AI Article Synopsis

  • Polyphenol oxidase (PPO) in red clover is not essential for growth, nodule production, or function under optimal nitrogen-free conditions, indicating it has a specific role rather than a critical one.
  • The absence of PPO leads to a more reduced state in plant tissues and subtle developmental changes in nodules, with certain phenolic compounds accumulating in leaves and nodules.
  • Microscopy analysis of nodules from PPO-deficient plants shows structural differences, such as longer nodules with more cell layers but less thickened walls, and altered characteristics in the N2-fixing zone's bacteroids.

Article Abstract

Polyphenol oxidase (PPO) may have multiple functions in tissues depending on its cellular or tissue localization. Here we use PPO RNAi transformants of red clover (Trifolium pratense) to determine the role PPO plays in normal development of plants, and especially in N2-fixing nodules. In red clover, PPO was not essential for either growth or nodule production, or for nodule function in plants grown under optimal, N-free conditions. However, absence of PPO resulted in a more reduced environment in all tissues, as measured by redox potential, and caused subtle developmental changes in nodules. Leaves and, to a lesser extent nodules, lacking PPO tended to accumulate phenolic compounds. A comparison of nodules of two representative contrasting clones by microscopy revealed that nodules lacking PPO were morphologically and anatomically subtly altered, and that phenolics accumulated in different cells and tissues. Developing nodules lacking PPO were longer, and there were more cell layers within the squashed cell layer (SCL), but the walls of these cells were less thickened and the cells were less squashed. Within the N2-fixing zone, bacteroids appeared more granular and were less tightly packed together, and were similar to developmentally compromised bacteroids elicited by catalase mutant rhizobia reported elsewhere.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4269121PMC
http://dx.doi.org/10.3389/fpls.2014.00700DOI Listing

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