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1.
Quantification of currently attainable yield and fertilizer requirements can provide detailed information for assessing the food supply capacity and offer data support for agricultural decision-making. Datasets from a total of 5 408 field experiments were collected from 2000 to 2015 across the major wheat production regions in China to analyze the spatial distribution of wheat yield, the soil nutrient supply capacity(represented by relative yield, defined as the ratio of the yield under the omission of one of nitrogen(N), phosphorus(P) and potassium(K) to the yield under the full NPK fertilizer application), and N, P and K fertilizer requirements by combining the kriging interpolation method with the Nutrient Expert Decision Support System for Wheat. The results indicated that the average attainable yield was 6.4 t ha~(-1), with a coefficient of variation(CV) of 24.9% across all sites. The yields in North-central China(NCC) and the northern part of the Middle and Lower reaches of the Yangtze River(MLYR) were generally higher than 7 t ha~(-1), whereas the yields in Southwest China(SWC), Northeast China(NEC), and the eastern part of Northwest China(NWC) were usually less than 6 t ha~(-1). The precentage of area having a relative yield above 0.70, 0.85, and 0.85 for N, P, and K fertilizers accounted for 52.3, 74.7, and 95.9%, respectively. Variation existed in N, P, and K fertilizer requirements, with a CV of 24.8, 23.9, and 29.9%, respectively, across all sites. More fertilizer was needed in NCC and the northern part of the MLYR than in other regions. The average fertilizer requirement was 162, 72, and 57 kg ha~(-1) for N, P_2O_5, and K_2O fertilizers, respectively, across all sites. The incorporation of the spatial variation of attainable yield and fertilizer requirements into wheat production practices would benefit sustainable wheat production and environmental safety.  相似文献   
2.
不同水肥条件下夏玉米/冬小麦农田生态系统碳平衡研究   总被引:3,自引:0,他引:3  
农田生态系统碳平衡取决于农作物固定碳量和土壤异养呼吸排放碳量。为揭示水肥用量对农田生态系统碳平衡的综合影响,设置3个灌水水平:高水、中水和低水(W1、W0.85、W0.7夏玉米季分别为90、76.5、63mm,冬小麦季分别为140、119、98mm),4个施氮水平:高氮、中氮、低氮和不施氮(N1、N0.85、N0.7、N0夏玉米季分别为300、255、210、0kg/hm2,冬小麦季分别为210、178.5、147、0kg/hm2),4个施磷水平:高磷、中磷、低磷和不施磷(P1、P0.85、P0.7和P0夏玉米季分别为90、76.5、63、0kg/hm2,冬小麦季分别为150、127.5、105、0kg/hm2)进行了田间试验。结果表明:不同水肥处理下夏玉米/冬小麦农田生态系统表现为碳汇,夏玉米季净生态系统生产力固碳量(CNEP)为6805~7233kg/hm2,冬小麦季CNEP为5842~6434kg/hm2,夏玉米CNEP高于冬小麦。在高、中、低肥水平下,增加灌水量,夏玉米/冬小麦周年净初级生产力固碳量(CNPP)提高2.48%~5.96%,土壤微生物异养呼吸碳释放量(CRm)增加2.15%~15.20%,净生态系统生产力固碳量(CNEP)增加1.16%~6.47%。在高、中、低供水水平下,增加施肥量,夏玉米/冬小麦周年CNPP增加2.95%~3.43%,土壤CRm增加5.23%~18.67%,CNEP增加0.93%~2.79%,CNEP增加比例与供水水平呈负相关。在低水条件下,氮磷肥配施处理夏玉米/冬小麦农田周年CNEP较单施氮、磷肥分别增加4.86%、7.34%,且氮磷肥交互作用显著(P<0.05),水肥供应水平相差15%时对冬小麦农田CNEP有显著的正交互作用。氮磷肥配施、水肥协调供应均有助于促进夏玉米/冬小麦农田生态系统的净碳输入,在节水节肥原则下,夏玉米和冬小麦分别在W0.85N0.85P0.85和W0.7N0.85P0.85水肥供应条件下有利于增加农田CNEP。  相似文献   
3.
