Photosynthetic rate ( P n ), transpiration rate ( E ), stomatal conductance ( g s ), water use efficiency ( WUE ), intercellular CO 2( C i ) and leaf water potential ( Ψ ) in varieties of soybean ( G...Photosynthetic rate ( P n ), transpiration rate ( E ), stomatal conductance ( g s ), water use efficiency ( WUE ), intercellular CO 2( C i ) and leaf water potential ( Ψ ) in varieties of soybean ( Glycine max (L.) Merr.) measured in the past three decades (1970s, 1980s and 1990s) and their inter_relationships were analyzed. These parameters of soybean changed with development stages. It is shown that there was a strongly positive relationship between the yield of soybean and its net photosynthetic rate. Soybean varieties with high yield potential had higher P n , g s and Ψ than those with low yield potential. Their values of C i were remarkably lower. Such relationship was especially remarkable at the critical stage of pod_bearing. P n of soybean of high yield was obviously higher than that of low yield. Of the different stages, the highest P n was found in the pod_bearing stage and other values were higher, too. P n and Ψ of modern soybean varieties were higher and such was continuing. Increased partitioning of carbon to seed and the size of sink may also be important for yield formation when P n values were remarkably higher in the pod_bearing stage.展开更多
以盆栽一年生苦楝(Melia azedarach)为试材,4个p H梯度(5.6(CK)、4.5、3.5和2.5)的模拟酸雨每2 d喷洒叶片1次,探讨处理20、40和60 d对叶片叶绿素(Chl)含量、可溶性蛋白含量、细胞膜透性、MDA含量、抗氧化酶活性等的影响。结果表明:随处...以盆栽一年生苦楝(Melia azedarach)为试材,4个p H梯度(5.6(CK)、4.5、3.5和2.5)的模拟酸雨每2 d喷洒叶片1次,探讨处理20、40和60 d对叶片叶绿素(Chl)含量、可溶性蛋白含量、细胞膜透性、MDA含量、抗氧化酶活性等的影响。结果表明:随处理时间的延长,可溶性蛋白含量在p H 4.5下呈先升后降趋势,最大增幅为10.3%,p H 3.5和p H 2.5呈降低趋势,最大降幅为42.9%;质膜透性和MDA含量均显著增加,最大增幅分别为84.6%和145.5%;SOD在p H 4.5下呈升高趋势,p H 3.5下先升高后降低,p H 2.5下呈降低趋势,最大增幅和降幅分别为47.9%和20.9%;CAT在p H 4.5下呈先升后降趋势,p H 3.5和p H 2.5下呈降低趋势,最大增幅和降幅分别为23.0%和27.0%;POD在p H 4.5和p H 3.5下呈升高趋势,p H 2.5呈降低趋势,最大增幅和降幅依次47.1%和17.6%;Chla、Chlb和叶绿素总量减少,最大降幅分别为39.0%、37.0%和38.3%。结合叶片的外观形态、脱落率和株高增量发现,p H 3.5下苦楝叶片变黄,脱落率显著增加(P<0.05),p H 2.5下叶片严重变形,株高显著降低(P<0.05),由此认为,苦楝耐酸雨的阈值大约为p H 3.5。展开更多
We investigated the combined effects of soil moisture and light intensity on the growth, development and ecophysiological characteristics of one-year old Amorpha fruticosa seedlings. Soil moisture and light intensity ...We investigated the combined effects of soil moisture and light intensity on the growth, development and ecophysiological characteristics of one-year old Amorpha fruticosa seedlings. Soil moisture and light intensity influenced the ecophysiological characteristics of Amorpha fruticosa seedlings. Soil moisture resulted in the decreases of growth rate, individual size, net photosynthetic rate, transpiration rate, leaf water loss rate (WLR), and biomass accumulation of plant parts, and led to increased leaf water saturation deficit (WSD). Under water stress, more photosynthetic products were allocated to root growth. With decreasing light intensity, net photosynthetic rate, transpiration rate, chla/b, water saturation deficit, water use efficiency, water loss rate and biomass accumulation declined, while Chla, Chlb, Chla+b and carotenoids (Car) increased and more photosynthetic products were allocated to stem and leaf growth. Maximum growth vigor, net photosynthetic rate and total biomass accumulation in Amorpha fruticosa seedlings was recorded at 75 80% soil water-holding capacity and 100% light density in greenhouse environments.展开更多
