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11.
The tiny parasitoid wasp, Encarsia formosa, has been used successfully to control greenhouse whiteflies (GHWFs) in greenhouses in many countries throughout the world. Therefore, there has been considerable interest in developing methods for artificially rearing this wasp. However, little information is available concerning the regulation of its development including the host-parasitoid interactions that are required for the parasitoid to complete its life cycle. Here we confirm that parasitoid developmental rates differ significantly based upon the host instar parasitized. Development was faster when 3rd and 4th instar GHWFs were offered for parasitization than when 1st or 2nd instars were used. Our results show that it is primarily the embryo and the first two parasitoid instars that exhibit prolonged developmental times when 1st and 2nd instar whiteflies are parasitized. Although percent emergence was not affected by host age at the time of parasitization, adult longevity as well as adult emergence pattern varied greatly depending upon the instar parasitized. When 3rd and 4th instar GHWFs were selected for oviposition, adult wasps lived significantly longer than when 1st or 2nd instars were used; also, there was a sharp emergence peak on the 2nd day after emergence was first observed (reduced or absent when 1st or 2nd instar GHWFs were parasitized) and the emergence period was reduced from between 8 and 11 days to 5 days. In general, the younger the host instar parasitized, the less synchronous was parasitoid development. Previous reports that E. formosa will not molt to the 2nd instar until the host has reached its 4th instar were not confirmed. When 1st instar host nymphs were parasitized, 2nd instar parasitoids were detected in 3rd instar hosts. Importantly, however, no matter which instar was parasitized, the parasitoid never molted to its last instar until the host had reached Stage 5 of its last instar, a stage in which host pharate adult formation has been initiated. It appears, then, that a condition(s) associated with host pharate adult formation is required for the parasitoid's final larval molt. Results reported here should facilitate the development of in vitro rearing systems for E. formosa.  相似文献   
12.
Measurement of greenhouse gas (GHG) fluxes between the soil and the atmosphere, in both managed and unmanaged ecosystems, is critical to understanding the biogeochemical drivers of climate change and to the development and evaluation of GHG mitigation strategies based on modulation of landscape management practices. The static chamber-based method described here is based on trapping gases emitted from the soil surface within a chamber and collecting samples from the chamber headspace at regular intervals for analysis by gas chromatography. Change in gas concentration over time is used to calculate flux. This method can be utilized to measure landscape-based flux of carbon dioxide, nitrous oxide, and methane, and to estimate differences between treatments or explore system dynamics over seasons or years. Infrastructure requirements are modest, but a comprehensive experimental design is essential. This method is easily deployed in the field, conforms to established guidelines, and produces data suitable to large-scale GHG emissions studies.  相似文献   
13.
Agricultural lands occupy about 40–50% of the Earth's land surface. Agricultural practices can make a significant contribution at low cost to increasing soil carbon sinks, reducing greenhouse gas (GHG) emissions and contributing biomass feedstocks for energy use. Considering all gases, the global technical mitigation potential from agriculture (excluding fossil fuel offsets from biomass) by 2030 is estimated to be ca. 5500–6000 Mt CO2‐eq. yr?1. Economic potentials are estimated to be 1500–1600, 2500–2700 and 4000–4300 Mt CO2‐eq. yr?1 at carbon prices of up to $US20, 50 and 100 t CO2‐eq.?1, respectively. The value of the global agricultural GHG mitigation at the same three carbon prices is $US32 000, 130 000 and 420 000 million yr?1, respectively. At the European level, early estimates of soil carbon sequestration potential in croplands were ca. 200 Mt CO2 yr?1, but this is a technical potential and is for geographical Europe as far east as the Urals. The economic potential is much smaller, with more recent estimates for the EU27 suggesting a maximum potential of ca. 20 Mt CO2‐eq. yr?1. The UK is small in global terms, but a large part of its land area (11 Mha) is used for agriculture. Agriculture accounts for about 7% of total UK GHG emissions. The mitigation potential of UK agriculture is estimated to be ca. 1–2 Mt CO2‐eq. yr?1, accounting for less than 1% of UK total GHG emissions.  相似文献   
14.
