Abnormal Chloroplast Development and Growth Inhibition in Rice Thioredoxin m Knock-Down Plants

Author:

Chi Yong Hun1,Moon Jeong Chan1,Park Jin Ho1,Kim Ho-Seung1,Zulfugarov Ismayil S.1,Fanata Wahyu Indra1,Jang Ho Hee1,Lee Jung Ro1,Lee Young Mee1,Kim Sun Tae1,Chung Yong-Yoon1,Lim Chae Oh1,Kim Jae-Yean1,Yun Dae-Jin1,Lee Choon-Hwan1,Lee Kyun Oh1,Lee Sang Yeol1

Affiliation:

1. Division of Applied Life Science (BK21 Program), EB-NCRC and Plant Molecular Biology and Biotechnology Research Center, Gyeongsang National University, Jinju 660–701, Korea (Y.H.C., J.C.M., J.H.P., W.I.F., H.H.J., J.R.L., Y.M.L., S.T.K., C.O.L., J.-Y.K., D.-J.Y., K.O.L., S.Y.L.); Department of Molecular Biology, Pusan National University, Busan 609–735, Korea (H.-S.K., I.S.Z, C.-H.L.); and School

Abstract

Abstract Plant cells contain several thioredoxin isoforms that are characterized by subcellular localization and substrate specificity. Here, we describe the functional characterization of a rice (Oryza sativa) thioredoxin m isoform (Ostrxm) using a reverse genetics technique. Ostrxm showed green tissue-specific and light-responsive mRNA expression. Ostrxm was localized in chloroplasts of rice mesophyll cells, and the recombinant protein showed dithiothreitol-dependent insulin β-chain reduction activity in vitro. RNA interference (RNAi) of Ostrxm resulted in rice plants with developmental defects, including semidwarfism, pale-green leaves, abnormal chloroplast structure, and reduced carotenoid and chlorophyll content. Ostrxm RNAi plants showed remarkably decreased F  v/F  m values under high irradiance conditions (1,000 μmol m−2 s−1) with delayed recovery. Two-dimensional electrophoresis and matrix-assisted laser-desorption/ionization time-of-flight analysis showed that the levels of several chloroplast proteins critical for photosynthesis and biogenesis were significantly decreased in Ostrxm RNAi plants. Furthermore, 2-Cys peroxiredoxin, a known target of thioredoxin, was present in oxidized forms, and hydrogen peroxide levels were increased in Ostrxm RNAi plants. The pleiotropic effects of Ostrxm RNAi suggest that Ostrxm plays an important role in the redox regulation of chloroplast target proteins involved in diverse physiological functions.

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Genetics,Physiology

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