【目的】研究BNS和BNS366小麦雄性不育与小孢子发生过程中内源激素含量变化的关系,为激素调控温光敏雄性不育小麦花粉育性提供理论依据。【方法】选用BNS和BNS366为试验材料,分别以矮抗58和郑麦366(BNS366的近等基因系)为对照,进行正常秋季播种(2018年10月10日)和晚播(2018年12月2日)试验,用I2-KI法测定花粉育性,用国内法和国际法测定自交结实率,采用间接酶联免疫法测定雌雄蕊原基分化期-三核期叶片、雌雄蕊原基分化期-四分体期幼穗和单核中位期-三核期花药中6种内源激素的含量。【结果】在正常秋季播种条件下,BNS和BNS366花粉可育率、国内法自交结实率和国际法自交结实率均为零,达到全不育水平,在晚播条件下,BNS的这三个指标分别为34.74%、43.12%和48.48%,达到低不育水平,BNS366则分别为92.63%、55.37%和67.94%,达到正常可育水平,播种期间差异均达到极显著水平;矮抗58和郑麦366在2种播期条件下,则为82.56%—94.00%、73.90%—82.31%和96.54%—139.26%,均为正常可育,播种期间差异不显著;BNS和BNS366花粉可育率-∆(正常秋季播种条件下比晚播条件下花粉可育率提高百分率)均分别极显著低于矮抗58和郑麦366。分别在2个试验组内进行内源激素含量的多重比较,BNS和BNS366与矮抗58和郑麦366内源激素含量-∆(正常秋季播种条件下比晚播条件下激素含量提高百分率)存在差异,对内源激素含量与花粉可育率、内源激素含量-∆与花粉可育率-∆进行了相关性分析,发现BNS和BNS366不育株在小麦幼穗发育过程中激素含量存在特征性变化。生长素(indole-3-acetic acid,IAA)含量在四分体期(BNS)和雌雄蕊原基分化期(BNS366)叶片中不足,在单核中位期(BNS)和单核靠边期(BNS366)花药中不足,在二核期花药中盈余;赤霉素(gibberellic acid,GA)含量在四分体期幼穗和单核中位期花药中不足;玉米素核苷(zeatin riboside,ZR)含量在叶片、幼穗和花药中均无一致盈亏特征;脱落酸(abscisic acid,ABA)含量分别在四分体期幼穗中存在偏低倾向(BNS)或确定存在不足(BNS366)现象;油菜素内酯(brassinosteroid,BR)含量在叶片、幼穗和花药中均无一致盈亏特征;茉莉酸甲酯(methyl jasmonate,MeJA)含量在雌雄蕊原基分化期、四分体期、单核靠边期(BNS)或单核中位期(BNS366)和三核期叶片中不足,在雌雄蕊原基分化期(BNS)或四分体期幼穗(BNS366)中不足,在单核靠边期花药中不足。【结论】正常秋季播种条件下,单核靠边期之前,BNS和BNS366中IAA、GA和ABA的含量不足,尤其是MeJA的含量不足,可能促进了二者雄性不育的发生。  相似文献   
4.