15.
以3年生桃品种‘保佳红’为试材,于不同生育时期采用人工遮阴的方法,在叶片生长的不同时期分别设置100%(CK)、80%、60%、40%和20% 自然光照的5个光照强度处理,利用快速叶绿素荧光诱导动力学曲线分析技术,研究了不同光强对桃树叶片快速叶绿素荧光诱导动力学曲线及其参数的影响。结果表明:(1)桃树各生长时期的叶片最大荧光值均随着光照强度的减弱而依次升高。(2)在PSⅡ能量分配比率方面,遮阴下的叶片提高了用于电子传递的量子比率(φEo),降低了用于热耗散的的量子比率(φDo)。(3)在PSⅡ反应中心活性方面,遮阴使得单位反应中心吸收的光能(ABS/RC)、捕获的光能(TRo/RC)、用于传递电子的能量(ETo/RC)和用于热耗散的能量(DIo/RC)均下降。(4)各时期不同光强处理的最大光化学效率Fv/Fm均在中午时段出现下降,且光照强度越大,降幅越大,说明桃叶在中午会出现强光抑制。研究认为:在遮阴条件下,桃叶天线色素吸收和捕获的光能减少,PSⅡ反应中心活性降低,但其可以通过增加能量在电子传递方面的分配比率来提高对光能的利用。  相似文献   
16.
The development times and survival of immature stages in rockwool and the fecundity and longevity of adult Scatella stagnalis were determined and stage-specific life-tables constructed for the species at constant 20 and 25 °C and at a fluctuating temperature (23–34 °C, mean 28.5 °C). Development time from egg to adult decreased with temperature, being 15.9±0.1 days at 20 °C, 11.4±0.1 days at 25 °C and 10.1±0.2 days at fluctuating temperature with mean of 28.5 °C. The lower threshold for egg-to-adult development was 6.4±2.7 °C and the total quantity of thermal energy required to complete development was 212.8±.0 °C. The proportion of females in two populations studied was 0.521. High temperature increased the mortality of pupae from 7% (20 °C) and 10% (25 °C) to 29% at 28.5 °C. At 25 °C, female longevity was 15.5±0.7 days and fecundity 315±19 eggs/female (20.4 eggs/female/day). Males lived for 22.0±1.1 days. At constant 25 °C, the net reproductive rate was 126.1 female eggs/female, generation time was 18.4 days, the doubling time of the population 5.3 days, and the intrinsic rate of increase (r m) 0.263 day–1.  相似文献   
17.
为明确莱阳地区不同栽培模式下单植梨园、单植桃园、混植桃梨园的梨小食心虫Grapholitha molesta(Busck)发生规律,2009—2012年采用性诱芯法对以上果园梨小食心虫的发生规律进行探究并利用有效积温模型预测其发生代数。结果表明:梨小食心虫在莱阳地区一年可发生4代;第13代主要发生在桃园,发生时间为4—8月上旬,第4代主要发生在梨园,发生时间为8月中下旬或9月初,为害一直可持续到10月中旬。梨小食心虫在不同寄主上发生时间不同,除第一代发生比较整齐之外,其他世代发生时间不统一,尤其是梨园。单植梨园和单植桃园的梨小食心虫都能单独完成发育世代,但数量有差异。通过比较其差异显著性,单植桃园13代主要发生在桃园,发生时间为4—8月上旬,第4代主要发生在梨园,发生时间为8月中下旬或9月初,为害一直可持续到10月中旬。梨小食心虫在不同寄主上发生时间不同,除第一代发生比较整齐之外,其他世代发生时间不统一,尤其是梨园。单植梨园和单植桃园的梨小食心虫都能单独完成发育世代,但数量有差异。通过比较其差异显著性,单植桃园13代明显多于第4代,单植梨园第4代明显多于第13代明显多于第4代,单植梨园第4代明显多于第13代。  相似文献   
18.
