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1.
黑水虻Hermetia illucens是一种备受关注的资源昆虫,主要用于处理粪便和餐厨余垃圾,虫体也可作为蛋白源进入下游的牲畜饲料。本研究以黑水虻幼虫为试验对象,设置5个不同配比的黑水虻饲料配方,探究进境小麦下脚料用于黑水虻饲养的可行性。研究发现,黑水虻幼虫抗逆性极好,不同饲料配方饲养的黑水虻幼虫存活率均超过95%。幼虫干虫的营养成分分析表明,进境小麦下脚料所养殖的幼虫蛋白成分可达45%,油脂含量可达30%,比常规蛋白饲料豆粕的44.2%蛋白含量稍高。综合黑水虻幼虫鲜重、干重、干重率以及饲料降解量的养殖结果,小麦下脚料含量为60%的饲料配方具有最佳的转化产出。  相似文献   

2.
【目的】了解低含水量饲料对黑水虻Hermetia illucens生长发育的影响。【方法】在27℃、RH 80%、光周期14L∶10D的饲养条件下,以含水量70%人工饲料饲养黑水虻为对照,比较饲料含水量降为30%和50%时黑水虻幼虫的存活率、幼虫体重、雌雄成虫体长、羽化率以及不同发育阶段持续时间等生物学参数与对照组的差异。【结果】30%和50%含水量饲料饲养幼虫平均体重与对照幼虫相比显著降低(P<0.05),30%和50%含水量两个处理间体重亦有显著差异(P<0.05)。黑水虻幼虫不能在含水量30%的人工饲料中发育至预蛹,大部分幼虫至13 d时死亡。50%含水量饲料饲养幼虫比对照延迟5 d出现预蛹,滞后14 d结束预蛹,预蛹过程耗时18 d,比对照延长8 d;50%含水量饲料饲养雌雄虫比对照成虫体长显著缩短(P<0.05),雌雄成虫羽化时间亦比对照延后5 d,雌雄成虫羽化历期均为18 d,比对照增加5 d;50%含水量饲料饲养黑水虻自卵孵化至蛹全部羽化为成虫所需时间比对照延长10.67 d,所需时间为55.67 d,而对照仅需45.00 d;但是50%含水量饲料饲养幼虫存活率和成虫羽化率与对照相比差异均不显著(P>0.05)。【结论】含水量低于70%的人工饲料不利于黑水虻的生长发育。  相似文献   

3.
饲料的含水率是影响黑水虻生长发育及其对饲料养分转化的重要因素,本研究旨在探究黑水虻生物转化过程中饲料最佳含水率。将3龄黑水虻幼虫接入含水率为40%、50%、60%、70%、80%的饲料中,每隔3 d记录黑水虻的体重,至预蛹数达总数的50%时结束试验,计算预蛹历期、预蛹总产量及有效转化率,测定黑水虻及饲料残渣养分及总能。结果发现:1)黑水虻预蛹总产量及其对饲料的有效转化率随水分含量升高而线性增加,在80%水分下达到最大值。2)黑水虻在70%水分下最先预蛹,预蛹历期为14 d。3)黑水虻体内CP含量随水分含量增加而线性下降,EE、GE含量随水分增加线性上升。4)黑水虻对饲料GE的代谢消耗率在60%水分下最高,而在80%水分下对饲料养分的累积量最高。因此,生产中为了高效运转黑水虻生物转化体系,应根据生产目的调节饲料水分以获取最大效益。  相似文献   

4.
三种食物喂养的黑水虻幼虫营养测定与比较   总被引:1,自引:0,他引:1  
黑水虻幼虫在国内外被普遍用于处理有机废弃物,得到的黑水虻幼虫由于富含蛋白质又可用于畜禽养殖,或用于提取油脂、蛋白及甲壳素等物质.本文利用云南省昆明市宜良县汤池镇当地较多的有机废弃物(豆腐渣、鸡粪及发酵鸡粪)饲养黑水虻幼虫,15d后,对三种幼虫进行营养测定,并比较不同食物饲养幼虫营养成分的差异,可根据测定结果对不同用途幼虫选择较合适的饲养物质.结果表明豆腐渣饲养幼虫的蛋白(52.3%)、油脂(22.6%)及氨基酸(36.80%)含量均高于两种鸡粪饲养的幼虫(蛋白含量为46.9%及45.9%、油脂为5.13%及4.30%、氨基酸为23.51%及28.48%),灰分(9.89%)含量低于这两种鸡粪饲养的幼虫(23.2%及19.6%);两种鸡粪饲养的黑水虻幼虫中锌、铜及铅等部分金属元素含量较高.三种食物饲养的黑水虻幼虫营养成分存在一定差异,其中豆腐渣饲养的黑水虻幼虫营养较为丰富,且重金属含量较低,更适合用于畜禽养殖.  相似文献   

