Phosphorus (P) is one of the most widely occurring nutrients for development and growth of wheat. In this study, the effects of P application amount on grain yield, protein content, and phosphorus use efficiency (...Phosphorus (P) is one of the most widely occurring nutrients for development and growth of wheat. In this study, the effects of P application amount on grain yield, protein content, and phosphorus use efficiency (PUE) were studied by agronomic management of P fertilizer on spring weak-gluten wheat (Triticum aestivum L.) grown under field conditions for 2 yr. The experiments were performed at five levels of P205 application amount, including 0, 72, 108, 144, and 180 kg ha-1. As a result, with increase in P fertilizer, grain yield, and P agricultural efficiency (AEp) increased in a quadratic equitation, but partial factor productivity of P (PFPp) decreased in a logarithmic eq. When 108 kg ha-1 P2Os was applied, the grain yield reached the highest level, but the protein content in gain was lower than 11.5%, a threshold for the protein content to evaluate weak-gluten wheat suitable for production of cake and biscuit. Yangmai 13 and Ningmai 9 could tolerate to higher P level of soils than Yangmai 9 that had more loss in grain yield when P fertilizer was over-applied. AEp had a concomitant relationship with grain yield and was a better descriptor for P use efficiency in the wheat. A high P use efficiency resulted in leaf area index (LAI), increased chlorophyll content and photosynthetic rate, and stable acid phophatase (APase) activity to accumulate more dry matter after anthesis, which explained that the optimum P fertilizer increased grain yield and improved grain quality of weak-gluten wheat.展开更多
The effects of the basal and top-dressing nitrogen (N) on N uptake and translocation, N utilization efficiency, grain yieldand quality of medium-gluten winter wheat Yangmai 10 were studied from 2000 to 2002. The main ...The effects of the basal and top-dressing nitrogen (N) on N uptake and translocation, N utilization efficiency, grain yieldand quality of medium-gluten winter wheat Yangmai 10 were studied from 2000 to 2002. The main results were as follows.Nitrogen content and nitrogen accumulation in plant at maturity increased with the amount of N application. Grain proteincontent and wet gluten content were significantly correlated with applied N. There was a significantly positive correlationbetween nitrogen accumulation before anthesis (NBA) and basal N fertilizer, and between nitrogen accumulation afteranthesis (NAA) and top-dressing N. N accumulated in grains was significantly correlated to NBA, NAA and N translocationfrom vegetative organs after anthesis (NTVA). NBA was significantly correlated with N application, but NAA and NTVAhad a quadratic curve correlation with applied N. N fertilizer use efficiency (NUE) had a quadratic curve correlation withapplied N, and the NUE was high when basal and top-dressing N was equally applied. For the medium-gluten wheatYangmai 10 under the same N application ratio, there was a N-regulating effect when the N application was less than266.55 kg ha-1, a stagnation of yield and quality when N application ranged from 266.55 to 309.08 kg ha-1, and an excessiveN application when the N application rate was greater than 309.08 kg ha-1. Under the conditions of this experiment, theprecise N application is 220-270 kg ha-1 with basal and top-dressing N equally used when a grain yield of more than 6 750kg ha-1, protein content higher than 12%, wet gluten content more than 30% and NUE greater than 40% could be obtained.展开更多
