High Level Expression of C4-Specific NADP-Malic Enzyme in Leaves and Impairment of Photoautotrophic Growth in a C3 Plant, Rice
Author(s) -
Hiroko Tsuchida,
Tesshu Tamai,
Hiroshi Fukayama,
Sakae Agarie,
Mika Nomura,
Haruko Onodera,
Kazuko Ono,
Yaeko Nishizawa,
Byung-Hyun Lee,
Sakiko Hirose,
Seiichi Toki,
Maurice S. B. Ku,
Makoto Matsuoka,
Mitsue Miyao
Publication year - 2001
Publication title -
plant and cell physiology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.975
H-Index - 152
eISSN - 1471-9053
pISSN - 0032-0781
DOI - 10.1093/pcp/pce013
Subject(s) - c4 photosynthesis , biology , photosynthesis , chloroplast , enzyme , complementary dna , gene isoform , malic enzyme , enzyme assay , botany , biochemistry , gene , dehydrogenase
The chloroplastic NADP-malic enzyme (NADP-ME) is a key enzyme of the C4 photosynthesis pathway in NADP-ME type C4 plants such as maize. To express the chloroplastic NADP-ME in leaves of a C3 plant, rice, full-length cDNAs encoding the rice C3-specific isoform and the maize C4-specific isoform of the enzyme were expressed under the control of the rice CAB: promoter. Transformants carrying the rice cDNA showed the NADP-ME activities in the leaves less than several-fold that of non-transformants, while those carrying the maize cDNA showed activities up to 30-fold that of non-transformants or about 60% of the NADP-ME activity of maize leaves. These results indicate that expression of the rice C3-specific NADP-ME is suppressed at co- and/or post-transcriptional levels by some regulation mechanisms intrinsic to rice, while that of the foreign C4-specific isoform can escape from such suppression. The accumulation of the maize C4-specific NADP-ME led to bleaching of leaf color and growth hindrance in rice plants under natural light. These deteriorative effects resulted from enhanced photoinhibition of photosynthesis due to an increase in the level of NADPH inside the chloroplast by the action of the maize enzyme.
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