5.
本文初步研究了老熟和预蛹阶段的黑水虻Hermetiaillucens对于酒精毒性、氧胁迫和高渗透压条件下的耐受特性,结果显示黑水虻幼虫和预蛹在三种胁迫因子处于20%~60%(浓度)的较低水平时,其平均死亡率低于20%,表现出良好的抗逆性。高浓度的酒精、矿物油和氯化钠溶液对于黑水虻的生存都会产生负面影响,但是幼虫与预蛹由于其生理形态上的变化,致使其在抗逆性方面表现出显著差异,预蛹阶段的黑水虻对矿物油较为敏感,而幼虫则对高盐环境的耐受性表现较弱。  相似文献   

6.
黑水虻 Hermetia illucens 作为一种新型资源环境昆虫,其幼虫可以处理餐厨垃圾、畜禽粪便、蔬菜残体等各种有机废弃物。幼虫富含蛋白质和油脂,可以作为水产饲料的蛋白来源。本研究探索黑水虻幼虫处理餐厨垃圾过程中其养分组成与消化酶活性变化之间的关系。通过黑水虻幼虫自由取食餐厨垃圾,每日采集样品用于物质养分和消化酶活性的测定。结果显示:黑水虻幼虫粗蛋白含量呈现先下降后上升的变化规律,而幼虫总糖含量呈现先上升后下降的变化规律,粗脂肪含量维持上升的趋势。幼虫处理餐厨垃圾过程中,体内蛋白酶在初期迅速上升,第6天后逐渐下降,而淀粉酶呈现出先缓慢上升再迅速上升最后下降的变化规律。脂肪酶在黑水虻幼虫处理餐厨垃圾前期保持较高的活性然后缓慢下降。同时,通过相关性分析,黑水虻幼虫粗蛋白含量变化与蛋白酶活性没有相关性,而总糖与粗脂肪含量变化分别与淀粉酶、脂肪酶有相关性。因此,部分消化酶活性变化与黑水虻幼虫养分组成具有一定的联系,本研究结果为工厂化养殖黑水虻提供一定的理论基础。  相似文献   

7.
肠道共生细菌预发酵鸡粪对黑水虻生长发育的影响   总被引:1,自引:0,他引:1  
喻国辉  杨紫红  夏嫱  陈远凤  程萍 《昆虫知识》2010,47(6):1123-1127
以利用黑水虻Hermetia illucens L.肠道共生细菌不同菌株培养液预发酵的鸡粪为培养料,研究了添加不同菌株的发酵鸡粪对黑水虻幼虫生长发育的影响。结果表明,添加不同菌株的预发酵鸡粪能显著增加预蛹和蛹的重量,显著提高化蛹率并增加雌、雄成虫体长,缩短预蛹所需时间,但对幼虫存活率、成虫羽化率、成虫寿命没有显著影响。同时,不同菌株的作用效果有所不同。  相似文献   

8.
【目的】旨在明确黑水虻Hermetia illucens幼虫的耐饥力及饥饿幼虫复食后的发育、生殖力等生物学特性,为评估饥饿对黑水虻后续发育的影响并指导生产实践提供依据。【方法】将不同日龄或不同体重黑水虻幼虫进行不同时长的饥饿处理,测定和分析其耐饥力与日龄、百头重的关系;对7日龄幼虫进行不同时长的饥饿处理后再复喂,测定不同饥饿时长对其预蛹出现时间、总预蛹率、预蛹重、成虫繁殖等的影响。【结果】黑水虻幼虫饥饿后的半数致死时间(LT50)与日龄成指数关系,与体重呈线性相关。7日龄幼虫的耐饥力较强,LT50超过了50 d,饥饿30 d时存活率仍然达到了95%。百头重小于0.5 g的个体,其LT50小于30 d;百头重在2~2.5 g的个体,其LT50在45~70 d。幼虫超过8日龄时或百头重超过4.5 g时,多数个体在饥饿5 d时就提前进入了后续发育阶段。7日龄幼虫饥饿40 d内复食,其预蛹率未受到影响,但预蛹重显著增加;短期饥饿(0~10 d)对其成虫产卵量无显著影响,长期饥饿(30~40 d)使其成虫产卵量显著下降;饥饿长达30 d以上时,卵孵化率也显著降低。【结论】本研究明确了不同体重或不同日龄的黑水虻幼虫都具有一定的耐饥力;饥饿幼虫复食后预蛹重显著增加。  相似文献   