应用“康乃尔生态学”程序(Cornell ecological program,CEP)中的二歧指示种分析TWINSPAN(Two-WayIndicators Species Analysis)数量分析方法,以不同紫花苜蓿品种的生理生态特性值和牧草产量值为指标对16个紫花苜蓿品种进行分类。结果表...应用“康乃尔生态学”程序(Cornell ecological program,CEP)中的二歧指示种分析TWINSPAN(Two-WayIndicators Species Analysis)数量分析方法,以不同紫花苜蓿品种的生理生态特性值和牧草产量值为指标对16个紫花苜蓿品种进行分类。结果表明:用TWINSPAN可将16个品种划分为7类,并且根据试验站所在地区的干旱半干旱的气候特征,筛选出高产、高水分利用效率、高光能利用效率的3个优良品种,分别为肇东苜蓿、德宝苜蓿和草原2号苜蓿。展开更多
The anatomical and chemical characteristics of a rolling leaf mutant (rlm) of rice (Oryza sativa L.) and its ecophysiological properties in photosynthesis and apoplastic transport were investigated. Compared with ...The anatomical and chemical characteristics of a rolling leaf mutant (rlm) of rice (Oryza sativa L.) and its ecophysiological properties in photosynthesis and apoplastic transport were investigated. Compared with the wild type (WT), the areas of whole vascular bundles and xylem as well as the ratios of xylem area/whole vascular bundles area and xylem area/phloem area were higher in rim, whereas the area and the width of foliar bulliform cell were lower. The Fourier transform infrared (FTIR) microspectroscopy spectra of foliar cell walls differed greatly between rim and WT. The rim exhibited lower protein and polysaccharide contents of foliar cell walls. An obvious reduction of pectin content was also found in rim by biochemical measurements. Moreover, the rate of photosynthesis was depressed while the conductance of stoma and the intercellular CO2 concentration were enhanced in rim. The PTS fluorescence, which represents the ability of apoplastic transport, was 11% higher in rim than in WT. These results suggest that the changes in anatomical and chemical characteristics of foliar vascular bundles, such as the reduction of proteins, pectins, and other polysaccharides of foliar cell walls, participate in the leaf rolling mutation, and consequently lead to the reduced photosynthetic dynamics and apoplastic transport ability in the mutant.展开更多
文摘Photosynthetic rate ( P n ), transpiration rate ( E ), stomatal conductance ( g s ), water use efficiency ( WUE ), intercellular CO 2( C i ) and leaf water potential ( Ψ ) in varieties of soybean ( Glycine max (L.) Merr.) measured in the past three decades (1970s, 1980s and 1990s) and their inter_relationships were analyzed. These parameters of soybean changed with development stages. It is shown that there was a strongly positive relationship between the yield of soybean and its net photosynthetic rate. Soybean varieties with high yield potential had higher P n , g s and Ψ than those with low yield potential. Their values of C i were remarkably lower. Such relationship was especially remarkable at the critical stage of pod_bearing. P n of soybean of high yield was obviously higher than that of low yield. Of the different stages, the highest P n was found in the pod_bearing stage and other values were higher, too. P n and Ψ of modern soybean varieties were higher and such was continuing. Increased partitioning of carbon to seed and the size of sink may also be important for yield formation when P n values were remarkably higher in the pod_bearing stage.
