首页> 外文期刊>Protoplasma: An International Journal of Cell Biology >Zygotic embryo cell wall responses to drying in three gymnosperm species differing in seed desiccation sensitivity
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Zygotic embryo cell wall responses to drying in three gymnosperm species differing in seed desiccation sensitivity

机译:Zygotic胚胎细胞壁反应三种裸子植物种类的种子干燥敏感性不同

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Plant cell walls (CWs) are dynamic in that they can change conformation during ontogeny and in response to various stresses. Though seeds are the main propagatory units of higher plants, little is known of the conformational responses of zygotic embryo CWs to drying. This study employed cryo-scanning electron microscopy to compare the effects of desiccation on zygotic embryo CW morphology across three gymnosperm species that were shown here to differ in seed desiccation sensitivity: Podocarpus henkelii (highly desiccation-sensitive), Podocarpus falcatus (moderately desiccation-sensitive), and Pinus elliottii (desiccation-tolerant). Fresh/imbibed (i.e. fresh Podocarpus at shedding and imbibed Pi. elliottii) embryos showed polyhedral cells with regular walls, typical of turgid cells with an intact plasmalemma. Upon desiccation to c. 0.05 g g(-1) (dry mass basis), CWs assumed an undulating conformation, the severity of which appeared to depend on the amount and type of dry matter accumulated. After desiccation, intercellular spaces between cortical cells in all species were comparably enlarged relative to those of fresh/imbibed embryos. After rehydration, meristematic and cotyledonary CWs of P henkelii and meristematic CWs of P falcatus remained slightly undulated, suggestive of plasmalemma and/or CW damage, while those of Pi. elliottii returned to their original conformation. Cell areas in dried-rehydrated P henkelii root meristem and cotyledon were also significantly lower than those from fresh embryos, suggesting incomplete recovery, even though embryo water contents were comparable between the two states. Electrolyte leakage measurements suggest that the two desiccation-sensitive species incurred significant plasmalemma damage relative to the tolerant species upon desiccation, in agreement with the CW abnormalities observed in these species after rehydration. Immunocytochemistry studies revealed that of the four CW epitopes common to embryos of all three species, a
机译:植物细胞壁(CW)是动态的,因为它们可以在个体发育过程中改变构象,并对各种胁迫作出反应。虽然种子是高等植物的主要繁殖单位,但合子胚CWs对干燥的构象反应知之甚少。本研究采用冷冻扫描电子显微镜比较了干燥对三种裸子植物合子胚CW形态的影响,这三种裸子植物在种子干燥敏感性方面存在差异:罗汉果(高度干燥敏感)、黄果罗汉果(中度干燥敏感)和湿地松(耐干燥)。新鲜/吸吮(即脱落时的新鲜罗汉果和吸吮的圆周鱼)胚胎显示多面体细胞,具有规则的壁,典型的膨大细胞具有完整的质膜。在干燥至约0.05 g g(-1)(干质量基础)时,CWs呈现波动形态,其严重程度似乎取决于累积干物质的数量和类型。干燥后,所有物种的皮质细胞之间的细胞间隙相对新鲜/吸收的胚胎而言都相对增大。再水化后,汉克对虾的分生组织和子叶CWs以及镰刀菌的分生组织CWs仍然轻微波动,这表明质膜和/或CW受损,而Pi。elliottii恢复了原来的形态。干燥再水化的P Henkellii根分生组织和子叶中的细胞面积也显著低于新鲜胚胎中的细胞面积,这表明不完全恢复,尽管这两种状态下的胚胎含水量相当。电解质渗漏测量表明,两种对干燥敏感的物种在干燥后相对于耐受物种发生了显著的质膜损伤,这与再水化后在这些物种中观察到的CW异常一致。免疫细胞化学研究显示,在这三个物种胚胎共有的四个CW表位中,有

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