Investigating The Potential Of Novel Non-Woven Fabrics For Efficient Pollination Control In Plant Breeding

John C Clifton-Brown, Hannah Senior,Sarah J Purdy,Richard Horsnell, Bernd Lankamp, Ann-Katrin Müennekhoff, Daljit Virk,Estelle Guillemois,Vera Chetty,Alan Cookson,Sarah Girdwood, Gabi Clifton-Brown, Mei Lie Mc Tan,Danny Awty-Carroll,Alison R Bentley

PLOS ONE(2018)

引用 3|浏览30
暂无评分
摘要
Plant breeding is achieved through the controlled self- or cross-pollination of individuals and typically involves isolation of floral parts from selected parental plants. Paper, cellulose or synthetic materials are used to avoid self pollination or cross contamination. Low seed set limits the rate of breeding progress and increases costs. We hypothesized that a novel 'non-woven' fabric optimal for both pollination and seed set in multiple plant species could be developed. After determining the baseline pollen characteristics and usage requirements we established iterative three phase development and biological testing. This determined (1) that white fabric gave superior seed return and informed the (2) development of three non-woven materials using different fibre and layering techniques. We tested their performance in selfing and hybridisation experiments recording differences in performance by material type within species. Finally we (3) developed further advanced fabrics with increased air permeability and tested biological performance. An interaction between material type and species was observed and environmental decoupling investigated, showing that the non-woven fabrics had superior water vapour transmission and temperature regulation compared to controls. Overall, non-woven fabrics outperformed existing materials for both pollination and seed set and we found that different materials can optimize species-specific, rather than species-generic performance.
更多
查看译文
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要