The chloroplast min system functions differentially in two specific nongreen plastids in Arabidopsis thaliana

The nongreen plastids, such as etioplasts, chromoplasts, etc., as well as chloroplasts, are all derived from proplastids in the meristem. To date, the Min system members in plants have been identified as regulators of FtsZ-ring placement, which are essential for the symmetrical division of chloropla...

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Published inPloS one Vol. 8; no. 7; p. e71190
Main Authors Wang, Peng, Zhang, Jie, Su, Jianbin, Liu, Jun, Liu, Bing, Feng, Dongru, Wang, Jinfa, Wang, Hongbin
Format Journal Article
LanguageEnglish
Published United States Public Library of Science 30.07.2013
Public Library of Science (PLoS)
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Summary:The nongreen plastids, such as etioplasts, chromoplasts, etc., as well as chloroplasts, are all derived from proplastids in the meristem. To date, the Min system members in plants have been identified as regulators of FtsZ-ring placement, which are essential for the symmetrical division of chloroplasts. However, the regulation of FtsZ-ring placement in nongreen plastids is poorly understood. In this study, we investigated the division site placement of nongreen plastids by examining the etioplasts as representative in Arabidopsis Min system mutants. Surprisingly, the shape and number of etioplasts in cotyledons of arc3, arc11 and mcd1 mutants were similar to that observed in wild-type plants, whereas arc12 and parc6 mutants exhibited enlarged etioplasts that were reduced in number. In order to examine nongreen plastids in true leaves, we silenced the ALB3 gene in these Min system mutant backgrounds to produce immature chloroplasts without the thylakoidal network using virus induced gene silencing (VIGS). Interestingly, consistent with our observations in etioplasts, enlarged and fewer nongreen plastids were only detected in leaves of parc6 (VIGS-ALB3) and arc12 (VIGS-ALB3) plants. Further, the FtsZ-ring assembled properly at the midpoint in nongreen plastids of arc3, arc11 and mcd1 (VIGS-ALB3) plants, but organized into multiple rings in parc6 (VIGS-ALB3) and presented fragmented filaments in arc12 (VIGS-ALB3) plants, suggesting that division site placement in nongreen plastids requires fewer components of the plant Min system. Taken together, these results suggest that division site placement in nongreen plastids is different from that in chloroplasts.
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Competing Interests: The authors have declared that no competing interests exist.
Conceived and designed the experiments: PW JS JW HW. Performed the experiments: PW JZ PW. Analyzed the data: JZ BL DF. Wrote the paper: PW JS JZ HW. Corrected the paper: PW JZ JS JL HW.
ISSN:1932-6203
1932-6203
DOI:10.1371/journal.pone.0071190