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71.
李梅 《粮食储藏》2016,(1):46-48
探索了一种对稻谷中重金属镉的快速、直接的测定方法,以适用稻谷集中收购、存储和流通过程中快速检测的的需要。样品无需前处理,直接磨成粉状即可上机测定。该方法采用X射线荧光光谱分析的原理,样品中的待测元素受激产生特征X射线,并由高性能探测器接收,得到镉元素的信号强度,然后根据信号强度与浓度的比例关系,经过软件处理自动计算样品中镉的含量,20min内完成精确定量。检出限可达到0.034mg/kg,实物标样标准偏差为0.016。此方法简单快速,并且准确性高,重现性好,可广泛应用于稻谷中镉的快速检测。  相似文献   
72.
New Rice for Africa (NERICA) is a general name for interspecific rice varieties derived from a cross between the high‐yielding Asian rice (Oryza sativa L.) between locally adapted African rice (Oryza glaberrima Steud.). Eight NERICAs were evaluated for cold tolerance (CT) at the reproductive stage and compared with their O. sativa parents and three Japanese standard rice varieties over 3 years. Cold tolerance was evaluated based on the filled grain ratio (FGR) after cold water irrigation. The FGR was greatly reduced by cold water irrigation. NERICA 1, 2 and 7 had higher FGR (51.9–57.9 %), while NERICA 6, 15 and 16 had lower FGR (6.2–14.5 %). NERICA 1, 2 and 7 were less affected by cold stress, with a 31 % mean reduction in FGR, while NERICA 6, 15 and 16 were greatly affected, with their FGRs being reduced by more than 80 %. NERICA 3 and 4 were moderately affected by cold stress, with about 45 % reduction rate in FGR. FGR significantly influenced the grain weights of the varieties with strong positive correlations (r = 0.83–0.91; P < 0.001), and thus, similar trends in grain weights were observed. Grain weights were reduced by 61.7–96.4 % under cold stress. NERICA 1, 2 and 7 showed significantly better performance than NERICA 3 and 4, while NERICA 6, 15 and 16 performed poorly under cold water irrigation. The Japanese varieties Koshihikari (very tolerant) and Ozora (moderately tolerant) were more affected by cold water irrigation than NERICA 1, 2 and 7. On the basis of the mean reduction rate (%) in FGR under cold stress, the varieties were classified as follows: NERICA 1, 2 and 7 as tolerant; NERICA 3 and 4 as moderately tolerant; and NERICA 6, 15 and 16 as susceptible to cold stress. However, NERICA 7 grain yields were lower under cold stress due to both greatly reduced number of panicles per plant and number of spikelets per panicle. Therefore, NERICA 1 and 2 are suitable candidates for production in the highland regions of East Africa and should be promoted for production.  相似文献   
73.
74.
谷子秸秆剪切力与其饲料营养特性变化规律及相互关系   总被引:1,自引:1,他引:0  
为探究谷子秸秆力学性质与其饲料特性的变化规律及相互关系,选用谷物完熟期的谷子秸秆,将其分为5段(近根部、中下部、中部、中上部、上部)并每隔7 d进行秸秆节间、茎节力学性质(剪切、压缩)和饲料特性(形态指标、营养成分)测定。试验结果表明:谷物完熟后,随着时间的推进,秸秆节间、茎节剪切力、抗压强度、干物质含量、纤维素含量、半纤维素含量和木质素含量总体上呈增大趋势,而秸秆含水率、当量直径、横截面积、线性密度和粗蛋白含量总体上呈减小趋势。谷子秸秆单位直径剪切力与含水率和线性密度呈负相关关系(R2≥0.903),与其干物质、纤维素、半纤维素和木质素含量呈正相关关系(R2≥0.845),与其粗蛋白含量无显著相关关系(P>0.05)。采收期内,谷子秸秆基部起秸秆剪切力至顶部逐渐增大,且剪切力与当量直径、横截面积呈正相关关系(R2≥0.916)。试验表明谷子秸秆饲料特性指标验证试验值与预测值相对误差不大于6.48%,预测模型合理。测量秸秆剪切力可用于预测其形态指标参数和营养成分含量,进而一定程度地反映秸秆饲用价值和反刍动物择食趋向。采收期内,谷子中部及以上秸秆单位直径剪切力显著小于其近根部(P<0.05),更适合饲用;且谷物完熟后,及时采收可避免秸秆饲用价值降低。该研究可为高效利用谷子秸秆资源提供参考。  相似文献   
75.
为探明BWMK1介导的信号传导途径,采用酵母双杂交系统,构建水稻稻瘟病菌诱导后的cDNA文库,以BWMK1为诱饵,对文库进行筛选,通过验证、测序和基因编码分析,获得了7个BWMK1互作基因BWIP1~BWIP7,分别位于水稻基因组第12、2、3、10、6、4、5染色体上;7个互作基因中,除BWlP2和BWIP7未找到同...  相似文献   
76.
