The experiments were conducted for three consecutive years across 14 locations using 9 non-waxy proso millet genotypes and 16 locations using 7 waxy proso millet genotypes in China. The objectives of this study were t...The experiments were conducted for three consecutive years across 14 locations using 9 non-waxy proso millet genotypes and 16 locations using 7 waxy proso millet genotypes in China. The objectives of this study were to analyze yield stability and adaptability of proso millets and to evaluate the discrimination and representativeness of locations by analysis of vari- ance (ANOVA) and genotype and genotype by environment interaction (GGE) biplot methods. Grain yields of proso millet genotypes were significantly influenced by environment (E), genotype (G) and their interaction (GxE) (P〈0.1%). GxE inter- action effect was six times higher than G effect in non-waxy group and seven times in waxy group. N04-339 in non-waxy and Neimi 6 (NM6) in waxy showed higher grain yields and stability compared with other genotypes. Also, Neimi 9 (NM9, a non-waxy cultivar) and 90322-2-33 (a waxy cultivar) showed higher adaptability in 7 and in 11 locations, respectively. For non-waxy, Dalat, Inner Mongolia (E2) and Wuzhai, Shanxi (E5) were the best sites among all the locations for maximizing the variance among candidate cultivars, and Yanchi, Ningxia (El0) had the best representativeness. Wuzhai, Shanxi (e9) and Yanchi, Ningxia (e14) were the best representative locations, and Baicheng, Jilin (e2) was better discriminating location than others for waxy genotypes. Based on our results, El0 and e14 have enhanced efficiency and accuracy for non-waxy genotypes and waxy genotypes selection, respectively in national regional test of proso millet varieties.展开更多
To improve seed yield of male sterile line,the relationship between outcrossing rate and climate factors was explored.Data of blooming period,outcrossing rate of male sterile line and climate during 2006–2016 growing...To improve seed yield of male sterile line,the relationship between outcrossing rate and climate factors was explored.Data of blooming period,outcrossing rate of male sterile line and climate during 2006–2016 growing seasons were investigated and analyzed.The shortest blooming period was 18.8 d with mean temperature of 24℃–25℃and 18.5 d with about 125 h natural illumination.More rainfall caused a longer blooming period,and a high outcrossing rate was found with about 100 mm rainfall and the mean temperature of 24℃–25℃.Increased natural illumination time by tapetum lucidum mulching improved outcrossing rate by 42.48%compared tocontrol.Overall,the selective combination of climate and environmental factors could be effective for increasing outcrossing rate and hybrid seed yield in the male sterile line of soybean.展开更多
Qin pepper,a famous local agricultural product of Shaanxi Province,has grown in Guanzhong Area for several hundred years.In recent years,Qin pepper industry has already made considerable progresses,but it also faces m...Qin pepper,a famous local agricultural product of Shaanxi Province,has grown in Guanzhong Area for several hundred years.In recent years,Qin pepper industry has already made considerable progresses,but it also faces many challenges.To ensure a stable planting area of over 100 000 hm 2,a total output of 1.85 million tons and a ratio of 1:2:2 among freshly used peppers,dried peppers and processed peppers in 2015,on the basis of full investigation,expert argumentation as well as research and analysis,industrialization modes of " leading enterprise + agricultural department + base"," leading enterprise + agricultural company" and " leading enterprise + specialized cooperative" are presented herein,on the principle of " appropriate centralization,scale development,company operation,and plate promotion" and in accordance with the general idea of " stabilizing area,optimizing layout;relying on technology,highlighting superior quality;leading by enterprises,and improving efficiency".Some development strategies including " optimizing layout to facilitate plate promotion;increasing science and technology input to improve industrial competitiveness;supporting leading enterprises to accelerate industrialization process;promoting industrial certification to make well-known brands" are also put forward herein.展开更多
基金funded by the National Key Technologies R&D Program of China during the 12th Five-Year Plan period (2014BAD07B03)the National Natural Science Foundation of China (31371529)+2 种基金the Postdoctoral Science Foundation of Heilongjiang Province, China (LBH-Z14177)the project of Education Department in Heilongjiang Province, China (12541599)the China Agricultural Research System (CARS07-13.5-A9)
文摘The experiments were conducted for three consecutive years across 14 locations using 9 non-waxy proso millet genotypes and 16 locations using 7 waxy proso millet genotypes in China. The objectives of this study were to analyze yield stability and adaptability of proso millets and to evaluate the discrimination and representativeness of locations by analysis of vari- ance (ANOVA) and genotype and genotype by environment interaction (GGE) biplot methods. Grain yields of proso millet genotypes were significantly influenced by environment (E), genotype (G) and their interaction (GxE) (P〈0.1%). GxE inter- action effect was six times higher than G effect in non-waxy group and seven times in waxy group. N04-339 in non-waxy and Neimi 6 (NM6) in waxy showed higher grain yields and stability compared with other genotypes. Also, Neimi 9 (NM9, a non-waxy cultivar) and 90322-2-33 (a waxy cultivar) showed higher adaptability in 7 and in 11 locations, respectively. For non-waxy, Dalat, Inner Mongolia (E2) and Wuzhai, Shanxi (E5) were the best sites among all the locations for maximizing the variance among candidate cultivars, and Yanchi, Ningxia (El0) had the best representativeness. Wuzhai, Shanxi (e9) and Yanchi, Ningxia (e14) were the best representative locations, and Baicheng, Jilin (e2) was better discriminating location than others for waxy genotypes. Based on our results, El0 and e14 have enhanced efficiency and accuracy for non-waxy genotypes and waxy genotypes selection, respectively in national regional test of proso millet varieties.
基金supported by the Earmarked Fund for China Agricultural Research System(CARS-04)。
文摘To improve seed yield of male sterile line,the relationship between outcrossing rate and climate factors was explored.Data of blooming period,outcrossing rate of male sterile line and climate during 2006–2016 growing seasons were investigated and analyzed.The shortest blooming period was 18.8 d with mean temperature of 24℃–25℃and 18.5 d with about 125 h natural illumination.More rainfall caused a longer blooming period,and a high outcrossing rate was found with about 100 mm rainfall and the mean temperature of 24℃–25℃.Increased natural illumination time by tapetum lucidum mulching improved outcrossing rate by 42.48%compared tocontrol.Overall,the selective combination of climate and environmental factors could be effective for increasing outcrossing rate and hybrid seed yield in the male sterile line of soybean.
文摘Qin pepper,a famous local agricultural product of Shaanxi Province,has grown in Guanzhong Area for several hundred years.In recent years,Qin pepper industry has already made considerable progresses,but it also faces many challenges.To ensure a stable planting area of over 100 000 hm 2,a total output of 1.85 million tons and a ratio of 1:2:2 among freshly used peppers,dried peppers and processed peppers in 2015,on the basis of full investigation,expert argumentation as well as research and analysis,industrialization modes of " leading enterprise + agricultural department + base"," leading enterprise + agricultural company" and " leading enterprise + specialized cooperative" are presented herein,on the principle of " appropriate centralization,scale development,company operation,and plate promotion" and in accordance with the general idea of " stabilizing area,optimizing layout;relying on technology,highlighting superior quality;leading by enterprises,and improving efficiency".Some development strategies including " optimizing layout to facilitate plate promotion;increasing science and technology input to improve industrial competitiveness;supporting leading enterprises to accelerate industrialization process;promoting industrial certification to make well-known brands" are also put forward herein.