Hardstaff Lyndle K, Sommerville Karen D, Funnekotter Bryn, Bunn Eric, Offord Catherine A, Mancera Ricardo L
Curtin Medical School, Curtin University, GPO Box U1987, Perth, WA 6845, Australia.
The Australian PlantBank, Australian Institute of Botanical Science, The Royal Botanic Gardens and Domain Trust, Mount Annan, NSW 2567, Australia.
Plants (Basel). 2022 Apr 8;11(8):1017. doi: 10.3390/plants11081017.
The Myrtaceae is a very large and diverse family containing a number of economically and ecologically valuable species. In Australia, the family contains approximately 1700 species from 70 genera and is structurally and floristically dominant in many diverse ecosystems. In addition to threats from habitat fragmentation and increasing rates of natural disasters, infection by myrtle rust caused by is of significant concern to Australian Myrtaceae species. Repeated infections of new growth have caused host death and suppressed host populations by preventing seed set. Although most Myrtaceae species demonstrate orthodox seed storage behavior, exceptional species such as those with desiccation sensitive seed or from myrtle rust-suppressed populations require alternate conservation strategies such as those offered by cryobiotechnology. Targeting seven key Australian genera, we reviewed the available literature for examples of cryobiotechnology utilized for conservation of Myrtaceae. While there were only limited examples of successful cryopreservation for a few genera in this family, successful cryopreservation of both shoot tips and embryonic axes suggest that cryobiotechnology provides a viable alternative for the conservation of exceptional species and a potential safe storage method for the many Myrtaceae species under threat from .
桃金娘科是一个非常庞大且多样的科,包含许多具有经济和生态价值的物种。在澳大利亚,该科有来自70个属的约1700个物种,在许多不同的生态系统中,其在结构和植物区系方面占主导地位。除了栖息地破碎化和自然灾害发生率上升带来的威胁外,由[病原菌名称未给出]引起的桃金娘锈病感染对澳大利亚的桃金娘科物种来说是一个重大问题。新生长部位的反复感染导致宿主死亡,并通过阻止结实抑制了宿主种群数量。尽管大多数桃金娘科物种表现出传统的种子储存行为,但一些特殊物种,如那些种子对干燥敏感的物种或来自受桃金娘锈病抑制种群的物种,需要诸如低温生物技术提供的替代保护策略。针对澳大利亚七个关键属,我们查阅了现有文献,以寻找用于桃金娘科保护的低温生物技术实例。虽然该科中只有少数几个属有成功冷冻保存的有限实例,但茎尖和胚轴的成功冷冻保存表明,低温生物技术为特殊物种的保护提供了一种可行的替代方法,并且为许多受到[威胁因素未明确]威胁的桃金娘科物种提供了一种潜在的安全储存方法。