Method for prolonging tobacco pollen storage time by utilizing tobacco seed oil
A technology for tobacco seeds and storage time, applied in the directions of botanical equipment and methods, application, and plant preservation, can solve the problems of easily damaged tobacco pollen, high energy consumption, low refrigeration temperature, etc. The effect of deterioration speed and high seed yield
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Embodiment 1
[0019] Pick the flowers of Yunyan 87 from the bud-bearing stage to the flowering stage, collect the anthers, dry them to loosen the powder, and sieve the pollen and anther sacs with a 50-mesh sieve. Weigh 10g of Yunyan 87 fresh pollen and 1g of dry color-changing silica gel with a particle size of 1-2mm, mix them in a 25ml centrifuge tube, add tobacco seed oil into the centrifuge tube containing the mixture of tobacco pollen and color-changing silica gel, and seal the centrifuge tube Cover, shake repeatedly, drive out the air between tobacco pollen and color-changing silica gel, and store in an air-conditioned room at 17±1°C. The experiment is divided into three treatment methods and a control group, each of which is carried out three times:
[0020] Treatment 1: Measure 5ml of tobacco seed oil and add it to a centrifuge tube containing a mixture of tobacco pollen and color-changing silica gel.
[0021] Treatment 2: Measure 10ml of tobacco seed oil and add it into a centrifuge...
Embodiment 2
[0039] Repeat the experiments of the control group and treatment 2 in Example 1, the difference is: store in the refrigerator at 4±1°C, before storage and storage for 3 months, 6 months, 9 months, and 12 months The pollen viability was then measured. The test results are shown in Table 2.
[0040] The results showed that the pollen viability of Yunyan 87 declined rapidly during the control storage period, and the pollen viability of the 6-month storage was significantly lower than that of the 3-month storage. During the storage period of treatment 2, the pollen viability decreased slowly, and the pollen viability in each time period was significantly better than that of the control; the pollen viability of the 9-month storage was not significantly different from that of the 6-month storage, and the pollen viability of the 12-month storage was significantly reduced. It shows that tobacco pollen can be stored for 9 months by this method.
[0041]Table 2 Changes in pollen vigo...
Embodiment 3
[0044] Repeat the pair group and treatment 2 experiments in Example 1, the difference is: store in a refrigerator at -20±1°C, measure pollen vigor before storage and after 1 year, 2 years, and 3 years of storage; Before storing in the refrigerator at -20±1℃, pre-cool in the refrigerator at 4℃ for 24 hours. The test results are shown in Table 3.
[0045] The results showed that the pollen viability of Yunyan 87 declined rapidly during the control storage period, and the pollen viability of the one-year storage was significantly lower than that before storage. During the storage period of treatment 2, the pollen viability decreased slowly, and the pollen vigor of each time period was significantly better than that of the control; the difference between the pollen viability of the 2-year storage and the 1-year storage was not significant, and the pollen viability of the 3-year storage was significantly reduced . It shows that tobacco pollen can be stored for 2 years by this met...
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