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31.
酸模叶蓼对大豆生长的影响及其经济阈值 总被引:1,自引:0,他引:1
酸模叶蓼是大豆田的恶性杂草,严重危害大豆生长发育及产量,为明确酸模叶蓼在大豆田中的经济危害允许水平和经济阈值,在大田条件下采用添加系列试验和拟合函数关系模型的方法,研究了酸模叶蓼与大豆的竞争关系。结果表明,在酸模叶蓼的竞争干扰下,大豆单株荚数,产量均随酸模叶蓼密度的增加而逐渐降低,而株高没有显著变化。线性函数模型y=-0.443x+39.453(R2=0.962,F=75.887,P=0.003)能较好地拟合酸模叶蓼对大豆单株荚数的影响;二次曲线函数模型y=0.702x~2-54.395x+3027.810(R~2=0.972,F=34.843,P=0.028)能较好地拟合大豆产量与酸模叶蓼密度之间的关系,对数函数y=16.131lnx-23.458(R2=0.911,F=20.532,P=0.045)能较好的拟合大豆产量损失与酸模叶蓼密度之间的关系。大豆田酸模叶蓼人工拔除的经济阈值为10.22株/m2,使用75%噻吩磺隆水分散粒剂、80%阔草清水分散粒剂、95%精异丙甲草胺乳油防除的经济阈值分别为4.75、5.03、5.25株/m~2。酸模叶蓼对大豆产量有明显影响,通过对经济阈值分析,在大豆田化学除草剂防治酸模叶蓼具有明显的经济优势。 相似文献
32.
Agronomic traits of soybean cultivars released in different decades after grafting record‐yield cultivar as rootstock 下载免费PDF全文
Shengyou Li Fei Teng Demin Rao Xingdong Yao Huijun Zhang Haiying Wang Shuhong Song Steven K. St. Martin Futi Xie 《Plant Breeding》2017,136(2):133-138
Breeders have seldom considered the selection for root traits during the genetic improvement in soybean. It is hypothesized that grain yield would be increased by the root function improvement, especially for the current cultivars. The objective of this grafting experiment was to determine the effect of record‐yield cultivars L14 or Z35 as rootstocks on agronomic traits of cultivars released in different decades. A total of 11 cultivars, released in different decades, were used to graft onto L14 or Z35 rootstocks. The agronomic traits were measured in the pot‐culture experiments. Grafting cultivars released in different decades onto L14 or Z35 rootstocks resulted in higher yield, 100‐seed mass and apparent harvest index as compared with those of non‐grafted or self‐grafted plants. Grain yield gain of cultivars grafted onto record‐yield cultivar rootstocks was 0.40 g/plant/year from 1966 to 2006, which was larger than that of non‐grafts and self‐grafts (0.27 g/plant/year). The yield of current cultivars should increase more if their root functions were improved. 相似文献
33.
Soybean (Glycine max [L.] Merr.) is cultivated primarily for its protein and oil in the seed. In addition, soybean seeds contain nutraceutical compounds such as tocopherols (vitamin E), which are powerful antioxidants with health benefits. The objective of this study was to identify molecular markers linked to quantitative trait loci (QTL) that affect accumulation of soybean seed tocopherols. A recombinant inbred line (RIL) population derived from the cross ‘OAC Bayfield’ × ‘OAC Shire’ was grown in three locations over 2 years. A total of 151 SSR markers were polymorphic of which a one‐way analysis of variance identified 42 markers whereas composite interval mapping identified 26 markers linked to tocopherol QTL across 17 chromosomes. Individual QTL explained from 7% to 42% of the total phenotypic variation. Significant two‐locus epistatic interactions were identified for a total of 122 combinations in 2009 and 152 in 2010. The multiple‐locus models explained 18.4–72.2% of the total phenotypic variation. The reported QTL may be used in marker‐assisted selection (MAS) to develop high tocopherol soybean cultivars. 相似文献
34.
Lihua Ning Guizhen Kan Wenkai Du Shiwei Guo Qing Wang Guozheng Zhang Hao Cheng Deyue Yu 《Breeding Science》2016,66(2):191-203
Tolerance to low-phosphorus soil is a desirable trait in soybean cultivars. Previous quantitative trait locus (QTL) studies for phosphorus-deficiency tolerance were mainly derived from bi-parental segregating populations and few reports from natural population. The objective of this study was to detect QTLs that regulate phosphorus-deficiency tolerance in soybean using association mapping approach. Phosphorus-deficiency tolerance was evaluated according to five traits (plant shoot height, shoot dry weight, phosphorus concentration, phosphorus acquisition efficiency and use efficiency) comprising a conditional phenotype at the seedling stage. Association mapping of the conditional phenotype detected 19 SNPs including 13 SNPs that were significantly associated with the five traits across two years. A novel cluster of SNPs, including three SNPs that consistently showed significant effects over two years, that associated with more than one trait was detected on chromosome 3. All favorable alleles, which were determined based on the mean of conditional phenotypic values of each trait over the two years, could be pyramided into one cultivar through parental cross combination. The best three cross combinations were predicted with the aim of simultaneously improving phosphorus acquisition efficiency and use efficiency. These results will provide a thorough understanding of the genetic basis of phosphorus deficiency tolerance in soybean. 相似文献
35.
