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101.
A change in the European Union energy policy has markedly promoted the expansion of biogas production.Consequently,large amounts of nutrient-rich residues are being used as organic fertilizers.In this study,a pot experiment was conducted to simulate the high-risk situation of enhanced greenhouse gas (GHG) emissions following organic fertilizer application in energy maize cultivation.We hypothesized that cattle slurry application enhanced CO2 and N2O fluxes compared to biogas digestate because of the overall higher carbon (C) and nitrogen (N) input,and that higher levels of CO2 and N2O emissions could be expected by increasing soil organic C (SOC) and N contents.Biogas digestate and cattle slurry,at a rate of 150 kg NH4+-N ha-1,were incorporated into 3 soil types with low,medium,and high SOC contents (Cambisol,Mollic Gleysol,and Sapric Histosol,termed Clow,Cmedium,and Chigh,respectively).The GHG exchange (CO2,CH4,and N2O) was measured on 5 replicates over a period of 22 d using the closed chamber technique.The application of cattle slurry resulted in significantly higher CO2 and N2O fluxes compared to the application of biogas digestate.No differences were observed in CH4 exchange,which was close to zero for all treatments.Significantly higher CO2 emissions were observed in Chigh compared to the other two soil types,whereas the highest N2O emissions were observed in Cmedium.Thus,the results demonstrate the importance of soil type-adapted fertilization with respect to changing soil physical and environmental conditions. 相似文献
102.
Xiang ZHANG Qiu-zhi RUI Pan-pan LIANG Chen-hua WEI Guo-qiang DENG Yuan CHEN Yuan CHEN Zhao-di DONG De-hua CHEN 《农业科学学报》2018,17(9):1991-1998
This study was conducted to investigate the effects of alternating high temperature on Cry1Ac protein content on Bt cotton cultivars Sikang 1(SK-1,a conventional cultivar)and Sikang 3(SK-3,a hybrid cultivar).In 2011 and 2012,cotton plants were subjected to high temperature treatments ranging from 32 to 40℃ in climate chambers to investigate the effects of high temperature on boll shell insecticidal protein expression.The experiments showed that significant decline of the boll shell insecticidal protein was detected at temperatures higher than 38℃ after 24 h.Based on the results,the cotton plants were treated with the threshold temperature of 38℃ from 6:00 a.m.to 6:00 p.m.followed by a normal temperature of 27℃ during the remaining night hours(DH/NN)in 2012 and 2013.These treatments were conducted at peak boll growth stage for both cultivars in study periods of 0,4,7,and 10 d.Temperature treatment of 32℃ from 6:00 a.m.to 6:00 p.m.and 27℃ in the remaining hours was set as control.The results showed that,compared with the control,after the DH/NN stress treatment applied for 7 d,the boll shell Cry1Ac protein content level was significantly decreased by 19.1 and 17.5% for SK-1 and by 15.3 and 13.7% for SK-3 in 2012 and 2013,respectively.Further analysis of nitrogen metabolic physiology under DH/NN showed that the soluble protein content and the glutamic pyruvic transaminase(GPT)activities decreased slightly after 4 d,and then decreased sharply after 7 d.The free amino acid content and the protease content increased sharply after 7 d.The changes in SK-1 were greater than those in SK-3.These results suggest that under DH/NN stress,boll shell Cry1Ac protein content decline was delayed.Reduced protein synthesis and increased protein degradation in the boll shell decreased protein content,including Bt protein,which may reduce resistance to the cotton bollworm. 相似文献
103.
104.
Pei-pei ZHANG Takele Weldu Gebrewahid Yue ZHOU Qing-luo LI Zai-feng LI Da-qun LIU 《农业科学学报》2019,18(5):1014-1023
Wheat leaf rust,caused by Puccinia triticina(Pt),is an important foliar disease that has an important influence on wheat yield.The most economic,safe and effective way to control the disease is growing resistant cultivars.In the present study,a total of 46 wheat landraces and 34 wheat lines with known Lr(leaf rust resistance)genes were inoculated with 16Pt pathotypes for postulating seedling resistance gene(s)in the greenhouse.These cultivars and five wheat differential lines with adult plant resistance(APR)genes(Lr12,Lr22b,Lr34,Lr35 and Lr37)were also evaluated for identification of slow rusting resistance in the field trials in Baoding,Hebei Province of China in the 2014–2015 and 2015–2016 cropping seasons.Furthermore,10 functional molecular markers closely linked to 10 known Lr genes were used to detect all the wheat genotypes.Results showed that most of the landraces were susceptible to most of the Pt pathotypes at seedling stage.Nonetheless,Lr1 was detected only in Hongtangliangmai.The field experimental test of the two environments showed that 38 landraces showed slow rusting resistance.Seven cultivars possessed Lr34 but none of the landraces contained Lr37 and Lr46.Lr genes namely,Lr9,Lr19,Lr24,Lr28,Lr29,Lr47,Lr51 and Lr53 were effective at the whole plant stage.Lr18,Lr36 and Lr45 had lost resistance to part of pathotypes at the seedling stage but showed high resistance at the adult plant stage.Lr34 as a slowing rusting gene showed good resistance in the field.Four race-specific APR genes Lr12,Lr13,Lr35 and Lr37 conferred good resistance in the field experiments.Seven race-specific genes,Lr2b,Lr2c,Lr11,Lr16,Lr26,Lr33 and LrB had lost resistance.The 38 landraces showed slow rusting resistance to wheat leaf rust can be used as resistance resources for wheat resistance breeding in China. 相似文献
105.
