Transient expression in Nicotiana benthamiana for rapid functional analysis of genes involved in non-photochemical quenching and carotenoid biosynthesis

被引:30
|
作者
Leonelli, Lauriebeth [1 ]
Erickson, Erika [1 ,2 ]
Lyska, Dagmar [1 ,2 ]
Niyogi, Krishna K. [1 ,2 ]
机构
[1] Univ Calif Berkeley, Howard Hughes Med Inst, Dept Plant & Microbial Biol, Berkeley, CA 94720 USA
[2] Lawrence Berkeley Natl Lab, Mol Biophys & Integrated Bioimaging Div, Berkeley, CA 94720 USA
来源
PLANT JOURNAL | 2016年 / 88卷 / 03期
基金
比尔及梅琳达.盖茨基金会;
关键词
non-photochemical quenching; PSBS; carotenoid biosynthesis; xanthophyll cycle; transient assay; photosynthesis; Nicotiana benthamiana; Nannochloropsis; Thalassiosira; lutein epoxide; VIOLAXANTHIN DE-EPOXIDASE; XANTHOPHYLL-CYCLE; PHOTOSYSTEM-II; CHLAMYDOMONAS-REINHARDTII; IN-VIVO; PHYSCOMITRELLA-PATENS; ARABIDOPSIS-THALIANA; ENERGY-DISSIPATION; LIGHT ENERGY; PHOTOSYNTHESIS;
D O I
10.1111/tpj.13268
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Plants must switch rapidly between light harvesting and photoprotection in response to environmental fluctuations in light intensity. This switch can lead to losses in absorbed energy usage, as photoprotective energy dissipation mechanisms can take minutes to hours to fully relax. One possible way to improve photosynthesis is to engineer these energy dissipation mechanisms (measured as non-photochemical quenching of chlorophyll a fluorescence, NPQ) to induce and relax more quickly, resulting in smaller losses under dynamic light conditions. Previous studies aimed at understanding the enzymes involved in the regulation of NPQ have relied primarily on labor-intensive and time-consuming generation of stable transgenic lines and mutant populations - approaches limited to organisms amenable to genetic manipulation and mapping. To enable rapid functional testing of NPQ-related genes from diverse organisms, we performed Agrobacterium tumefaciens-mediated transient expression assays in Nicotiana benthamiana to test if NPQ kinetics could be modified in fully expanded leaves. By expressing Arabidopsis thaliana genes known to be involved in NPQ, we confirmed the viability of this method for studying dynamic photosynthetic processes. Subsequently, we used naturally occurring variation in photosystem II subunit S, a modulator of NPQ in plants, to explore how differences in amino acid sequence affect NPQ capacity and kinetics. Finally, we functionally characterized four predicted carotenoid biosynthesis genes from the marine algae Nannochloropsis oceanica and Thalassiosira pseudonana and examined the effect of their expression on NPQ in N. benthamiana. This method offers a powerful alternative to traditional gene characterization methods by providing a fast and easy platform for assessing gene function in planta.
引用
收藏
页码:375 / 386
页数:12
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