莱茵衣藻
叶绿体
生物
衣原体
光合作用
叶绿体膜
生物化学
突变体
细胞生物学
植物
类囊体
基因
作者
Weichao Huang,Anagha Krishnan,Anastasija Plett,Michelle Meagher,Nicole Linka,Yongsheng Wang,Bijie Ren,Justin Findinier,Petra Redekop,Neda Fakhimi,Rick G. Kim,Devin A.J. Karns,Nanette R. Boyle,Matthew C. Posewitz,Arthur Grossman
出处
期刊:The Plant Cell
[Oxford University Press]
日期:2023-03-27
卷期号:35 (7): 2592-2614
被引量:6
标识
DOI:10.1093/plcell/koad095
摘要
Modulation of photoassimilate export from the chloroplast is essential for controlling the distribution of fixed carbon in the cell and maintaining optimum photosynthetic rates. In this study, we identified chloroplast TRIOSE PHOSPHATE/PHOSPHATE TRANSLOCATOR 2 (CreTPT2) and CreTPT3 in the green alga Chlamydomonas (Chlamydomonas reinhardtii), which exhibit similar substrate specificities but whose encoding genes are differentially expressed over the diurnal cycle. We focused mostly on CreTPT3 because of its high level of expression and the severe phenotype exhibited by tpt3 relative to tpt2 mutants. Null mutants for CreTPT3 had a pleiotropic phenotype that affected growth, photosynthetic activities, metabolite profiles, carbon partitioning, and organelle-specific accumulation of H2O2. These analyses demonstrated that CreTPT3 is a dominant conduit on the chloroplast envelope for the transport of photoassimilates. In addition, CreTPT3 can serve as a safety valve that moves excess reductant out of the chloroplast and appears to be essential for preventing cells from experiencing oxidative stress and accumulating reactive oxygen species, even under low/moderate light intensities. Finally, our studies indicate subfunctionalization of the TRIOSE PHOSPHATE/PHOSPHATE TRANSLOCATOR (CreTPT) transporters and suggest that there are differences in managing the export of photoassimilates from the chloroplasts of Chlamydomonas and vascular plants.
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