Four sterile lines (Peiai64S, Y58S, Guangzhan 63-2S and H638S) and the restoring line R527 were used as materials. Five temperature gradients (24, 27, 30, 33 and 36 ℃ in artificial climate chamber) and the natura...Four sterile lines (Peiai64S, Y58S, Guangzhan 63-2S and H638S) and the restoring line R527 were used as materials. Five temperature gradients (24, 27, 30, 33 and 36 ℃ in artificial climate chamber) and the natural temperature (as control) were treated to the four sterile lines for 6 d in the fertility sensitive period of heading to flowering stage, respectively, to study the effects of temperature on physiological biochemical characteristics of young panicles and outcrossing characteristics. The results showed that the percentages of exerted stigma of Peiai 64S and Y58S were the highest at 27 ℃, which were 86.81% and 86.06%, respectively, while the percentages of exerted stigma of Guangzhan 63-2S and H638S were the highest at 24 ℃, which were 76.24% and 81.76%, respectively; the stigma viability of Peiai 64S, Y58S, Guangzhan 63-2S and H638S were the best at 24 ℃, which were 1.96, 2.12, 1.74 and 1.94, respectively; the outcrossing rates of Peiai 64S, Guangzhan 63-2S and H638S were the highest at 24 ℃, which were 58.87%, 54.22% and 50.50%, respectively, while the outcrossing rate of Y58S was the highest at 27 ℃, which was 58.96%; and the contents of peroxidase (POD) of the four sterile lines increased significantly at 33 ℃ compared with the control, while the contents of malondialdehyde (MDA) and proline increased significantly at 36 ℃ compared with the control. There were differences in temperature sensitivity between the male sterile lines, and the 24 ℃ treatment during the sensitive period was the best for the fertility sensitive period of Peiai 64S, while 27 ℃ was the best temperature for Y58S, Gangzhan 63-2S and H638S.展开更多
Using photo-thermo sensitive genie male rice (PTGMS) Pei' ai 64S, W7415S, W6154S, N26S, Annong S, Nongken 58S, 7001S and 5088S as female parents and conventional indica lines 8258 and U89 as male parents, the fact...Using photo-thermo sensitive genie male rice (PTGMS) Pei' ai 64S, W7415S, W6154S, N26S, Annong S, Nongken 58S, 7001S and 5088S as female parents and conventional indica lines 8258 and U89 as male parents, the factors affecting outcrossed seed-setting were analyzed. The PTGMS had obstacles in outcrossed seed setting influenced by inheritance and environment at varying degrees. Environmental temperature was regarded as the main factor that resulted in the outcrossed seed-setting obstacles. The sensitive stage was at the early stage of grain filling for outcrossed seed setting. There existed remarkable differences at the sensitivity stage, the duration of sensitive period, the sensitive level and the effective level of outcrossed seed-setting obstacles caused by environmental temperature among different PTGMS lines. Therefore, attention should be paid to outcrossed seed-setting obstacles in selection and utilization of PTGMS lines.展开更多
直接空气碳捕集(direct air capture,DAC)技术作为典型的负碳排放技术,是实现碳中和目标的关键技术之一,但是其依然面临高成本、高能耗问题。DAC技术与碳利用技术的深度耦合,将捕集的CO_(2)转化为高附加值产品,可提升碳减排效率并降低...直接空气碳捕集(direct air capture,DAC)技术作为典型的负碳排放技术,是实现碳中和目标的关键技术之一,但是其依然面临高成本、高能耗问题。DAC技术与碳利用技术的深度耦合,将捕集的CO_(2)转化为高附加值产品,可提升碳减排效率并降低全过程成本,在碳中和路径中具有重要价值。介绍了DAC技术的分类和原理,综述了DAC技术与CO_(2)光、电、热转化技术耦合的研究进展和主要挑战,最后展望了DAC技术与碳利用技术深度耦合的应用前景和发展方向。展开更多
基金Supported by the National Science-technology Support Plan Project(2014BAD06B07)the Agricultural Special Fund of the Department of Finance of Hunan Provincethe Innovation Project of Hunan Province(XCX15148)~~
文摘Four sterile lines (Peiai64S, Y58S, Guangzhan 63-2S and H638S) and the restoring line R527 were used as materials. Five temperature gradients (24, 27, 30, 33 and 36 ℃ in artificial climate chamber) and the natural temperature (as control) were treated to the four sterile lines for 6 d in the fertility sensitive period of heading to flowering stage, respectively, to study the effects of temperature on physiological biochemical characteristics of young panicles and outcrossing characteristics. The results showed that the percentages of exerted stigma of Peiai 64S and Y58S were the highest at 27 ℃, which were 86.81% and 86.06%, respectively, while the percentages of exerted stigma of Guangzhan 63-2S and H638S were the highest at 24 ℃, which were 76.24% and 81.76%, respectively; the stigma viability of Peiai 64S, Y58S, Guangzhan 63-2S and H638S were the best at 24 ℃, which were 1.96, 2.12, 1.74 and 1.94, respectively; the outcrossing rates of Peiai 64S, Guangzhan 63-2S and H638S were the highest at 24 ℃, which were 58.87%, 54.22% and 50.50%, respectively, while the outcrossing rate of Y58S was the highest at 27 ℃, which was 58.96%; and the contents of peroxidase (POD) of the four sterile lines increased significantly at 33 ℃ compared with the control, while the contents of malondialdehyde (MDA) and proline increased significantly at 36 ℃ compared with the control. There were differences in temperature sensitivity between the male sterile lines, and the 24 ℃ treatment during the sensitive period was the best for the fertility sensitive period of Peiai 64S, while 27 ℃ was the best temperature for Y58S, Gangzhan 63-2S and H638S.
文摘Using photo-thermo sensitive genie male rice (PTGMS) Pei' ai 64S, W7415S, W6154S, N26S, Annong S, Nongken 58S, 7001S and 5088S as female parents and conventional indica lines 8258 and U89 as male parents, the factors affecting outcrossed seed-setting were analyzed. The PTGMS had obstacles in outcrossed seed setting influenced by inheritance and environment at varying degrees. Environmental temperature was regarded as the main factor that resulted in the outcrossed seed-setting obstacles. The sensitive stage was at the early stage of grain filling for outcrossed seed setting. There existed remarkable differences at the sensitivity stage, the duration of sensitive period, the sensitive level and the effective level of outcrossed seed-setting obstacles caused by environmental temperature among different PTGMS lines. Therefore, attention should be paid to outcrossed seed-setting obstacles in selection and utilization of PTGMS lines.
文摘直接空气碳捕集(direct air capture,DAC)技术作为典型的负碳排放技术,是实现碳中和目标的关键技术之一,但是其依然面临高成本、高能耗问题。DAC技术与碳利用技术的深度耦合,将捕集的CO_(2)转化为高附加值产品,可提升碳减排效率并降低全过程成本,在碳中和路径中具有重要价值。介绍了DAC技术的分类和原理,综述了DAC技术与CO_(2)光、电、热转化技术耦合的研究进展和主要挑战,最后展望了DAC技术与碳利用技术深度耦合的应用前景和发展方向。