Literature DB >> 20181663

Pollen-pistil interactions regulating successful fertilization in the Brassicaceae.

Laura A Chapman1, Daphne R Goring.   

Abstract

In the Brassicaceae, the acceptance of compatible pollen and the rejection of self-incompatible pollen by the pistil involves complex molecular communication systems between the pollen grain and the female reproductive structures. Preference towards species related-pollen combined with self-recognition systems, function to select the most desirable pollen; and thus, increase the plant's chances for the maximum number of successful fertilizations and vigorous offspring. The Brassicaceae is an ideal group for studying pollen-pistil interactions as this family includes a diverse group of agriculturally relevant crops as well as several excellent model organisms for studying both compatible and self-incompatible pollinations. This review will describe the cellular systems in the pistil that guide the post-pollination events, from pollen capture on the stigmatic papillae to pollen tube guidance to the ovule, with the final release of the sperm cells to effect fertilization. The interplay of other recognition systems, such as the self-incompatibility response and interspecific interactions, on regulating post-pollination events and selecting for compatible pollen-pistil interactions will also be explored.

Mesh:

Year:  2010        PMID: 20181663     DOI: 10.1093/jxb/erq021

Source DB:  PubMed          Journal:  J Exp Bot        ISSN: 0022-0957            Impact factor:   6.992


  45 in total

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3.  Pollen-pistil interactions and early fruiting in parthenocarpic citrus.

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4.  Proteomic analysis of Brassica stigmatic proteins following the self-incompatibility reaction reveals a role for microtubule dynamics during pollen responses.

Authors:  Marcus A Samuel; Wenqiang Tang; Muhammad Jamshed; Julian Northey; Darshan Patel; Daryl Smith; K W Michael Siu; Douglas G Muench; Zhi-Yong Wang; Daphne R Goring
Journal:  Mol Cell Proteomics       Date:  2011-09-01       Impact factor: 5.911

5.  The ARC1 E3 ligase gene is frequently deleted in self-compatible Brassicaceae species and has a conserved role in Arabidopsis lyrata self-pollen rejection.

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Review 6.  Using maize as a model to study pollen tube growth and guidance, cross-incompatibility and sperm delivery in grasses.

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7.  A novel pollen tube growth assay utilizing a transmitting tract-ablated Nicotiana tabacum style.

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Review 8.  Progress on deciphering the molecular aspects of cell-to-cell communication in Brassica self-incompatibility response.

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9.  Identification of a novel MLPK homologous gene MLPKn1 and its expression analysis in Brassica oleracea.

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10.  The ARC1 E3 Ligase Promotes Two Different Self-Pollen Avoidance Traits in Arabidopsis.

Authors:  Emily Indriolo; Darya Safavian; Daphne R Goring
Journal:  Plant Cell       Date:  2014-04-18       Impact factor: 11.277

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