Somatic embryogenesis and plant regeneration from sugi (Japanese cedar, cryptomeria japonica d. don, cupressaceae) seed families by marker assisted selection for the male sterility allele ms1

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Abstract

One of the possible countermeasures for pollinosis caused by sugi (Cryptomeria japonica), a serious public health problem in Japan, is the use of male sterile plants (MSPs; pollen-free plants). However, the production efficiencies of MSPs raised by conventional methods are extremely poor, time consuming, and resulting in a high seedling cost. Here, we report the development of a novel technique for efficient production of MSPs, which combines marker-assisted selection (MAS) and somatic embryogenesis (SE). SE from four full sib seed families of sugi, carrying the male sterility gene MS1, was initiated using megagametophyte explants that originated from four seed collections taken at one-week intervals during the month of July 2017. Embryogenic cell lines (ECLs) were achieved in all families, with initiation rates varying from 0.6% to 59%. Somatic embryos were produced from genetic marker-selected male sterile ECLs on medium containing maltose, abscisic acid (ABA), polyethylene glycol (PEG), and activated charcoal (AC). Subsequently, high frequencies of germination and plant conversion (≥76%) were obtained on plant growth regulator-free medium. Regenerated plantlets were acclimatized successfully, and the initial growth of male sterile somatic plants was monitored in the field.

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Maruyama, T. E., Ueno, S., Hirayama, S., Kaneeda, T., & Moriguchi, Y. (2020). Somatic embryogenesis and plant regeneration from sugi (Japanese cedar, cryptomeria japonica d. don, cupressaceae) seed families by marker assisted selection for the male sterility allele ms1. Plants, 9(8), 1–15. https://doi.org/10.3390/plants9081029

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