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排序方式: 共有923条查询结果,搜索用时 15 毫秒
1.
Corn gluten meal (CGM), pea protein isolate (PPI) and their mixture (CPP, 1:1 ratio) were evaluated as fishmeal (FM) alternatives in black sea bream (Acanthopagrus schlegelii) juveniles (9.02 ± 0.12 g). A FM diet was designed as control, and other six diets had 20% and 40% FM protein replaced by CGM, PPI and CPP, respectively, with the supplementation of crystalline methionine, arginine and lysine. After the 8‐week feeding trial, significantly lower weight gain was found in fish fed the 40% CGM diet (p < .05), whereas other treatments had no statistical difference (p > .05). The values of feed efficiency ratio and feed intake, as well as proximate compositions of muscle and whole body, were not significantly influenced in all treatments. Apparent digestibility coefficients (ADCs) of dry matter, crude protein, threonine, valine, methionine, isoleucine, leucine, phenylalanine and lysine were significantly influenced by protein source. Fish fed the 40% CGM diet had significantly higher content of essential amino acid in muscle than that of the 20% PPI diet. Fish fed the 40% CGM diet had significantly lower content of serum cholesterol than other treatments (p < .05). Elevated serum superoxide dismutase activity was found in fish fed the 40% plant protein diets. In conclusion, between 20% and 40% FM protein could be replaced by CGM, while about 40% FM protein derived from PPI and CPP could be applied in black sea bream.  相似文献   
2.
旱涝交替胁迫对水稻荧光参数与光合特性的影响   总被引:1,自引:0,他引:1  
为探明控制灌排条件下旱涝交替胁迫对水稻不同生育阶段荧光参数和光合特性的影响,以农田水位为调控技术指标,采用蒸渗测坑进行水稻栽培试验,在分蘖期、拔节孕穗期、抽穗开花期、乳熟期分别设置先旱后涝胁迫(HZL)、先涝后旱胁迫(LZH)2种旱涝交替胁迫模式,测定叶片相对叶绿素含量(SPAD)、主要荧光参数及光合指标的变化。结果表明,旱涝交替胁迫会减少SPAD,其中HZL处理产生的抑制作用更强;分蘖期、拔节孕穗期旱涝交替胁迫光能转化效率、光化学淬灭系数、最大潜在电子传输速率、光饱和点、净光合速率、潜在水分利用效率等荧光参数和光合指标可以恢复甚至超过对照水平,而在抽穗开花期、乳熟期产生不可逆的影响;旱涝交替胁迫下蒸腾速率、气孔导度分别在分蘖期、乳熟期受到抑制,拔节孕穗期得到促进;HZL处理提高了非光化学淬灭系数,其他主要荧光参数和光合指标HZL低于LZH处理。水稻分蘖期、拔节孕穗期LZH处理对光合作用的补偿作用更大,抽穗开花期、乳熟期HZL处理对光合作用的抑制作用较LZH处理更明显,因此,在水稻生育后期应尽量避免重度的旱涝交替胁迫,尤其要避免发生旱涝急转。  相似文献   
3.
There are several fungicide chemistries used for disease control on pecan (Carya illinoinensis), but there is little or no knowledge of subtle short‐ or long‐term side effects of these chemistries on host physiological processes, including net photosynthesis (Pn). This study quantifies the impact of several fungicides used to control scab on Pn and other gas exchange characteristics of pecan foliage and provides much‐needed insight to ensure proper usage in commercial pecan operations. Multiple field experiments found that certain fungicide chemistries have the potential to reduce Pn, stomatal conductance (Cs), transpiration rate (Tr) and water use efficiency (Ew; Pn/Tr), whereas others are benign. For example, neither triphenyltin hydroxide nor the triazoles tested had a negative impact on gas exchange characteristics, regardless of when measurements were taken or the number of spray applications. However, dodine, phosphorous acid, ziram and certain strobilurins were capable of suppressing gas exchange, especially Pn, up to several weeks after a single treatment. Suppression of Pn by some fungicides was relatively short term, but was long term or permanent for other fungicides. In certain cases, leaf Pn was suppressed by as much as 50–80% for at least several weeks after a single exposure. These studies suggest that use of fungicides in commercial pecan orchards might result in negative side effects that need to be taken into consideration when determining how best to use these fungicides in pecan disease management.  相似文献   
4.