9.
基于极端顶点混料设计优化黄粉虫秸秆饲料配方   总被引:1,自引:0,他引:1  
【目的】每年产生的秸秆大部分没有被有效利用,造成大量的资源浪费。虽有部分秸秆发酵后制成畜禽动物饲料,但研究秸秆饲料用于饲养昆虫的少见。本研究旨在拓展秸秆的资源化利用途径,利用发酵秸秆饲养黄粉虫Tenebrio molitor,进而降低黄粉虫饲养中的饲料成本。【方法】以饲养黄粉虫的常规饲料、发酵的玉米秸秆、发酵的红薯秸秆为原料,用极端顶点混料设计法,研究三者不同混合比例对黄粉虫幼虫生长指标(生物量增率、死亡率、体长、饲料利用率和转化率)以及生理指标[含水量、灰分含量、粗脂肪含量、粗蛋白含量、超氧化物歧化酶(SOD)活性、总糖含量、磷含量、中微量元素含量和重金属含量]的影响,筛选出黄粉虫的最佳混料配方。【结果】结果表明,在常规饲料中添加一定量发酵的玉米秸秆和红薯秸秆更有利于黄粉虫幼虫的生长。生物量增率较大的实验组,其饲料利用率和转化率较高。混料配方中红薯秸秆所占比例越大,黄粉虫幼虫的死亡率趋势越大。而不同的混料配方对黄粉虫幼虫的体长和各生理指标无明显影响。最佳的混料配方为:常规饲料∶发酵玉米秸秆∶发酵红薯秸秆=37.24∶20.72∶42.04。此配方饲料成本低,相比于常规饲料配方成本降低了56.94%。此配方下饲养的黄粉虫幼虫,其生物量增率可达32.52%,高于常规饲料饲喂的对照组(25.17%),且黄粉虫幼虫的死亡率低、饲料利用率高。【结论】秸秆饲料经过科学配方既降低了黄粉虫的饲养成本,又提高了秸秆的利用率,具有较好的推广前景。  相似文献   

10.
白带锯蛱蝶幼虫和蛹的营养成分比较分析   总被引:2,自引:0,他引:2  
探寻白带锯蛱蝶幼虫和蛹的主要营养成分,为它们的食用开发提供理论基础。运用营养分析方法分析表明白带锯蛱蝶幼虫和蛹的矿质元素含量丰富,粗脂肪含量分别占其干重的7.74%和12.1%,蛋白质含量分别占其干重的70.2%和67.8%,总氨基酸的含量分别为478.0 mg/g干重和519.4 mg/g干重,必需氨基酸分别占总氨基酸的比例为36.4%和33.7%,必需氨基酸与非必需氨基酸的比值分别为0.57和0.51,它们的第一限制氨基酸都为苏氨酸,第二限制氨基酸都为缬氨酸,必需氨基酸指数分别为0.86和0.93。白带锯蛱蝶幼虫和蛹除了各种矿质元素含量差异显著外,其余各营养成分含量相近,具有高蛋白、低脂肪、矿质元素含量丰富、蛋白质质量较好、必需氨基酸含量较高以及氨基酸结构较不平衡等特点。综上,白带锯蛱蝶幼虫和蛹具有较高的营养价值,它的食用开发具有巨大的潜力和广阔的市场前景。  相似文献   

