的不成熟层状化以及质小球的出现与胆汁的光合缺陷有关。没有观察到细胞学梯度,但是血管和血管周围实质的富含细胞器的细胞与其他昆虫分类群诱导的胆汁营养组织的细胞相似。这些最接近于桃金娘猪笼草取食部位的细胞具有更高的新陈代谢和成熟的预防氧化应激的装置。本文所述的特征证实了胆囊的低代谢特征,因为操纵了桃金娘假单胞菌的细胞周期和命运以获得全新的功能。

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