Literature DB >> 18065422

The model plant Medicago truncatula exhibits biparental plastid inheritance.

Ryo Matsushima1, Yingchun Hu, Kazuhiro Toyoda, Wataru Sakamoto.   

Abstract

The plastid, which originated from the endosymbiosis of a cyanobacterium, contains its own plastid DNA (ptDNA) that exhibits a unique mode of inheritance. Approximately 80% of angiosperms show maternal inheritance, whereas the remainder exhibit biparental inheritance of ptDNA. Here we studied ptDNA inheritance in the model legume, Medicago truncatula. Cytological analysis of mature pollen with DNA-specific fluorescent dyes suggested that M. truncatula is one of the few model plants potentially showing biparental inheritance of ptDNA. We further examined pollen by electron microscopy and revealed that the generative cell (a mother of sperm cells) indeed has many DNA-containing plastids. To confirm biparental inheritance genetically, we crossed two ecotypes (Jemalong A17 and A20), and the transmission mode of ptDNA was investigated by a PCR-assisted polymorphism. Consistent with the cytological observations, the majority of F(1) plants possessed ptDNAs from both parents. Interestingly, cotyledons of F(1) plants tended to retain a biparental ptDNA population, while later emergent leaves tended to be uniparental with either one of the parental plastid genotypes. Biparental transmission was obvious in the F(2) population, in which all plants showed homoplasmy with either a paternal or a maternal plastid genotype. Collectively, these data demonstrated that M. truncatula is biparental for ptDNA transmission and thus can be an excellent model to study plastid genetics in angiosperms.

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Year:  2007        PMID: 18065422     DOI: 10.1093/pcp/pcm170

Source DB:  PubMed          Journal:  Plant Cell Physiol        ISSN: 0032-0781            Impact factor:   4.927


  15 in total

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4.  Low frequency paternal transmission of plastid genes in Brassicaceae.

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5.  The levels of male gametic mitochondrial DNA are highly regulated in angiosperms with regard to mitochondrial inheritance.

Authors:  Dan-Yang Wang; Quan Zhang; Yang Liu; Zhi-Fu Lin; Shao-Xiang Zhang; Meng-Xiang Sun
Journal:  Plant Cell       Date:  2010-07-06       Impact factor: 11.277

6.  A conserved, Mg²+-dependent exonuclease degrades organelle DNA during Arabidopsis pollen development.

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Review 8.  Plastid genetic engineering in Solanaceae.

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9.  Does the mode of plastid inheritance influence plastid genome architecture?

Authors:  Kate Crosby; David Roy Smith
Journal:  PLoS One       Date:  2012-09-27       Impact factor: 3.240

10.  Plant plastid engineering.

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Journal:  Curr Genomics       Date:  2010-11       Impact factor: 2.236

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