Literature DB >> 24799707

Intrasperm vertical symbiont transmission.

Kenji Watanabe1, Fumiko Yukuhiro1, Yu Matsuura2, Takema Fukatsu3, Hiroaki Noda4.   

Abstract

Symbiotic bacteria are commonly associated with cells and tissues of diverse animals and other organisms, which affect hosts' biology in a variety of ways. Most of these symbionts are present in the cytoplasm of host cells and maternally transmitted through host generations. The paucity of paternal symbiont transmission is likely relevant to the extremely streamlined sperm structure: the head consisting of condensed nucleus and the tail made of microtubule bundles, without the symbiont-harboring cytoplasm that is discarded in the process of spermatogenesis. Here, we report a previously unknown mechanism of paternal symbiont transmission via an intrasperm passage. In the leafhopper Nephotettix cincticeps, a facultative Rickettsia symbiont was found not only in the cytoplasm but also in the nucleus of host cells. In male insects, strikingly, most sperm heads contained multiple intranuclear Rickettsia cells. The Rickettsia infection scarcely affected the host fitness including normal sperm functioning. Mating experiments revealed both maternal and paternal transmission of the Rickettsia symbiont through host generations. When cultured with mosquito and silkworm cell lines, the Rickettsia symbiont was preferentially localized within the insect cell nuclei, indicating that the Rickettsia symbiont itself must have a mechanism for targeting nucleus. The mechanisms underlying the sperm head infection without disturbing sperm functioning are, although currently unknown, of both basic and applied interest.

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Year:  2014        PMID: 24799707      PMCID: PMC4034255          DOI: 10.1073/pnas.1402476111

Source DB:  PubMed          Journal:  Proc Natl Acad Sci U S A        ISSN: 0027-8424            Impact factor:   11.205


  32 in total

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Review 5.  When bacteria target the nucleus: the emerging family of nucleomodulins.

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Review 2.  An out-of-body experience: the extracellular dimension for the transmission of mutualistic bacteria in insects.

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Review 6.  Heritable symbionts in a world of varying temperature.

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7.  Delivery of a Genetically Marked Serratia AS1 to Medically Important Arthropods for Use in RNAi and Paratransgenic Control Strategies.

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9.  Heritable symbiosis: The advantages and perils of an evolutionary rabbit hole.

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