To test the roles of La3+ on yield and quality of wheat for different end uses, experiments were conducted using split-plot design for different La3+ treatments as main plot and different gluten types of wheat as su...To test the roles of La3+ on yield and quality of wheat for different end uses, experiments were conducted using split-plot design for different La3+ treatments as main plot and different gluten types of wheat as subplot, by foliar spraying La3+ at jointing stage and filling stage. The results showed that spraying 0.5–1.5 mmol/L La3+ increased the yield and 1000-kernel weight of wheat of different gluten types. The protein content of strong-gluten wheat Wanmai 33 increased after spraying 0.5–1.5 mmol/L La3+, which made it achieve the good quality standard of strong-gluten wheat, whereas its LOX and PPO activity reduced, the carotenoid content increased. These La3+ treatments prolonged the storage period of grain, improved flour nutritional value and the food processing quality. Spraying 0.5–1.5 mmol/L La3+ also increased flour peak viscosity of medium-gluten wheat Yangmai 158, as improving its starch properties. Spraying La3+ significantly decreased flour water absorption rate of weak gluten type variety Wanmai 48 to meet the weak-gluten flour standard. The total pentosan content reduced at 1–1.5 mmol/L La3+, which would be good for making biscuit. Results suggested that spraying appropriate concentration of La3+ increased wheat yield and benefited wheat quality for different end uses.展开更多
明确不同水氮互作对强筋优质小麦师栾02-1产量和加工品质的影响,为强筋小麦生产中如何通过合理灌溉和优化氮肥施用量来实现协同提高籽粒产量和加工品质的目标提供理论依据。2017-2020年,大田条件下设置浇水次数和施氮量二因子裂区试验,...明确不同水氮互作对强筋优质小麦师栾02-1产量和加工品质的影响,为强筋小麦生产中如何通过合理灌溉和优化氮肥施用量来实现协同提高籽粒产量和加工品质的目标提供理论依据。2017-2020年,大田条件下设置浇水次数和施氮量二因子裂区试验,主区为浇水次数,设春浇一水(W1,拔节水)和春浇两水(W2,拔节水+开花水);副区为氮肥施用量,设N0、N1、N2、N3、N4和N5(0、60、120、180、240和300 kg hm^(-2))6个水平。结果表明,施氮量0~300 kg hm^(-2)时,不同降水年型春浇一水、春浇两水小麦产量随施氮量的增加均先增加后减少,产量最高值对应的施氮量均为240 kg hm^(-2)。施氮量120~300 kg hm^(-2)时,春浇两水处理产量显著高于春浇一水处理。水氮互作对小麦单位面积收获穗数的影响最大,其次是千粒重,对穗粒数的影响最小。施氮量0~300 kg hm^(-2)时,2017-2018年度(丰水年型),春浇两水小麦湿面筋含量、沉降值、吸水率、面团稳定时间、拉伸能量、最大拉伸阻力平均值均高于春浇一水,而2018-2019、2019-2020年度(干旱年型)则相反:春浇一水高于春浇两水。不同降水年型春浇一水、春浇两水小麦湿面筋含量和沉降值随施氮量的增加先增加后减少或逐渐增加,二者最大值对应的施氮量为240 kg hm^(-2)或300 kg hm^(-2);稳定时间、拉伸能量和最大拉伸阻力随施氮量的增加均先增加后减少,施氮量240 kg hm^(-2)时达到最大值。不同降水年型强筋优质小麦师栾02-1生育期春浇两水、施氮量240 kg hm^(-2)时,籽粒产量和加工品质表现最佳。展开更多
基金the National Natural Science Foundation of China (30971729)the Priority Academic Program Development of Jiangsu Higher Education Institutions (PAPD), Chinathe Science and Technology Support Program of Jiangsu Province, China (BE2009426)
文摘Phosphorus (P) is one of the most widely occurring nutrients for development and growth of wheat. In this study, the effects of P application amount on grain yield, protein content, and phosphorus use efficiency (PUE) were studied by agronomic management of P fertilizer on spring weak-gluten wheat (Triticum aestivum L.) grown under field conditions for 2 yr. The experiments were performed at five levels of P205 application amount, including 0, 72, 108, 144, and 180 kg ha-1. As a result, with increase in P fertilizer, grain yield, and P agricultural efficiency (AEp) increased in a quadratic equitation, but partial factor productivity of P (PFPp) decreased in a logarithmic eq. When 108 kg ha-1 P2Os was applied, the grain yield reached the highest level, but the protein content in gain was lower than 11.5%, a threshold for the protein content to evaluate weak-gluten wheat suitable for production of cake and biscuit. Yangmai 13 and Ningmai 9 could tolerate to higher P level of soils than Yangmai 9 that had more loss in grain yield when P fertilizer was over-applied. AEp had a concomitant relationship with grain yield and was a better descriptor for P use efficiency in the wheat. A high P use efficiency resulted in leaf area index (LAI), increased chlorophyll content and photosynthetic rate, and stable acid phophatase (APase) activity to accumulate more dry matter after anthesis, which explained that the optimum P fertilizer increased grain yield and improved grain quality of weak-gluten wheat.
基金supported by Foundation for University Key Teacher by the Ministry of Education of China(GG-901-11117-1003)the Research Fund from Jiangsu Province of China(BE2001333).
