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81.
Short basal internodes are important for lodging resistance of rice(Oryza sativa L.).Several canopy indices affect the elongation of basal internodes,but uncertainty as to the key factors determining elongation of basal internodes persists.The objectives of this study were(1)to identify key factors affecting the elongation of basal internodes and(2)to establish a quantitative relationship between basal internode length and canopy indices.An inbred rice cultivar,Yinjingruanzhan,was grown in two split-plot field experiments with three N rates(0,75,and 150 kg N ha−1 in early season and 0,90,and 180 kg N ha−1 in late season)as main plots,three seedling densities(16.7,75.0,and 187.5 seedlings m−2)as subplots,and three replications in the 2015 early and late seasons in Guangzhou,China.Light intensity at base of canopy(Lb),light quality as determined from red/far-red light ratio(R/FR),light transmission ratio(LTR),leaf area index(LAI),leaf N concentration(NLV)and final length of second internode(counted from soil surface upward)(FIL)were recorded.Higher N rate and seedling density resulted in significantly longer FIL.FIL was negatively correlated with Lb,LTR,and R/FR(P<0.01)and positively correlated with LAI(P<0.01),but not correlated with NLV(P>0.05).Stepwise linear regression analysis showed that FIL was strongly associated with Lb and LAI(R2=0.82).Heavy N application to pot-grown rice at the beginning of first internode elongation did not change FIL.We conclude that FIL is determined mainly by Lb and LAI at jointing stage.NLV has no direct effect on the elongation of basal internodes.N application indirectly affects FIL by changing LAI and light conditions in the rice canopy.Reducing LAI and improving canopy light transmission at jointing stage can shorten the basal internodes and increase the lodging resistance of rice.  相似文献   
82.
为提高番茄无土栽培质量,以番茄品种"金福莱"为试材,研究了6种不同配比基质对河西走廊温室无土栽培番茄生长的影响。结果表明:采用处理Ⅳ(沙∶玉米秸秆∶食用菌下脚料∶商品基质∶鸡粪=4∶5∶5∶6∶3)的基质配比(体积比),番茄光合速率、蒸腾速率、胞间CO_2和气孔导度数值最大,植株保持较强的生长势与结果能力,番茄株高、茎粗、单株结果数、单株产量和折合667 m~2产量等性状均显著优于其他处理,分别为178.60 cm、1.13 cm、16.36个、3.12 kg和7 531.68 kg;其果实的可溶性糖、可滴定酸、可溶性固形物、VC和番茄红素含量最高,分别为4.15%、0.58%、7.30%、302.2 mg/kg和152.4 mg/kg,明显优于其他处理;因此,在河西走廊戈壁温室番茄无土栽培中推荐使用此配比基质。  相似文献   
83.
C/N比对好氧堆肥中NH3挥发损失和含氮有机物转化的影响   总被引:3,自引:0,他引:3  
利用牛粪和不同比例玉米秸秆的混合,设置5个不同C/N比处理(T1=15、T2=20、T3=25、T4=30、T5=35),研究其对条垛式好氧堆肥过程中的NH_3挥发损失和含氮有机物转化的影响。结果表明:在肥堆前24 d有11.1%~23.1%的总氮损失,堆体C/N比越低,总氮损失率越高。堆肥结束时,T1~T5处理的总氮损失率为10.1%~24.1%,其中由NH_3挥发造成的氮损失占总氮损失的30.9%~40.5%。堆肥过程的NH_3挥发主要发生在升温期和高温期,此期的NH_3挥发量占总挥发量的95%以上,是总氮损失的主要途径。堆肥前6 d各处理堆体铵态氮积累并达到最高值,导致pH值迅速升高,是造成堆肥NH_3挥发的直接原因。堆体C/N比越低,pH值越高,NH_3挥发量越大,由此造成的氮损失占总氮损失的比例越大。堆肥材料总氮的90%以上为有机氮,其降解主要发生在堆肥前24 d,堆体初始C/N比越低,有机氮矿化越快。不同有机氮组分的降解速率不同,以氨基酸态氮和酰胺态氮的降解为主。当堆体初始C/N比低于25时,堆肥材料中氨基酸态氮和酰胺态氮等有机态氮快速降解产生大量的铵态氮,由此导致堆体pH值的迅速升高,是导致堆肥过程中大量NH_3挥发和氮素损失的主要原因。  相似文献   
84.