《Soil Use and Management》2018,34(1):72-84
Soya bean [Glycine max (L.) Merr] yields >6719 kg/ha (100 bu/ac) have only recently and infrequently been achieved. Quantifying soil property differences between high‐ and average‐yielding areas can help to further identify non‐plant‐related properties contributing to soya bean yield potential. The objective of this study was to evaluate the effects of region and soil depth on soil property differences between high‐ and average‐yielding areas. In each of the seven regions of the ‘Grow for the Green’ yield contest in Arkansas, prior to or just after harvest in 2014 and 2015, soil samples were collected from the top 20 cm of one contest high‐yield (HY ) area that was in close proximity to an average‐yield (AY ) area. Across all regions and both years, soya bean yields differed (P < 0.05) between yield areas, averaging 4701 and 5498 kg/ha in AY and HY areas, respectively. Averaged across soil depth and years, numerous soil properties differed (P < 0.05) between HY and AY areas within at least one of seven regions. Total soil C content was at least 20.2% greater in the HY than in the AY area in three of seven regions. Extractable soil P content was, on average, 19.4 kg/ha greater in HY than in AY areas in three of the seven regions. Results from this study have the potential to help producers better understand soil properties that contribute to or hinder achieving ultra‐high (>6719 kg/ha) soya bean yields. 相似文献
36.
本试验旨在研究豆粕酶解发酵物对仔猪生长性能、血清指标及肠道菌群结构的影响。选用144头49日龄健康的"杜×长×大"三元杂交育肥仔猪,随机分为3组,每组6个重复,每个重复8头猪(公母各占1/2)。阴性对照组饲喂无抗生素添加的基础饲粮,抗生素对照组饲喂基础饲粮+60 g/t吉他霉素,试验组饲喂试验饲粮(基础饲粮中10%豆粕被豆粕酶解发酵物替代)。试验期为42 d。结果表明:1)试验组仔猪的末重、平均日增重、平均日采食量分别比阴性对照组高5.06%、10.07%、5.03%(P0.05),腹泻率比阴性对照组低39.59%(P0.05),与抗生素对照组相比各指标差异均不显著(P0.05)。2)试验组仔猪血清碱性磷酸酶和谷丙转氨酶活性、总抗氧化能力(T-AOC)、超氧化物歧化酶(SOD)活性均显著高于阴性对照组(P0.05),丙二醛(MDA)含量显著低于阴性对照组(P0.05);试验组和抗生素对照组仔猪血清指标差异不显著(P0.05)。3)试验组仔猪盲肠、大肠中乳酸杆菌数量显著高于阴性对照组和抗生素对照组(P0.05),十二指肠中总细菌数显著低于阴性对照组和抗生素对照组(P0.05)。综上,豆粕酶解发酵物能提高仔猪生长性能,增强机体抗氧化能力,利于乳酸杆菌在肠道内形成优势菌群,降低腹泻率,生长性能达到使用抗生素水平。 相似文献
37.
38.
根据大豆植株分杈个数可以预估大豆的产量。为了满足现代农业预测农产品产量的需要,本文提出一种大豆植株分杈数自动提取算法,即首先将采集到的大豆植株图片进行灰度变换、滤波、阈值分割得到二值图像,再进行形态学中的闭运算操作得到大豆植株的轮廓,然后基于Zhang并行快速细化算法提取骨架,最后借助改进的角点检测算法对大豆植株的所有分杈点进行标记并自动统计分杈数,仿真结果与大豆植株实际分杈点一致。 相似文献
39.
刘艳 《安徽农业大学学报》2020,29(2):86-93
农业转移人口子女进入城市后所面临的语码选择、家庭语言规划等语言问题与该群体的城市融合之间具有一定的相关性。对合肥两所小学的调查发现,普通话在该群体语言使用和家庭语言规划中具有较高的取向度,而合肥话与该群体的城市融合之间具有更强相关性。语言取向度高的原因在于合肥言语社区中普通话社区的互动人口和设施建设更加完善,而合肥话与城市融合的相关性更强则体现了语言认同在城市融合中的重要作用,也证明了提高城市方言取向度是促进城市融合的有效途径。 相似文献
40.
黑土区施加生物炭对土壤综合肥力与大豆生长的影响 总被引:5,自引:0,他引:5
为探明黑土区施加生物炭对土壤持水性能、土壤养分以及大豆生长的影响,以东北黑土区3°坡耕地田间径流小区为研究对象,进行为期4年的观测。按照生物炭施加量,2015年共设置C0(0 t/hm~2)、C25(25 t/hm~2)、C50(50 t/hm~2)、C75(75 t/hm~2)、C100(100 t/hm~2) 5个处理,2016—2018年分别连续施加等量的生物炭。结果表明:连续4年,0~60 cm土层土壤储水量随施炭量的增加呈先增大、后减小的趋势,而对60~100 cm土层土壤储水量影响不显著;连续4年,饱和含水率随施炭量的增加呈逐渐增大的趋势; 2015年田间持水率、凋萎系数随施炭量的增加呈逐渐增大趋势,2016—2018年呈先增加、后减小趋势;连续4年,施加生物炭提高了大豆各生育阶段的株高和叶面积,同期相对较优处理分别为C75、C50、C50、C25;连续4年,大豆冠层覆盖度与施炭量呈抛物线变化(R~2均在0. 89以上,P 0. 01),连续施加2年的C50处理各生育期提高量最大,与C0相比提高了81. 4%、36. 7%、31. 5%和39. 6%;连续4年,土壤pH值和有机质、速效钾含量随施炭量的增加呈逐渐升高趋势,碱解氮、有效磷含量呈先升高、后降低趋势,相对较优处理为C50、C50、C25、C25。采用改进的内梅罗指数模型计算的土壤综合肥力指数与产量呈正相关(R~2=0. 861 5,P=0. 001 2,RMSE为0. 75),土壤综合肥力水平最高的生物炭施用模式为连续2年施加50 t/hm~2的生物炭。 相似文献