为了解中国不同麦区小麦种质资源籽粒脂肪氧化酶(lipoxygenase,LOX)活性相关基因TaLox-B1的差异和分布,利用小麦4B染色体上的功能标记LOX16LOX18对7个麦区的436份种质资源进行分子检测。结果表明:在供试材料中共检测到3种TaLox-B1基因等位变异类型,分别为TaLox-B1a(与高LOX活性相关)、TaLox-B1b(与低LOX活性相关)和杂合型,其频率分别为19.0%、70.4%和10.6%。小麦LOX活性基因不同变异类型在各生态区的分布存在明显差异:基因型TaLox-B1a在黄淮冬麦区、北部冬麦区和长江中下游冬麦区分布较多,其比例分别为21.1%、19.8%和17.6%;基因型TaLox-B1b在西南冬麦区和长江中下游冬麦区分布较多,比例分别为87.9%、72.5%;杂合型仅存在于北部冬麦区、黄淮冬麦区与长江中下游冬麦区,比例分别为14.2%、12.4%和9.8%。利用标记LOX16LOX18对53个自选高代品系进行分子检测,发现自选品系仅有TaLox-B1b与杂合型两种基因型,其中基因型TaLox-B1ab有32个,比例为60.4%。采用分子标记辅助选择,有利于快速鉴定小麦籽粒LOX活性,加速LOX的遗传改良和新品种选育。  相似文献   
5.
在目前安徽沿江地区不能实现棉花机采的情况下,提出了“植株高度既适于机采也适于人工采收,含絮力适中(不易落花便于集中采收),生育期适中(播种到采收为180天左右),纤维品质及产量性状较优(纤维长度30.0 mm以上,断裂比强度30.0 cN/tex以上,马克隆值5.0以下,籽棉产量3750 kg/hm 2以上,衣分在40%左右)”的油(或麦)后直播棉模式的人工采收品种选用策略。旨在促进安徽沿江地区棉花生产稳定发展。  相似文献   
6.
【目的】基因拷贝数变异是一种常见又重要的基因结构变异,往往影响个体表型。低分子量麦谷蛋白(low-molecular-weight glutenin subunit,LMW-GS)是小麦贮藏蛋白的主要组成部分,位于Glu-3位点。小麦作为异源六倍体,其庞大且复杂的基因组结构导致难以利用传统方法检测目的基因的拷贝数,针对小麦基因组,筛选可靠稳定的内参基因和体系,探索适合复杂基因组的拷贝数变异测定技术,测定Glu-3位点LWM-GS基因拷贝数。【方法】以Acc1为内参基因,根据基因序列设计内参引物和探针,通过定性和定量PCR测定内参基因在12个普通小麦品种中的拷贝数,分析该基因拷贝数在不同品种间的稳定性;又以小麦品种篙优2018的5个稀释浓度的基因组DNA为模板,利用qRT-PCR验证Acc1内参系统的重复性和准确性;根据Glu-A3位点LMW-GS基因序列设计特异性引物及探针,利用qRT-PCR和ddPCR 2种方法检测8个小麦品种Glu-A3位点基因拷贝数,比较后选择更优的高通量基因拷贝数检测方法;再根据Glu-B3Glu-D3位点LMW-GS基因序列设计相应的特异性引物及探针,并利用ddPCR技术检测和分析了231份小麦品种的Glu-A3Glu-B3Glu-D3位点上LMW-GS基因拷贝数。【结果】Acc1在12个普通小麦品种间、同一品种5个DNA稀释浓度间的拷贝数测定结果一致,技术重复间的变异系数仅为0.07%—0.77%,所构建的Acc1内参系统稳定;比较qRT-PCR和ddPCR 2种拷贝数检测方法,8个品种所测的Glu-A3位点拷贝数结果一致,分别为3、5、3、4、3、3、3和3;且ddPCR检测重复间的变异系数为0.30%—1.67%,远低于qRT-PCR的3.14%—12.72%,更加可靠;利用ddPCR对231份普通小麦品种的Glu-A3Glu-B3Glu-D3位点上LMW-GS基因拷贝检测后分析发现,大多数小麦品种在3个位点上的拷贝数为4,所占频率分别为51.95%、32.03%和28.57%,Glu-3位点总拷贝数变异范围为10—21,变异系数为16.12%。【结论】Acc1内参系统具有良好的稳定性和重复性,可以用作小麦Glu-3位点和其他目的基因拷贝数检测的内参;qRT-PCR和ddPCR均可用于小麦基因拷贝数的检测,但后者更稳定、可靠,且操作简单、检测通量高。  相似文献   
7.