文摘以盆栽一年生苦楝(Melia azedarach)为试材,4个p H梯度(5.6(CK)、4.5、3.5和2.5)的模拟酸雨每2 d喷洒叶片1次,探讨处理20、40和60 d对叶片叶绿素(Chl)含量、可溶性蛋白含量、细胞膜透性、MDA含量、抗氧化酶活性等的影响。结果表明:随处理时间的延长,可溶性蛋白含量在p H 4.5下呈先升后降趋势,最大增幅为10.3%,p H 3.5和p H 2.5呈降低趋势,最大降幅为42.9%;质膜透性和MDA含量均显著增加,最大增幅分别为84.6%和145.5%;SOD在p H 4.5下呈升高趋势,p H 3.5下先升高后降低,p H 2.5下呈降低趋势,最大增幅和降幅分别为47.9%和20.9%;CAT在p H 4.5下呈先升后降趋势,p H 3.5和p H 2.5下呈降低趋势,最大增幅和降幅分别为23.0%和27.0%;POD在p H 4.5和p H 3.5下呈升高趋势,p H 2.5呈降低趋势,最大增幅和降幅依次47.1%和17.6%;Chla、Chlb和叶绿素总量减少,最大降幅分别为39.0%、37.0%和38.3%。结合叶片的外观形态、脱落率和株高增量发现,p H 3.5下苦楝叶片变黄,脱落率显著增加(P<0.05),p H 2.5下叶片严重变形,株高显著降低(P<0.05),由此认为,苦楝耐酸雨的阈值大约为p H 3.5。
基金supported by National Science Foundation of China (No.31270374)Independent Innovation Foundation of Shandong University (No.2011DX008)+1 种基金Natural Science Foundation of Shandong Province,China (No.2009ZRB01875ZR2010CM062)
文摘We investigated the combined effects of soil moisture and light intensity on the growth, development and ecophysiological characteristics of one-year old Amorpha fruticosa seedlings. Soil moisture and light intensity influenced the ecophysiological characteristics of Amorpha fruticosa seedlings. Soil moisture resulted in the decreases of growth rate, individual size, net photosynthetic rate, transpiration rate, leaf water loss rate (WLR), and biomass accumulation of plant parts, and led to increased leaf water saturation deficit (WSD). Under water stress, more photosynthetic products were allocated to root growth. With decreasing light intensity, net photosynthetic rate, transpiration rate, chla/b, water saturation deficit, water use efficiency, water loss rate and biomass accumulation declined, while Chla, Chlb, Chla+b and carotenoids (Car) increased and more photosynthetic products were allocated to stem and leaf growth. Maximum growth vigor, net photosynthetic rate and total biomass accumulation in Amorpha fruticosa seedlings was recorded at 75 80% soil water-holding capacity and 100% light density in greenhouse environments.
文摘应用“康乃尔生态学”程序(Cornell ecological program,CEP)中的二歧指示种分析TWINSPAN(Two-WayIndicators Species Analysis)数量分析方法,以不同紫花苜蓿品种的生理生态特性值和牧草产量值为指标对16个紫花苜蓿品种进行分类。结果表明:用TWINSPAN可将16个品种划分为7类,并且根据试验站所在地区的干旱半干旱的气候特征,筛选出高产、高水分利用效率、高光能利用效率的3个优良品种,分别为肇东苜蓿、德宝苜蓿和草原2号苜蓿。
基金supported by the National Natural Science Foundation of China (Grant No. 30470274)the Zhejiang Natural Science Foundation of China (Grant No. Y306087)the Zijin Program of Zhejiang University for Young Teachers, China.
文摘The anatomical and chemical characteristics of a rolling leaf mutant (rlm) of rice (Oryza sativa L.) and its ecophysiological properties in photosynthesis and apoplastic transport were investigated. Compared with the wild type (WT), the areas of whole vascular bundles and xylem as well as the ratios of xylem area/whole vascular bundles area and xylem area/phloem area were higher in rim, whereas the area and the width of foliar bulliform cell were lower. The Fourier transform infrared (FTIR) microspectroscopy spectra of foliar cell walls differed greatly between rim and WT. The rim exhibited lower protein and polysaccharide contents of foliar cell walls. An obvious reduction of pectin content was also found in rim by biochemical measurements. Moreover, the rate of photosynthesis was depressed while the conductance of stoma and the intercellular CO2 concentration were enhanced in rim. The PTS fluorescence, which represents the ability of apoplastic transport, was 11% higher in rim than in WT. These results suggest that the changes in anatomical and chemical characteristics of foliar vascular bundles, such as the reduction of proteins, pectins, and other polysaccharides of foliar cell walls, participate in the leaf rolling mutation, and consequently lead to the reduced photosynthetic dynamics and apoplastic transport ability in the mutant.