Laticifer-Specific cis-Prenyltransferase Silencing Affects the Rubber, Triterpene, and Inulin Content of Taraxacum brevicorniculatum

Author:

Post Janina1,van Deenen Nicole1,Fricke Julia1,Kowalski Natalie1,Wurbs David1,Schaller Hubert1,Eisenreich Wolfgang1,Huber Claudia1,Twyman Richard M.1,Prüfer Dirk1,Gronover Christian Schulze1

Affiliation:

1. Westphalian Wilhelms-University of Münster, Institute of Plant Biology and Biotechnology, 48143 Munster, Germany (J.P., N.v.D., J.F., N.K., D.W., D.P.); Institut de Biologie Moléculaire des Plantes du CNRS, Université de Strasbourg, Département Réseaux Métaboliques Végétaux, 67083 Strasbourg cedex, France (H.S.); Technische Universität München, Department of Biochemistry, 85747 Garching, Germany

Abstract

Abstract Certain Taraxacum species, such as Taraxacum  koksaghyz and Taraxacum  brevicorniculatum, produce large amounts of high-quality natural rubber in their latex, the milky cytoplasm of specialized cells known as laticifers. This high-molecular mass biopolymer consists mainly of poly(cis-1,4-isoprene) and is deposited in rubber particles by particle-bound enzymes that carry out the stereospecific condensation of isopentenyl diphosphate units. The polymer configuration suggests that the chain-elongating enzyme (rubber transferase; EC 2.5.1.20) is a cis-prenyltransferase (CPT). Here, we present a comprehensive analysis of transgenic T. brevicorniculatum plants in which the expression of three recently isolated CPTs known to be associated with rubber particles (TbCPT1 to -3) was heavily depleted by laticifer-specific RNA interference (RNAi). Analysis of the CPT-RNAi plants by nuclear magnetic resonance, size-exclusion chromatography, and gas chromatography-mass spectrometry indicated a significant reduction in rubber biosynthesis and a corresponding 50% increase in the levels of triterpenes and the main storage carbohydrate, inulin. Transmission electron microscopy revealed that the laticifers in CPT-RNAi plants contained fewer and smaller rubber particles than wild-type laticifers. We also observed lower activity of hydroxymethylglutaryl-coenzyme A reductase, the key enzyme in the mevalonate pathway, reflecting homeostatic control of the isopentenyl diphosphate pool. To our knowledge, this is the first in planta demonstration of latex-specific CPT activity in rubber biosynthesis.

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Genetics,Physiology

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