对异硫氰酸丙烯酯毒杀松材线虫作用机制进行了初步研究。测定了其对线虫虫体形态、运动行为、体内总糖和蛋白质含量的影响,以及处理前后线虫体内过氧化氢酶(CAT)、乙酰胆碱酯酶(AChE)和谷胱甘肽-S-转移酶(GST)活性变化。结果表明:经异硫氰酸丙烯酯处理后的松材线虫虫体形态严重扭曲,运动形态出现由正常的S形变化为多节弯曲和螺旋状卷曲等异常状况,线虫行动随时间的推移变得迟缓,最终呈C形、新月形或直接死亡。随着异硫氰酸丙烯酯处理质量浓度的增大,线虫体内总糖和蛋白质含量显著上升,糖和蛋白质的代谢发生紊乱;线虫体内CAT、AChE和GST活性显著降低,且均低于对照组,表明线虫体内氧化和抗氧化作用失衡;细胞受到极大的影响,神经系统遭到破坏,解毒能力明显降低。研究结果可为研究利用异硫氰酸丙烯酯作为植物源杀线虫剂提供依据。 相似文献
106.
载球孢白僵菌松毛虫赤眼蜂能够显著提高对亚洲玉米螟的防控效果,为了明确其对亚洲玉米螟卵期及幼虫期可持续防控的作用机理,采用松毛虫赤眼蜂吸附绿色荧光蛋白(GFP)标记的球孢白僵菌分生孢子,进行赤眼蜂载菌情况,以及亚洲玉米螟卵和幼虫的寄生、侵染过程观察。结果表明,赤眼蜂羽化后能够吸附柞蚕卵表面粘附的白僵菌分生孢子,并将其携带至亚洲玉米螟卵块表面,并吸附于未被赤眼蜂寄生的亚洲玉米螟卵孵化的幼虫体表,实现侵染并致死,幼虫带菌率达60.00%,网室内杀虫生物测定僵虫率达27.00%。本研究表明,载菌赤眼蜂在提高杀虫效率的同时实现害虫可持续防控,该方法为其他载菌天敌的应用提供了依据。 相似文献
107.
克隆获得桃蚜电压门控钠离子通道基因cDNA序列,明确钠离子通道的典型特征,为研究桃蚜抗性分子机理奠定基础。采用实验技术主要有RT-PCR和PCR,克隆桃蚜钠离子通道基因cDNA序列,利用相关软件对其序列进行生物信息学分析。克隆得到两段cDNA序列MpNav-1(NCBI登录号:MN124170)和MpNav-2(NCBI登录号:MN176136)。MpNav-1长度为2945 bp,包括2877 bp的完整开放阅读框,共编码958个氨基酸;MpNav-2长度为3546 bp,包括3486 bp的完整开放阅读框,共编码1161个氨基酸。MpNav-1和MpNav-2共同组成桃蚜的钠离子通道α亚基,MpNav-1包含同源结构域Ⅰ和同源结构域Ⅱ,MpNav-2包含同源结构域Ⅲ和同源结构域Ⅳ。同源比对发现,桃蚜与豌豆蚜和高粱蚜钠离子通道基因相似度分别高达97.67%和97.65%,所克隆序列包含昆虫钠离子通道α亚基典型特征,具有MFM模块,并含有蚜虫类钠通道特有模块DENS。成功地克隆桃蚜钠离子通道基因,为阐明其对拟除虫菊酯类药剂产生靶标抗性的分子机制奠定基础。 相似文献
108.
本文对茶足柄瘤蚜茧蜂滞育组与正常发育组进行转录组测序,筛选差异表达基因,根据功能注释发现这些滞育关联基因主要与碳水化合物代谢、脂质代谢以及信号转导等途径相关。借助KEGG数据库,共筛选出滞育期间401个与脂代谢相关的差异基因,在滞育期间呈现不同程度的上调表达,涉及了脂肪酸生物合成、甘油脂代谢、类固醇生物合成等代谢途径,除与脂质合成相关的脂肪酸合成酶、超长链脂肪酸延伸酶基因上调表达外,与脂质分解相关的酶,如酯酶同样上调表达,可能与提高茶足柄瘤蚜茧蜂免疫力有关;与激素合成相关基因的上调表达,可能抑制茶足柄瘤蚜茧蜂卵巢发育。 相似文献
109.
110.
为了评价广西爆裂玉米农家品种的遗传多样性,利用56K SNP芯片技术对中国广西45个爆裂玉米农家品种、中国2个爆裂玉米杂交种和6个南美爆裂玉米种质进行全基因组扫描,获得多态性标记14 338个,基因分型为6 种类型。其中A/G类型最多,为5 805个;A/T类型最少,为149个。1号染色体的多态性SNP位点最多,为2 302个;10号染色体最少,为848个。45个农家品种间平均遗传相似系数为0.62,变幅为0.41~0.99,总体遗传相似度高。聚类分析将参试品种划分为三大类群,相同来源的农家品种大多聚在一起;主成分分析显示大部分农家品种聚在一起,与杂交品种和南美品种之间没有交集,表明农家品种遗传相似性较高,与杂交品种和南美品种遗传差异较大。 相似文献