Seeds of the threatened dry rainforest tree Cadellia pentastylis (Surianaceae) are non-dormant

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
N. Emery, Justin C. Collette
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Abstract

Abstract Cadellia pentastylis (Surianaceae) is an Australian endemic threatened rainforest tree. Irregular flowering and fruiting events coupled with high rates of infertility and insect predation has meant that seed testing has not been possible for this species. Seeds were opportunistically collected from a wild population in early 2021, which allowed for the first germination tests to be conducted. In this study, the presence of physical dormancy was examined by performing an imbibition test using scarified and non-scarified seeds. We also investigated whether a 5-min heat shock treatment at temperatures ranging from 60 to 120°C improved germination success. The presence of physiological dormancy was also examined by recording germination success following a gibberellic acid or smoke-water pre-treatment. Both scarified and non-scarified seeds readily imbibed water over a 72-h period, and several seeds had germinated in both treatments after 48 h. Final germination proportion and t50 following a heat shock, gibberellic acid or smoke-water pre-treatment did not significantly differ from the controls. We conclude that C. pentastylis seeds are non-dormant. Although a palisade cell layer has been reported in the endocarp, our results suggest that this layer may not be sufficiently formed to restrict germination. We recommend that seeds are collected from populations following dispersal and propagated shortly after or stored as conservation collections in ex situ Seedbanks.
受到威胁的干燥雨林树木五astylis的种子是不休眠的
摘要五柱Cadellia pentasylis(苏里安科)是澳大利亚特有的热带雨林濒危树种。不规则的开花和结果事件,加上高不育率和昆虫捕食,意味着该物种无法进行种子测试。2021年初,人们偶然从野生种群中采集了种子,这使得第一次发芽测试得以进行。在这项研究中,通过使用翻松和未翻松的种子进行吸胀试验来检查物理休眠的存在。我们还研究了在60至120°C的温度下进行5分钟的热休克处理是否能提高发芽成功率。生理休眠的存在也通过记录赤霉素或烟雾水预处理后的发芽成功率来检查。翻松和未翻松的种子在72小时内都很容易吸收水分,48小时后两种处理中都有几个种子发芽。最终发芽比例和热休克、赤霉酸或烟雾水预处理后的t50与对照组没有显著差异。我们得出的结论是五柱藻种子是非休眠的。尽管据报道在内果皮中有栅栏细胞层,但我们的研究结果表明,这一层的形成可能不足以限制发芽。我们建议在传播后从种群中收集种子,并在传播后不久繁殖或作为保护收藏品储存在迁地种子库中。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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