de Jesus Silva Jailton, Junghans Tatiana Góes, da Silva Ledo Carlos Alberto, de Lima Silva Fabiane, Souza Everton Hilo de, Hongyu Kuang, Souza Fernanda Vidigal Duarte
Universidade Federal do Recôncavo da Bahia, Rua Rui Barbosa, s/n, Campus de Cruz das Almas, Cruz das Almas, BA 44380-000 Brazil.
Embrapa Mandioca e Fruticultura, Rua Embrapa, s/n, Chapadinha, C.P. 007, Cruz das Almas, BA 44380-000 Brazil.
3 Biotech. 2022 Oct;12(10):276. doi: 10.1007/s13205-022-03329-6. Epub 2022 Sep 12.
Cryopreservation is an interesting strategy for the long-term conservation of the seeds of the majority of cultivated plants as well as many of the corresponding wild parents. The objective of this study was to evaluate the response of the seeds of different passion fruit species to cryopreservation, as well as to apply multivariate tools to better understand the germinative behavior after thawing, to support the application and repeatability of these methods with other species. Seeds of , , , , , , and were submitted to cryopreservation, and after thawing the following variables were analyzed: emergence percentage (%); mean emergence time (days); mean emergence speed (plantlets.day); uncertainty (bit); and synchrony (bit). We applied multivariate analysis of variance (MANOVA) and canonical discriminant analysis (CDA) to the data. The seeds of all the species withstood the freezing well, indicating that cryopreservation is a viable alternative for long-term conservation of genetic material. The emergence percentage, average emergence speed and average emergence time were the variables that contributed the most to separation of the species in the first canonical discriminant function (Can1). The seeds of the species studied were found to be tolerant to desiccation because they remained viable even with low water content. The results showed that seeds could be cryopreserved successfully both with and without prior desiccation.
冷冻保存是长期保存大多数栽培植物种子以及许多相应野生亲本种子的一种有趣策略。本研究的目的是评估不同百香果物种种子对冷冻保存的反应,并应用多变量工具更好地了解解冻后的发芽行为,以支持这些方法在其他物种上的应用和可重复性。将 、 、 、 、 、 、 和 的种子进行冷冻保存,解冻后分析以下变量:出苗率(%);平均出苗时间(天);平均出苗速度(株·天);不确定性(比特);以及同步性(比特)。我们对数据应用了多变量方差分析(MANOVA)和典型判别分析(CDA)。所有物种的种子都能很好地耐受冷冻,这表明冷冻保存是长期保存 遗传物质的一种可行选择。在第一个典型判别函数(Can1)中,出苗率、平均出苗速度和平均出苗时间是对物种分离贡献最大的变量。研究发现所研究物种的种子耐干燥,因为即使含水量低它们仍能保持活力。结果表明,无论有无预先干燥处理,种子都能成功进行冷冻保存。