85.
Succinate dehydrogenase inhibitors (SDHIs) have played a crucial role in disease control to protect cereals as well as fruit and vegetables for more than a decade. Isoflucypram, the first representative of a newly installed subclass of SDHIs inside the Fungicide Resistance Action Committee (FRAC) family of complex II inhibitors, offers unparalleled long‐lasting efficacy against major foliar diseases in cereals. Herein we report the chemical optimization from early discovery towards isoflucypram and the first hypothesis of its altered binding mode in the ubiquinone binding site of succinate dehydrogenase. © 2020 The Authors. Pest Management Science published by John Wiley & Sons Ltd on behalf of Society of Chemical Industry.  相似文献   
86.
Overgrazing is regarded as one of the key factors of vegetation and soil degradation in the arid and semi-arid regions of Northwest China.Grazing exclusion(GE)is one of the most common pathways used to restore degraded grasslands and to improve their ecosystem services.Nevertheless,there are still significant controversies concerning GE’s effects on grassland diversity as well as carbon(C)and nitrogen(N)storage.It remains poorly understood in the arid desert regions,whilst being essential for the sustainable use of grassland resources.To assess the effects of GE on community characteristics and C and N storage of desert plant community in the arid desert regions,we investigated the community structure and plant biomass,as well as C and N storage of plants and soil(0-100 cm depth)in short-term GE(three years)plots and adjacent long-term freely grazing(FG)plots in the areas of sagebrush desert in Northwest China,which are important both for spring-autumn seasonal pasture and for ecological conservation.Our findings indicated that GE was beneficial to the average height,coverage and aboveground biomass(including stems,leaves and inflorescences,and litter)of desert plant community,to the species richness and importance values of subshrubs and perennial herbs,and to the biomass C and N storage of aboveground parts(P<0.05).However,GE was not beneficial to the importance values of annual herbs,root/shoot ratio and total N concentration in the 0-5 and 5-10 cm soil layers(P<0.05).Additionally,the plant density,belowground biomass,and soil organic C concentration and C storage in the 0-100 cm soil layer could not be significantly changed by short-term GE(three years).The results suggest that,although GE was not beneficial for C sequestration in the sagebrush desert ecosystem,it is an effective strategy for improving productivity,diversity,and C and N storage of plants.As a result,GE can be used to rehabilitate degraded grasslands in the arid desert regions of Northwest China.  相似文献   
87.
Succession is one of the central themes of ecology;however,the relationship between aboveground plant communities and underground soils during secondary succession remains unclear.In this study,we investigated the composition of plant community,plant-soil C:N:P stoichiometry and their relationships during secondary succession after the abandonment of farmlands for 0,10,20,30,40 and 50 a in China,2016.Results showed that the composition of plant communities was most diverse in the farmlands after secondary succession for 20 and 50 a.Soil organic carbon and total nitrogen contents slightly decreased after secondary succession for 30 a,but both were significantly higher than those of control farmland(31.21%-139.10%and 24.24%-121.21%,respectively).Moreover,C:N ratios of soil and microbe greatly contributed to the changes in plant community composition during secondary succession of abandoned farmlands,explaining 35.70%of the total variation.Particularly,soil C:N ratio was significantly and positively related with the Shannon-Wiener index.This study provides the evidence of synchronous evolution between plant community and soil during secondary succession and C:N ratio is an important linkage between them.  相似文献   
88.
