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首页> 外文期刊>Journal of Experimental Botany >The pollen tube journey in the pistil and imaging the in vivo process by two-photon microscopy.
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The pollen tube journey in the pistil and imaging the in vivo process by two-photon microscopy.

机译:花粉管在雌蕊中移动,并通过双光子显微镜对体内过程进行成像。

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The process of pollen germination and tube growth in the pistil involves a series of cell-cell interactions, some facilitating fertilization while others prohibiting pollen tube access to the female gametophyte, either because of incompatibility or as a result of mechanisms to avert polyspermy and to ensure reproductive success. Understanding pollen tube growth and guidance to the female gametophyte has long been a pursuit among plant biologists, and observations indicate that diverse strategies may be adopted by different plant species. Recent studies in Arabidopsis, maize, and Torenia fournieri suggest that low molecular weight secretory molecules probably play major roles in the short-range attraction of pollen tubes to the female gametophyte. The process of pollen tube growth in the pistil occurs beneath several cell layers so much of the information that conveys the intimate partnership between penetrating pollen tubes and the female tissues has come from fixed samples and observations of in vitro pollen tube growth responses to female factors. A unique glimpse of the in vivo pollen germination and tube growth process is provided here by intra-vital two-photon excitation (TPE) microscopy of pollinated Arabidopsis pistils that remained on intact plants. Further discoveries of critical factors of male or female origins and how they control the pollen tube growth and fertilization process will broaden our understanding of the common themes and diverse strategies that plants have evolved to ensure reproductive success. The advancement of imaging technology to monitor pollination and fertilization and the development of probes to monitor various aspects of the pollen tube growth process, including pollen intracellular dynamics, will allow us to superimpose details obtained from studying pollen tube growth in culture conditions to interpret and understand the in vivo events.
机译:花粉萌发和雌蕊试管生长的过程涉及一系列细胞-细胞相互作用,其中一些促进受精,而另一些则由于不相容或由于避免多精子和确保机制的机制而禁止花粉管进入雌配子体。生殖成功。长期以来,了解花粉管的生长和对雌配子体的指导一直是植物生物学家的追求,并且观察表明,不同的植物物种可能采用多种策略。最近在拟南芥,玉米和Torenia fournieri中的研究表明,低分子量分泌分子可能在花粉管对雌配子体的短程吸引中起主要作用。花粉管在雌蕊中生长的过程发生在几个细胞层之下,因此传达穿透性花粉管与雌性组织之间紧密联系的许多信息来自固定的样本以及观察到的花粉管对雌性因子的体外反应。通过体内保留在完整植物上的已授粉拟南芥雌蕊的活体两光子激发(TPE)显微镜,可对体内花粉萌发和管生长过程有一个独特的了解。进一步发现男性或女性起源的关键因素以及它们如何控制花粉管的生长和施肥过程,将使我们对植物为确保生殖成功而进化出的共同主题和多种策略的理解更加广泛。监测授粉和受精的成像技术的进步以及监测花粉管生长过程各个方面(包括花粉细胞内动力学)的探针的发展,将使我们能够叠加在培养条件下研究花粉管生长获得的细节,以解释和理解体内事件。

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