4.6 Article

Propagation of desert moss Syntrichia caninervis in peat pellet: a method for rapidly obtaining large numbers of cloned gametophytes

期刊

PLANT METHODS
卷 17, 期 1, 页码 -

出版社

BMC
DOI: 10.1186/s13007-021-00740-7

关键词

Leaf; Shoot; Stem; Rihizoid; Gametophyte; Regeneration; Peat pellet

资金

  1. NSFC (National Natural Science Foundation of China) -Xinjiang key project [U1703233]
  2. Key Research Program of Frontier Sciences, CAS [ZDBS-LY-SM009]
  3. Youth Innovation Promotion Association, Chinese Academy of Sciences [2018478]

向作者/读者索取更多资源

This study investigates the regeneration potential of different explants of Syntrichia caninervis in a peat pellet environment. The results suggest that juvenile and green leaves, as well as rhizoids, have strong regeneration abilities, with stems being the most important body part for propagation. This research contributes to our understanding of moss cultivation and provides valuable insights for biocrust restoration efforts.
Background Syntrichia caninervis is a typical desiccation tolerant moss that is a dominant species forming biological soil crusts in the Gurbantunggut Desert. This study investigated the effect of different explants on regeneration potential by propagating them on peat pellet. Result Juvenile and green leaves can regenerate secondary protonema within one week and shoots in one-half month in peat pellet. Rhizoids have a great ability to regenerate, and similar to leaf regeneration, secondary protonema is the dominant type of regenerant. The process of stem regeneration is similar to that of whole gametophytes. Stems are the most important integral body part during propagation. The whole gametophyte is the best materials for rapidly propagating gametophyte on peat pellet. Conclusion This article improves the state of our current knowledge of desiccation tolerant moss cultivation, highlighting efforts to effectively obtain a large number of gametophytes through different explant parts. This work provides a useful resource for the study of S. caninervis as well as biocrust restoration.

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