8.
During winter wheat production, aphids need to be controlled with pesticides for the entire growth period. Controlled-release technology has been regarded as an alternative method for the improvement of pesticide efficiency. This study investigated two types of imidacloprid controlled-release granule (CR-GR): 2% imidacloprid CR-GR and 0.2% imidacloprid pesticide-fertilizer controlled-release granule (PF-CR-GR) when wheat was sown in winter. The release performance, utilization rate, terminal residues in edible parts, control effect on aphids, and achieved winter wheat yield were evaluated for both laboratory experiments and field application. Imidacloprid PF-CR-GR released more quickly in aqueous medium than CR-GR because of its good water solubility. After CR-GR treatments, the concentrations in wheat roots and soil were similar throughout the entire sampling period, and the concentrations in shoots were about 10–20% of those in roots. Imidacloprid was better absorbed when CR-GR was used as root treatment, compared with foliar treatment. Field application showed that imidacloprid CR-GR and PF-CR-GR controlled aphids throughout the entire growth period of winter wheat and improved the wheat yield. These findings identified application of imidacloprid CR-GR and PF-CR-GR on winter wheat as an effective way to enhance the pesticide utilization rate and ensure adequate yield. This paper provides a theoretical basis for the scientific use of pesticides and guides scientific pesticide application.  相似文献   
9.
Apolygus lucorum (Meyer-Dür) (Hemiptera: Miridae) tends to feed on young plant tissues. To explore the relationship between stylet probing behaviors of adult A. lucorum and conditions of cotton leaves, we conducted an experiment using electropenetrography (EPG). Behaviors were recorded on four cotton varieties, in relation to thickness and biochemical traits of differently-aged leaves. Cotton leaf age had a significant effect on the probing behavior of A. lucorum but cotton variety did not. One-day-old leaves of A. lucorum received the highest mean number of stylet probes (penetrations) per insect, and longest mean durations per insect of combined stylet probing or its components, cell rupture and ingestion behaviors. All of the leaf traits (thickness and biochemical substances) were similar among these four cotton varieties. Leaf thickness had a significantly negative effect on the same four variables above. Gossypol and tannin also had a negative impact on combined probing duration. Redundancy analysis showed that the four EPG variables were closely related to nutrient substances (amino acids, sugar, and water) while they had the opposite relationship with plant defense substances (gossypol and tannin). On cotton in the seedling stages, A. lucorum fed more readily on the youngest, thinnest leaves in our no-choice EPG experiments. Nutrients and chemical resistance substances determined the probing duration of A. lucorum. Our findings can contribute to better understanding of patterns of feeding and host consumption by A. lucorum, ultimately improving cotton resistance to A. lucorum.  相似文献   
10.
Transport of cadmium from soil to grain in cereal crops: A review   总被引:2,自引:0,他引:2  
Due to rapid urbanization and industrialization, many soils for crop production are contaminated by cadmium(Cd), a heavy metal highly toxic to many organisms. Cereal crops such as rice, wheat, maize, and barley are the primary dietary source of Cd for humans, and reducing Cd transfer from soil to their grains is therefore an important issue for food safety. During the last decade, great progress has been made in elucidating the molecular mechanisms of Cd transport, particularly in rice. Inter-and intraspecific variations in Cd accumulation have been observed in cereal crops. Transporters for Cd have been identified in rice and other cereal crops using genotypic differences in Cd accumulation and mutant approaches. These transporters belong to different transporter families and are involved in the uptake, vacuolar sequestration, root-to-shoot translocation, and distribution of Cd. Attempts have been made to reduce Cd accumulation in grains by manipulating these transporters through overexpression or knockout of the transporter genes, as well as through marker-assisted selection breeding based on genotypic differences in Cd accumulation in the grains. In this review, we describe recent progress on molecular mechanisms of Cd accumulation in cereal crops and compare different molecular strategies for minimizing Cd accumulation in grains.  相似文献   
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