AIM To investigate the effect of exosomes secreted by mouse melanoma cells on the expression of Ras-related C3 botulinum toxin substrate 1 (Rac1) protein in fibroblasts. METHODS Ultracentrifugation was adopted to separete exosomes secreted by mouse melanoma B16-F10 cells. The morphological structure of exosomes was observed by negative-staining electron microscopy. The size distribution of exosomes was determined by nanoparticle tracking analysis (NTA). The exosomal markers, tumor susceptibility gene 101 (Tsg101) and tyrosinase-related protein 2 (Tyrp2), were identified by Western blot. Laser confocal microscopy was used to observe the process that mouse embryonic fibroblasts (MEF) took in exosomes during co-culture. Immunocytochemical staining and Western blot were used to detect the expression of Rac1 protein in MEF. RESULTS B16-F10 cell exosomes showed a typical tea tray-like structure, with a size range of 141~255 nm, and expressed protein markers Tsg101 and Tyrp2. The results of laser confocal microscopy showed that compared with co-culture at 0 h, a small number of exosomes appeared in the MEF at 12 h, and a large number of exosomes accumulated in the MEF after co-cultured for 24 and 36 h. Western blot analysis showed that compared with co-culture at 0 h, the expression of Rac1 protein in the MEF was significantly increased at 24 h and 36 h of co-culture (P<0.01). The results of immunocytochemical staining showed that compared with co-culture at 0 h, the positive expression level of Rac1 in the MEF cells was significantly increased at 12 h, 24 h and 36 h of co-culture (P<0.05 or P<0.01). CONCLUSION Intake of exosomes secreted by mouse melanoma cells promotes the expression of Rac1 protein in fibroblasts.  相似文献   
89.
以番茄品种"福美十号"为材料,采用随机区组试验设计,研究不同基质配比对番茄幼苗生长与叶片叶绿素荧光参数的影响。结果表明:采用A3[V(草炭)∶V(玉米秸秆)∶V(牛粪)∶V(食用菌下脚料)∶V(蛭石)=1∶2∶0.5∶0.5∶1]的基质配比,幼苗在出苗率、株高、茎粗、叶片数和根冠比等性状上表现最优,分别为98.25%、44.60 cm、0.50 cm、9.12片与7.95;叶片光系统Ⅱ(PSIⅡ)原初光能转化效率(Fv/Fm)与PSⅡ潜在活性(Fv/Fo)的值在幼苗生长前期、中期和末期也均为最高,Fv/Fm值分别为0.82、0.74和0.79,Fv/Fo值分别为3.92、2.97和3.23;其叶片内丙二醛(MDA)含量最低为6.02μmol/g,其根系活力最强、超氧化物歧化酶(SOD)、过氧化物酶(POD)与可溶性蛋白含量等指标最高,分别为158.26μg/(g·h)、386.23 U/g、6.26 U/(g·min)和0.203 mg/g,显著高于其他处理。说明采用处理A3的基质配比更适宜于番茄幼苗的生长。  相似文献   
90.
为了充分利用农业废弃物小麦秸秆,进行草炭替代性育苗基质原料的研发,实现农业资源循环化利用和生态可持续发展。以番茄‘毛粉802’为材料,通过小麦秸秆腐熟物、草炭、蛭石和珍珠岩4种基质原料及1种生物菌肥进行不同体积配比处理,研究不同配比的小麦秸秆复合基质对番茄幼苗生长指标、叶片色素及荧光指标、幼苗叶片理化性质指标、基质生物指标和理化性质的影响,探究适合番茄幼苗生长的小麦秸秆复合育苗基质配方。利用灰色关联法对19项指标进行综合分析。结果表明,V腐熟小麦秸秆∶V蛭石∶V珍珠岩∶V生物菌肥=6∶2.5∶1∶0.5番茄幼苗表现最好,而番茄幼苗在纯小麦秸秆腐熟物上的生长量远远低于其他处理,番茄幼苗的表现最差。  相似文献   
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