适度卷曲有利于提高水稻叶片的光合效率,增加植株光合产物的有效积累量。我们利用甲基磺酸乙酯(EMS)处理籼型水稻保持系西农1B,获得一个稳定遗传的水稻半外卷叶突变体。该突变体从十叶期开始各叶片逐渐向外卷曲直至半卷状,并伴随茎秆半矮化和叶片披垂,暂被命名为semi-outcurved leaf 1(sol1)。与野生型(WT)相比,sol1的叶片卷曲指数均达到30%以上(P<0.01);倒一、倒二、倒三、倒四节节间长度和穗长极显著缩短,倒一、倒二、倒三叶的叶夹角显著或极显著增加;有效穗数、千粒重、每穗实粒数、结实率显著或极显著下降,一次枝梗数则增加11.3%(P<0.05)。sol1的蒸腾速率、胞间CO2浓度、气孔导度显著高于野生型。石蜡切片显示,sol1倒一叶的泡状细胞体积变小,数量显著增多,表皮细胞体积略微增大。遗传分析表明,sol1的半外卷叶性状受1对隐性核基因调控,定位于6号染色体标记JY6-3和JY6-10之间165 kb的物理范围内,共含15个注释基因。qRT-PCR结果表明,与泡状细胞相关的内卷基因和外卷叶基因RL14、Roc5、REL1在突变体sol1中呈不同程度的上调,NRL、BRD1、OsHox32、ADL1、LC2则呈不同程度的下调。研究结果为SOL1基因的克隆和功能研究奠定了基础。  相似文献   
77.
78.
PF455S插秧机的行走底盘与国产独轮驱动插秧机相比,水田机动性能和通过性较好,但也存在手柄安装夹紧不当等问题。介绍PF455S动力插秧机的系统组成、设计原理与主要参数,对发现的侧离器手柄问题进行改进,达到了设计目的。  相似文献   
79.
Benefits of organic farming on soil fauna have been widely observed and this has led to consider organic farming as a potential approach to reduce the environmental impact of conventional agriculture. However, there is still little evidence from field conditions about direct benefits of organic agriculture on soil ecosystem functioning. Hence, the aims of this study were to compare the effect of organic farming versus conventional farming on litter decomposition and to study how this process is affected by soil meso- and macrofauna abundances. Systems studied were: (1) organic farming with conventional tillage (ORG), (2) conventional farming with conventional tillage (CT), (3) conventional farming under no-tillage (NT), and (4) natural grassland as control system (GR). Decomposition was determined under field conditions by measuring weight loss in litterbags. Soil meso- and macrofauna contribution on decomposition was evaluated both by different mesh sizes and by assessing their abundances in the soil. Litter decomposition was always significantly higher after 9 and 12 months in ORG than in CT and NT (from 2 to 5 times in average), regardless decomposer community composition and litter type. Besides, mesofauna, macrofauna and earthworm abundances were significantly higher in ORG than in NT and CT (from 1.6 to 3.8, 1.7 to 2.3 and 16 to 25 times in average, respectively for each group). These results are especially relevant firstly because the positive effect of ORG in a key soil process has been proved under field conditions, being the first direct evidence that organic farming enhances the decomposition process. And secondly because the extensive organic system analyzed here did not include several practices which have been recognized as particularly positive for soil biota (e.g. manure use, low tillage intensity and high crop diversity). So, this research suggests that even when those practices are not applied, the non-use of agrochemicals is enough to produce positive changes in soil fauna and so in decomposition dynamics. Therefore, the adoption of organic system in an extensive way can also be suggested to farmers in order to improve ecosystem functioning and consequently to achieve better soil conditions for crop production.  相似文献   
80.
本文旨在研究等磷、钾量条件下,化肥减氮及有机肥不同用量配施对水稻产量及土壤养分的影响,试验共设6个处理,分别为T1∶80%N+20%有机肥;T2∶80%N+40%有机肥;T3∶70%N+60%有机肥;T4∶70%N+80%有机肥;T5∶60%化肥+100%有机肥;CK:100%N+0,对水稻生育期株高、群体动态、产量、构产因子以及秋季土壤养分含量进行分析,结果表明:1化肥减氮20%时,不会对水稻造成明显减产,且当有机肥配施量为500kg·mu-2时,水稻籽粒产量最高,为775.19kg·mu-2,比CK增产17.20%;2有机肥的施用能提高水稻基本苗,对水稻穗长有显著提高效果,对空秕率影响较大,对枝梗数影响最小;3化肥减氮+有机肥配施可以提高土壤肥力,增加土壤有机质含量,提高土壤碱解氮、速效钾含量。  相似文献   
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