Sustainability of traditionally cultivated rice in the rice-wheat cropping zone (RWCZ) of Pakistan is dwindling due to the high cost of production, declining water resources and escalating labour availability. Thus, farmers and researchers are compelled to find promising alternatives to traditional transplanted rice (TPR). A field study was conducted in Punjab, Pakistan, in 2017 and 2018 to explore the trade-offs between water saving and paddy yield, water productivity and economics of two aromatic rice varieties under dry direct seeded rice (DDSR) and TPR. The experiment was comprised of three irrigation regimes on the basis of soil moisture tension (SMT) viz., continuous flooded (>−10 kPa SMT), alternate wetting and drying (AWD) (−20 kPa SMT) and aerobic rice (−40 kPa SMT), maintained under TPR and DDSR systems. Two aromatic rice verities: Basmati-515 and Chenab Basmati-2016 were used during both years of study. In both years, DDSR produced higher yields (13–18%) and reduced the total water inputs (8–12%) in comparison to TPR. In comparison to traditional continuous flooded (CF), AWD under DDSR reduced total water input by 27–29% and improved the leaf area index (LAI), tillering, yield (7–9%), and water productivity (44–50%). The performance of AWD with regard to water savings and increased productivity was much higher in DDSR system as compared to AWD in TPR system. Cultivation of DDSR with aerobic irrigation improved water savings (49–55%) and water productivity (22–30%) at the expense of paddy yield reduction (36–39%) and spikelet sterility. With regard to variety, the highest paddy yield (6.6 and 6.7 t ha−1) was recorded in DDSR using Chenab Basmati-2016 under AWD irrigation threshold that attributed to high tiller density and LAI. The economic analysis showed DDSR as more beneficial rice establishment method than TPR with a high benefit-cost ratio (BCR) when the crop was irrigated with AWD irrigation threshold. Our results highlighted that with the use of short duration varieties, DDSR cultivation in conjunction with AWD irrigation can be more beneficial for higher productivity and crop yield.  相似文献   
5.
黑斑病是影响白术种植的主要病害之一,2015—2017年从浙江省磐安、天台、新昌和嵊州4地采集、分离得到137株白术黑斑病菌Alternaria alternata,采用菌丝生长速率法检测其对甲基硫菌灵和腐霉利的抗性。结果表明:供试的黑斑病菌群体 (n = 137) 对甲基硫菌灵的高水平抗性频率为77.4%,中等水平抗性频率为22.6%,未检测到敏感菌株;对腐霉利的抗性频率为20.4%,含21株低水平抗性菌株和7株中等水平抗性菌株。7种杀菌剂的室内毒力测定结果表明:咪鲜胺对白术黑斑病菌的活性最高,EC50值为0.15 mg/L。供试的137株白术黑斑病菌对咪鲜胺的EC50值分布在0.05~0.87 mg/L之间,平均EC50值为 (0.29 ± 0.11) mg/L,可作为敏感性基线。  相似文献   
6.
为育成适合沧州地区生产的小麦突破性品种,利用矮败材料和优异抗旱耐盐亲本材料,建立盐碱圃和优良圃的双向交替选择,从而构建轮回选择群体,创新了矮败小麦轮回双向交替选择育种技术,实现了品种大量聚集有效的主效基因和微效基因,使之充分重组累加,产生更多遗传变异。利用自然选择的方法加大逆境选择压力,培育品种的多抗性,并通过人工选择和自然选择的方法选择培育出不同类型区的品种,培育出了沧核036等小麦品种,是一种行之有效的育种方法。  相似文献   
7.
正黑斑病是三七栽培生产中常见的一大病害,叶片受害产生近圆形或不规则水浸状病斑,常导致成株落叶、幼苗生长点及茎秆顶端腐烂枯死。其病原一般认为是链格孢属真菌人参链格Alternaria panax Whetzel~([1,2]),也有相关研究证明黑斑病病原为细链格孢Alternaria tenuis Nees~([3]),后定名为链格孢Alternaria alternata Keissl~([4])。本研究利用ITS序列和histone 3部分编码序列的PCR鉴定,结合形态学鉴定,分析三七主产区黑斑病菌的组成和分布情况及几种病原菌的致病力差异,以期为三七黑斑病防治提供理论依据。  相似文献   
8.
