Tiloca Giuseppe, Brundu Giuseppe, Ballesteros Daniel
Seed and Stress Biology, Royal Botanic Gardens Kew, Wakehurst Place, Ardingly RH17 6TN, West Sussex, UK.
Dipartimento di Agraria, Università degli Studi di Sassari, 07100 Sassari, Sardinia, Italy.
Plants (Basel). 2022 May 7;11(9):1262. doi: 10.3390/plants11091262.
Understanding the desiccation and freezing tolerance of bryophyte spores is vital to explain how plants conquered land and current species distribution patterns and help to develop efficient ex situ conservation methods. However, knowledge of these traits is scarce. We investigated tolerance to drying (at 15% relative humidity [RH] for two weeks) and freezing (1 h exposure to liquid nitrogen) on the spores of 12 bryophyte species (23 accessions) from the UK. The presence of storage lipids and their thermal fingerprint, and the levels of unfrozen water content, were determined by differential scanning calorimetry (DSC). The presence of chlorophyll in dry spores was detected by fluorescence microscopy. All species and accessions tested tolerated the drying and freezing levels studied. DSC suggested that 4.1−29.3% of the dry mass is storage lipids, with crystallization and melting temperatures peaking at around −30 °C. Unfrozen water content was determined <0.147 g H2O g−1 dry weight (DW). Most of the spores investigated showed the presence of chlorophyll in the cytoplasm by red autofluorescence. Bryophyte spores can be stored dry at low temperatures, such as orthodox seeds, supporting the creation of bryophyte spore banks. However, the presence of storage lipids and chlorophyll in the cytoplasm may reduce spore longevity during conventional storage at −20 °C. Alternatively, cryogenic spore storage is possible.
了解苔藓植物孢子的耐旱性和耐冻性对于解释植物如何征服陆地以及当前物种分布模式至关重要,并且有助于开发高效的迁地保护方法。然而,关于这些特性的知识却很匮乏。我们研究了来自英国的12种苔藓植物(23个种质)的孢子对干燥(在15%相对湿度[RH]下干燥两周)和冷冻(暴露于液氮1小时)的耐受性。通过差示扫描量热法(DSC)测定储存脂质的存在及其热指纹图谱,以及未冻水含量水平。通过荧光显微镜检测干燥孢子中叶绿素的存在。所有测试的物种和种质都耐受所研究的干燥和冷冻水平。DSC表明,干重的4.1−29.3%是储存脂质,其结晶和熔化温度在−30°C左右达到峰值。未冻水含量测定为<0.147 g H2O g−1干重(DW)。大多数所研究的孢子通过红色自发荧光显示细胞质中存在叶绿素。苔藓植物孢子可以像正统种子一样在低温下干燥储存,这支持了苔藓植物孢子库的建立。然而,细胞质中储存脂质和叶绿素的存在可能会降低孢子在−20°C常规储存期间的寿命。另外,低温保存孢子也是可行的。