文摘The effects of the basal and top-dressing nitrogen (N) on N uptake and translocation, N utilization efficiency, grain yieldand quality of medium-gluten winter wheat Yangmai 10 were studied from 2000 to 2002. The main results were as follows.Nitrogen content and nitrogen accumulation in plant at maturity increased with the amount of N application. Grain proteincontent and wet gluten content were significantly correlated with applied N. There was a significantly positive correlationbetween nitrogen accumulation before anthesis (NBA) and basal N fertilizer, and between nitrogen accumulation afteranthesis (NAA) and top-dressing N. N accumulated in grains was significantly correlated to NBA, NAA and N translocationfrom vegetative organs after anthesis (NTVA). NBA was significantly correlated with N application, but NAA and NTVAhad a quadratic curve correlation with applied N. N fertilizer use efficiency (NUE) had a quadratic curve correlation withapplied N, and the NUE was high when basal and top-dressing N was equally applied. For the medium-gluten wheatYangmai 10 under the same N application ratio, there was a N-regulating effect when the N application was less than266.55 kg ha-1, a stagnation of yield and quality when N application ranged from 266.55 to 309.08 kg ha-1, and an excessiveN application when the N application rate was greater than 309.08 kg ha-1. Under the conditions of this experiment, theprecise N application is 220-270 kg ha-1 with basal and top-dressing N equally used when a grain yield of more than 6 750kg ha-1, protein content higher than 12%, wet gluten content more than 30% and NUE greater than 40% could be obtained.
基金Project supported by National Natural Science Foundation of China(31371615,31071404)
文摘To test the roles of La3+ on yield and quality of wheat for different end uses, experiments were conducted using split-plot design for different La3+ treatments as main plot and different gluten types of wheat as subplot, by foliar spraying La3+ at jointing stage and filling stage. The results showed that spraying 0.5–1.5 mmol/L La3+ increased the yield and 1000-kernel weight of wheat of different gluten types. The protein content of strong-gluten wheat Wanmai 33 increased after spraying 0.5–1.5 mmol/L La3+, which made it achieve the good quality standard of strong-gluten wheat, whereas its LOX and PPO activity reduced, the carotenoid content increased. These La3+ treatments prolonged the storage period of grain, improved flour nutritional value and the food processing quality. Spraying 0.5–1.5 mmol/L La3+ also increased flour peak viscosity of medium-gluten wheat Yangmai 158, as improving its starch properties. Spraying La3+ significantly decreased flour water absorption rate of weak gluten type variety Wanmai 48 to meet the weak-gluten flour standard. The total pentosan content reduced at 1–1.5 mmol/L La3+, which would be good for making biscuit. Results suggested that spraying appropriate concentration of La3+ increased wheat yield and benefited wheat quality for different end uses.
文摘明确不同水氮互作对强筋优质小麦师栾02-1产量和加工品质的影响,为强筋小麦生产中如何通过合理灌溉和优化氮肥施用量来实现协同提高籽粒产量和加工品质的目标提供理论依据。2017-2020年,大田条件下设置浇水次数和施氮量二因子裂区试验,主区为浇水次数,设春浇一水(W1,拔节水)和春浇两水(W2,拔节水+开花水);副区为氮肥施用量,设N0、N1、N2、N3、N4和N5(0、60、120、180、240和300 kg hm^(-2))6个水平。结果表明,施氮量0~300 kg hm^(-2)时,不同降水年型春浇一水、春浇两水小麦产量随施氮量的增加均先增加后减少,产量最高值对应的施氮量均为240 kg hm^(-2)。施氮量120~300 kg hm^(-2)时,春浇两水处理产量显著高于春浇一水处理。水氮互作对小麦单位面积收获穗数的影响最大,其次是千粒重,对穗粒数的影响最小。施氮量0~300 kg hm^(-2)时,2017-2018年度(丰水年型),春浇两水小麦湿面筋含量、沉降值、吸水率、面团稳定时间、拉伸能量、最大拉伸阻力平均值均高于春浇一水,而2018-2019、2019-2020年度(干旱年型)则相反:春浇一水高于春浇两水。不同降水年型春浇一水、春浇两水小麦湿面筋含量和沉降值随施氮量的增加先增加后减少或逐渐增加,二者最大值对应的施氮量为240 kg hm^(-2)或300 kg hm^(-2);稳定时间、拉伸能量和最大拉伸阻力随施氮量的增加均先增加后减少,施氮量240 kg hm^(-2)时达到最大值。不同降水年型强筋优质小麦师栾02-1生育期春浇两水、施氮量240 kg hm^(-2)时,籽粒产量和加工品质表现最佳。