【目的】旨在阐明全生育期干湿交替灌溉对抗旱性不同水稻品种产量的影响。【方法】以抗旱性差异显著的4个水稻品种(籼稻扬稻6号和两优培九,粳稻旱优8号和镇稻88)为材料,以常规水层灌溉(CI)为对照,在盆栽条件下研究了轻干湿交替灌溉(WMD)和重干湿交替灌溉(WSD)对水稻产量、根系、叶片及籽粒部分生理特性的影响。【结果】与CI相比,WMD处理下抗旱性较强品种扬稻6号和旱优8号产量分别提高6.90%和7.45%,抗旱性较弱品种两优培九和镇稻88产量分别降低7.28%和8.10%。WSD处理下,4个水稻品种的产量均显著下降,抗旱性较弱的品种产量降幅远高于抗旱性较强的水稻品种。WMD处理下,扬稻6号和旱优8号复水后根系氧化力、根系与叶片细胞分裂素(玉米素+玉米素核苷)含量、叶片光合速率和籽粒中蔗糖-淀粉代谢途径关键酶的活性均较CI有不同程度提高,而两优培九和镇稻88上述指标则与CI持平或有不同程度降低。WSD处理下,4个品种上述指标均较CI不同程度降低。【结论】轻干湿交替灌溉条件下,根系活性强、叶片细胞分裂素含量和光合速率高、籽粒中蔗糖-淀粉代谢途径关键酶活性强是抗旱性较强水稻品种的基本生理特征。  相似文献   
9.
咸-淡水交替漫灌淋洗改良滨海盐土效果   总被引:1,自引:1,他引:0  
为探讨咸-淡水交替淋洗改良滨海盐土效果和节水潜力,通过土柱模拟试验,对咸-淡水交替淋洗下土壤溶液电导率变化、淋出液矿化度变化、淋洗用水量等进行了研究。结果表明,咸-淡水交替淋洗模式咸水(矿化度5.35 g L-1)淋洗阶段,当100 cm深土体底部开始有淋出液时,距土表40 cm深处土壤溶液电导率下降已非常明显,而距土表80 cm、100 cm深处土壤由于盐分的聚积而电导率较高;咸水持续淋洗下40 cm深处土壤电导率始终缓慢下降,而80 cm、100 cm深处土壤电导率变化历经较快、快速、缓慢下降三个过程。咸-淡水交替淋洗模式淡水淋洗阶段,前期不同深度处土壤溶液电导率基本保持稳定;随着淋洗水量的增加,由土表向下不同深度位置土壤溶液电导率先后经过快速下降和缓慢下降两个过程。咸-淡水交替淋洗模式咸水淋洗阶段,淋出液矿化度变化经过快速、较快、缓慢下降三个过程,直至下降到7.32 g L-1。淡水替换咸水继续淋洗下,前期淋出液矿化度保持稳定,当淡水淋洗水量增加到7 L(27.49 cm水层)时淋出液矿化度开始下降。咸-淡水交替淋洗模式咸水、淡水淋洗阶段结束后100 cm深土体土壤平均含盐量从初始的23.92 g Kg-1下降到5.92 g Kg-1和1.46 g Kg-1,咸、淡水淋洗水量分别为21.45 L和14.85 L,与对照淡水淋洗模式比较咸-淡水交替淋洗模式淡水节约率为25.38%。咸-淡水交替淋洗模式改良滨海盐土效果较好,且节水潜力较高,但相应需要更长的淋洗改良时间。  相似文献   
10.
为鉴定肉牛皮肤病病原及其致病性并筛选其敏感药物,本研究取患皮肤病肉牛病变部位皮屑、毛发和痂皮进行病原菌的分离,并对分离菌株进行了形态学鉴定、ITS序列分析、小鼠致病性试验和药敏试验。结果显示分离到1株形态特征与细极链格孢菌极其相似的菌株(PY2-1-2);经PCR扩增、测序和BLAST序列比对,结果显示分离株(PY2-1-2)的ITS基因序列与细极链格孢菌(MG975630.1)的ITS基因序列的相似性为99%,分离株PY2-1-2的ITS基因序列长度为543 bp,该片段包括ITS1、5.8S rDNA和ITS2的全部基因序列以及18S rDNA和28S rDNA的部分基因序列,提交GenBank(MH656780.1)。根据形态学结合ITS基因序列分析结果确定该分离株为细极链格孢菌。小鼠致病性试验结果显示该菌对小鼠有致病性。药敏试验结果显示:该菌对灰黄霉素、氟康唑、伊曲康唑、酮康唑的最小抑菌浓度(MIC)值分别为0.5μg/mL、4μg/mL、1μg/mL、1μg/mL。本研究为今后进一步探究细极链格孢菌引起的皮肤病诊治提供科学有效的参考。  相似文献   
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