AI Article Synopsis

  • About 880 species of land plants are mycoheterotrophs, relying on fungi for carbon instead of photosynthesis.
  • Shifts from autotrophy to mycoheterotrophy in plants typically involve changes like loss of leaves and roots, smaller seeds, and altered reproductive strategies, but the underlying processes are not well understood.
  • Researchers created a hybrid between autotrophic Cymbidium ensifolium and mycoheterotrophic C. macrorhizon, observing variations in leaf development and root formation after five years of growth, offering insights into the evolution of mycoheterotrophy.

Article Abstract

Among land plants, which generally exhibit autotrophy through photosynthesis, about 880 species are mycoheterotrophs, dependent on mycorrhizal fungi for their carbon supply. Shifts in nutritional mode from autotrophy to mycoheterotrophy are usually accompanied by evolution of various combinations of characters related to structure and physiology, e.g., loss of foliage leaves and roots, reduction in seed size, degradation of plastid genome, and changes in mycorrhizal association and pollination strategy. However, the patterns and processes involved in such alterations are generally unknown. Hybrids between autotrophic and mycoheterotrophic plants may provide a breakthrough in molecular studies on the evolution of mycoheterotrophy. We have produced the first hybrid between autotrophic and mycoheterotrophic plant species using the orchid group Cymbidium. The autotrophic Cymbidium ensifolium subsp. haematodes and mycoheterotrophic C. macrorhizon were artificially pollinated, and aseptic germination of the hybrid seeds obtained was promoted by sonication. In vitro flowering was observed five years after seed sowing. Development of foliage leaves, an important character for photosynthesis, segregated in the first generation; that is, some individuals only developed scale leaves on the rhizome and flowering stems. However, all of the flowering plants formed roots, which is identical to the maternal parent.

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Source
http://dx.doi.org/10.1007/s10265-013-0612-0DOI Listing

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