11.
Black soldier flies, Hermetia illucens L., are a common colonizer of animal wastes. However, all published development data for this species are from studies using artificial diets. This study represents the first examining black soldier fly development on animal wastes. Additionally, this study examined the ability of black soldier fly larvae to reduce dry matter and associated nutrients in manure. Black soldier fly larvae were fed four rates of dairy manure to determine their effects on larval and adult life history traits. Feed rate affected larval and adult development. Those fed less ration daily weighed less than those fed a greater ration. Additionally, larvae provided the least amount of dairy manure took longer to develop to the prepupal stage; however, they needed less time to reach the adult stage. Adults resulting from larvae provided 27 g dairy manure/d lived 3-4 d less than those fed 70 g dairy manure. Percentage survivorship to the prepupal or adult stages did not differ across treatments. Larvae fed 27 g dairy manure daily reduced manure dry matter mass by 58%, whereas those fed 70 g daily reduced dry matter 33%. Black soldier fly larvae were able to reduce available P by 61-70% and N by 30-50% across treatments. Based on results from this study, the black soldier fly could be used to reduce wastes and associated nutrients in confined bovine facilities.  相似文献   

12.
A value added manure management system using the black soldier fly   总被引:3,自引:0,他引:3  
A manure management system for laying hens using the black soldier fly, Hermetia illucens (L.) converted manure to a 42% protein, 35% fat feedstuff, reduced manure accumulation by at least 50% and eliminated house fly breeding. No extra facility or added energy was required. Mature larvae self-harvested producing a feedstuff as they attempted to pupate. Optimal feedstuff to manure dry matter yield was 7·8%. This insect occurs worldwide in tropical and warm-temperature regions and can digest many biological wastes.  相似文献   

13.
Dosage-mortality regressions were determined for black soldier fly, Hermetia illucens (L.), larvae fed cyromazine or pyriproxifen treated media. Cyromazine LC50 for larvae dying before becoming prepupae ranged from 0.25 to 0.28 ppm with dosage-mortality regression slopes between 5.79 and 12.04. Cyromazine LC50s for larvae dying before emergence ranged from 0.13 to 0.19 ppm with dosage-mortality regression slopes between 3.94 and 7.69. Pyriproxifen dosage-mortality regressions were not generated for larvae failing to become prepupae since <32% mortality was recorded at the highest concentration of 1,857 ppm. LC50s for larvae failing to become adults ranged from 0.10 to 0.12 ppm with dosage mortality-regression slopes between 1.67 and 2.32. Lambda-cyhalothrin and permethrin dosage-mortality regressions were determined for wild adult black soldier flies and house flies, Musca domestica L., and for susceptible house flies. Our results indicate that the wild house fly, unlike the black soldier fly, population was highly resistant to each of these pyrethroids. Regression slopes for black soldier flies exposed to lambda-cyhalothrin were twice as steep as those determined for the wild house fly strain. Accordingly, LC50s for the black soldier fly and susceptible house fly were 10- to 30-fold lower than those determined for wild house flies. The differential sensitivity between wild black soldier flies and house flies might be due to behavioral differences. Adult house flies usually remain in animal facilities with the possibility of every adult receiving pesticide exposure, while black soldier fly adults are typically present only during emergence and oviposition thereby limiting their exposure.  相似文献   

14.
The growth and development of black soldier fly, Hermetia illucens (L.), larvae fed chicken manure inoculated with bacteria isolated from black soldier fly larvae and associated larval feed was evaluated. Four strains of Bacillus subtilis were evaluated. B. subtilis strains S15, S16, S19, were isolated from the gut of black soldier fly larvae. B. natto strain D1 was isolated from the diet fed to black soldier fly larvae. These bacteria were added individually into nonsterile 200 g fresh hen manure at 10(6) cfu/g and homogenized. Treated manure was then inoculated with 4-d old black soldier fly larvae. Prepupal weight ranged from 0.0606 g in the control to 0.0946 g in manure treated with the S15 strain. Larval survivorship to the prepupal stage in all treatments ranged from 98.00 ± 2.65% to 99.33 ± 1.15%. Prepupal survivorship to the pupal stage ranged from 91.92 ± 1.87% to 97.95 ± 1.03%. Adult emergence from the pupal stage did not significantly (P < 0.05) differ across treatments and ranged from 98.95 ± 1.82% to 100.00 ± 0.00%. Adult body length resulting from the larvae in each of the treatments was significantly greater than those from the control. Longevity of adults did not differ significantly between treatments. Time from hatching to the development of the first pupa did not differ significantly across treatments; however, development time from hatching to 90% reaching the prepupual stage was significantly different between treatments and ranged from 29.00 ± 1.00 d to 34.33 ± 3.51 d. Development time from hatching to 90% reaching the adult stages was significantly different between treatments. Our results demonstrate that inoculating poultry manure with bacteria from black soldier fly larvae influences the growth and development of conspecific larvae feeding on the manure.  相似文献   

