Improving plant productivity by re-tuning the regeneration of RuBP in the Calvin-Benson-Bassham cycle.
Improving plant productivity by re-tuning the regeneration of RuBP in the Calvin-Benson-Bassham cycle.
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DOI:
10.1111/nph.18394
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发表时间:
2022-10
期刊:
影响因子:
9.4
通讯作者:
Raines, Christine A.
中科院分区:
文献类型:
--
作者:
Raines, Christine A.
The Calvin–Benson–Bassham (CBB) cycle is arguably the most important pathway on earth, capturing CO2 from the atmosphere and converting it into organic molecules, providing the basis for life on our planet. This cycle has been intensively studied over the 50 yr since it was elucidated, and it is highly conserved across nature, from cyanobacteria to the largest of our land plants. Eight out of the 11 enzymes in this cycle catalyse the regeneration of ribulose‐1‐5 bisphosphate (RuBP), the CO2 acceptor molecule. The potential to manipulate RuBP regeneration to improve photosynthesis has been demonstrated in a number of plant species, and the development of new technologies, such as omics and synthetic biology provides exciting future opportunities to improve photosynthesis and increase crop yields.
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影响因子:
6.9
作者:
Köhler IH;Ruiz-Vera UM;VanLoocke A;Thomey ML;Clemente T;Long SP;Ort DR;Bernacchi CJ
通讯作者:
Bernacchi CJ
DOI:
10.1098/rstb.2016.0384
发表时间:
2017-09-26
期刊:
Philosophical transactions of the Royal Society of London. Series B, Biological sciences
影响因子:
--
作者:
Driever SM;Simkin AJ;Alotaibi S;Fisk SJ;Madgwick PJ;Sparks CA;Jones HD;Lawson T;Parry MAJ;Raines CA
通讯作者:
Raines CA
影响因子:
7.2
作者:
Benes, Bedrich;Guan, Kaiyu;Turk, Matthew J.
通讯作者:
Turk, Matthew J.
影响因子:
7.8
作者:
Erb TJ;Zarzycki J
通讯作者:
Zarzycki J
影响因子:
4.8
作者:
Li Yan-yan;Guo Li-na;Zhang Rui
通讯作者:
Zhang Rui