Wang Weiqin, He Aibin, Peng Shaobing, Huang Jianliang, Cui Kehui, Nie Lixiao
MOA Key Laboratory of Crop Ecophysiology and Farming System in the Middle Reaches of the Yangtze River, College of Plant Science and Technology, Huazhong Agricultural University, Wuhan, China.
Hubei Collaborative Innovation Center for Grain Industry, Yangtze University, Jingzhou, China.
Front Plant Sci. 2018 Feb 13;9:172. doi: 10.3389/fpls.2018.00172. eCollection 2018.
Seed priming is a successful practice to improve crop establishment under adverse environment. However, reduced longevity of primed rice ( L.) seeds during storage limited the adoption of this technique. Present study investigated the effect of temperature, relative air humidity (RH) and oxygen on the longevity of primed rice seeds in a range of 60 days storage. In addition, the biochemical and morphological mechanisms associated with deterioration of primed seeds during storage were explored. Three types of priming treated rice seeds and one non-primed control were stored under (1) low temperature-vacuum (LT-V), (2) room temperature-vacuum (RT-V), (3) room temperature-aerobic-low RH (RT-A-LH) and (4) room temperature-aerobic- high RH (RT-A-HH) for 0, 15, 30, 45, and 60 days. The results showed that storage of seeds under different conditions for 15-60 days did not influence the longevity of non-primed rice seeds. Meanwhile, the viability of primed rice seeds did not reduce when stored under LT-V, RT-V, and RT-A-LH, but was significantly reduced under RT-A-HH. Under vacuum condition, the increases of storage temperature (30°C) did not reduce the longevity of primed seeds. Likewise, the oxygen did not influence the longevity of primed rice seeds stored under low RH. Nevertheless, increase of RH significantly reduced the viability of primed seeds stored for 15-60 days. Reduced starch metabolism, the consumption of starch reserves in rice endosperms, the accumulation of malondialdehyde and the decreases of antioxidant enzyme activities might be associated with the deterioration of primed rice seeds during storage. In conclusion, storage of primed seeds under high RH condition beyond 15 days is deteriorative for germination and growth of rice. The primed rice seeds are recommended to store at vacuum or low RH or low temperature condition to ensure good crop establishment.
种子引发是一种在逆境条件下提高作物出苗率的成功方法。然而,引发处理后的水稻种子在储存期间寿命缩短限制了该技术的应用。本研究调查了温度、相对空气湿度(RH)和氧气在60天储存期内对引发处理水稻种子寿命的影响。此外,还探讨了储存期间引发种子劣变的生化和形态学机制。三种引发处理的水稻种子和一种未引发的对照种子分别在(1)低温-真空(LT-V)、(2)室温-真空(RT-V)、(3)室温-有氧-低RH(RT-A-LH)和(4)室温-有氧-高RH(RT-A-HH)条件下储存0、15、30、45和60天。结果表明,在不同条件下储存15 - 60天对未引发水稻种子的寿命没有影响。同时,引发处理的水稻种子在LT-V、RT-V和RT-A-LH条件下储存时活力没有降低,但在RT-A-HH条件下显著降低。在真空条件下,储存温度升高(30°C)并未降低引发种子的寿命。同样,氧气对低RH条件下储存的引发水稻种子寿命没有影响。然而,RH升高显著降低了储存15 - 60天的引发种子的活力。淀粉代谢降低、水稻胚乳中淀粉储备的消耗、丙二醛的积累以及抗氧化酶活性的降低可能与储存期间引发水稻种子的劣变有关。总之,引发种子在高RH条件下储存超过15天会对水稻的发芽和生长产生不利影响。建议将引发处理的水稻种子储存在真空、低RH或低温条件下,以确保良好的作物出苗。