15.
The black soldier fly, Hermetia illucens, is beneficial because its larvae feed on organic materials derived from plants, animals and humans and promote the recycling of food waste and organic materials. We investigated the biochemical properties of digestive enzymes released from the salivary gland and gut of the black soldier fly. Because the gut extracts of the black soldier fly larvae had high amylase, lipase and protease activities, we suggested that the black soldier fly might belong to the polyphagous insect group. In addition, a strong trypsin-like protease activity was observed in the gut extracts of the black soldier fly larvae. Higher activities of leucine arylamidase, α-galactosidase, β-galactosidase, α-mannosidase and α-fucosidase were observed from the gut extracts of the black soldier fly larvae compared with those of house fly larvae. These findings may explain previous reports that the black soldier fly larvae can digest food wastes and organic materials more efficiently than any other known species of fly.  相似文献   

16.
Black soldier fly is a common and widely distributed saprophagous species that has an excellent potential for being used for biological conversion of organic wastes on an industrial scale. The main goal of the reported study was expanding the list of wastes suitable for utilization by this species. We compared larval growth on cull potatoes, horse manure and cafeteria food waste in 100‐L bins in a greenhouse. We also conducted laboratory experiments to investigate whether black soldier fly larvae are affected by the presence of moxidectin, a common endectocide used to treat an array of domestic animals and readily excreted in faeces, in their food substrates. Feeding on potatoes resulted in slower growth, and the final size of potato‐fed larvae was smaller compared to the larvae fed on cafeteria waste. Nevertheless, potatoes supported substantial biomass accumulation, and could be a valuable option for rearing fly larvae for commercial feed production. Larvae feeding on horse manure gained very little weight and eventually failed to pupate. Moxidectin had a strong negative effect on larval survivorship; however, ca. 30% of larvae reared in the substrate containing a realistic field concentration of moxidectin still survived to adulthood. Our findings confirm that using black soldier fly larvae is a promising technology for recycling organic wastes, including those of plant origin.  相似文献   

17.
Bioconversion is a biological process by which organic materials are converted into products with higher biological and commercial value. During its larval stage the black soldier fly Hermetia illucens is extremely voracious and can feed on a wide variety of organic materials. To study the impact of different fruit byproducts on the insect's growth, final larval biomass, substrate reduction, bioconversion parameters, and larval nutritional composition, 10 000 black soldier fly larvae (BSFL) were reared on 7.0 kg of one of three substrates (strawberry, tangerine, or orange) or on a standard diet as a control. The results highlight that BSFL can successfully feed and grow on each of these diets, though their development time, growth rate, and final biomass were differently impacted by the substrates, with strawberry being the most suitable. The lipid and protein contents of BSFL were similar among larvae fed on different substrates; however, major differences were detected in ash, micronutrient, fiber, fatty acid, and amino acid contents. Overall, the results indicate that fruit waste management through the BSFL bioconversion process represents a commercially promising resource for regional and national agrifood companies. Our study offers new perspectives for sustainable and environmentally friendly industrial development by which fruit byproducts or waste might be disposed of or unconventionally enhanced to create secondary products of high biological and economic value, including BSFL biomass as animal feed or, in perspective, as alternative protein source for human nutrition.  相似文献   

18.
The attention for black soldier fly larvae (BSFL) as an alternative ingredient for food and feed products is on the rise. While many studies have reported the efficiency of BSFL to bio-convert a wide range of organic waste streams into larval biomass, so far, it is unknown whether BSFL prefer certain waste streams over others when they have the possibility to choose. Here, we performed a choice-test experiment to explore the preference of BSFL when exposed to pig manure and a mass-rearing diet consisting of plant by-products currently used for industrial BSFL production. We found that after 1 hr of exposure to both feeds, BSFL strongly preferred pig manure over the mass-rearing diet. The preference for manure became stronger as larval age increased. Our results provide the first evidence that BSFL express a distinct diet preference. Understanding the reasons for the strong preference for manure is relevant for a diverse array of practical applications and to inform the discussion on insect welfare.  相似文献   

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