Little is known about the combined impacts of future CO2 and temperature increases on the growth and physiology of marine picocyanobacteria. We incubated Synechococcus and Prochlorococcus under present‐day (380 ppm) or predicted year‐2100 CO2 levels (750 ppm), and under normal versus elevated temperatures (+4°C) in semicontinuous cultures. Increased temperature stimulated the cell division rates of Synechococcus but not Prochlorococcus. Doubled CO2 combined with elevated temperature increased maximum chl a–normalized photosynthetic rates of Synechococcus four times relative to controls. Temperature also altered other photosynthetic parameters (α, Φmax, Ek, and ) in Synechococcus, but these changes were not observed for Prochlorococcus. Both increased CO2 and temperature raised the phycobilin and chl a content of Synechococcus, while only elevated temperature increased divinyl chl a in Prochlorococcus. Cellular carbon (C) and nitrogen (N) quotas, but not phosphorus (P) quotas, increased with elevated CO2 in Synechococcus, leading to ~20% higher C:P and N:P ratios. In contrast, Prochlorococcus elemental composition remained unaffected by CO2, but cell volume and elemental quotas doubled with increasing temperature while maintaining constant stoichiometry. Synechococcus showed a much greater response to CO2 and temperature increases for most parameters measured, compared with Prochlorococcus. Our results suggest that global change could influence the dominance of Synechococcus and Prochlorococcus ecotypes, with likely effects on oligotrophic food‐web structure. However, individual picocyanobacteria strains may respond quite differently to future CO2 and temperature increases, and caution is needed when generalizing their responses to global change in the ocean.  相似文献   
19.
We present a new synthesis, based on a suite of complementary approaches, of the primary production and carbon sink in forests of the 25 member states of the European Union (EU‐25) during 1990–2005. Upscaled terrestrial observations and model‐based approaches agree within 25% on the mean net primary production (NPP) of forests, i.e. 520±75 g C m?2 yr?1 over a forest area of 1.32 × 106 km2 to 1.55 × 106 km2 (EU‐25). New estimates of the mean long‐term carbon forest sink (net biome production, NBP) of EU‐25 forests amounts 75±20 g C m?2 yr?1. The ratio of NBP to NPP is 0.15±0.05. Estimates of the fate of the carbon inputs via NPP in wood harvests, forest fires, losses to lakes and rivers and heterotrophic respiration remain uncertain, which explains the considerable uncertainty of NBP. Inventory‐based assessments and assumptions suggest that 29±15% of the NBP (i.e., 22 g C m?2 yr?1) is sequestered in the forest soil, but large uncertainty remains concerning the drivers and future of the soil organic carbon. The remaining 71±15% of the NBP (i.e., 53 g C m?2 yr?1) is realized as woody biomass increments. In the EU‐25, the relatively large forest NBP is thought to be the result of a sustained difference between NPP, which increased during the past decades, and carbon losses primarily by harvest and heterotrophic respiration, which increased less over the same period.  相似文献   
20.
李小兰  郝兰兰  张帆  王鸿 《西北植物学报》2022,42(12):1981-1990
基于‘丁家坝李光桃’抗寒转录组数据,采用RT PCR技术克隆桃4 香豆酸辅酶A连接酶基因(Pp4CL2),并对其进行生物信息学及转化模式植物拟南芥和烟草的抗寒分析,以解析‘丁家坝李光桃’的抗寒机制。结果显示:(1)成功克隆获得桃Pp4CL2基因(登录号:LOC18792923),其cDNA序列为1 635 bp,编码544个氨基酸残基,具有4CL基因家族保守结构域。(2)二级结构分析显示,Pp4CL2蛋白由4种状态的二级结构组成,其中α螺旋占30.51%、β 折叠占7.35%、不规则卷曲及延伸链分别占41.54%和20.59%。(3)顺式作用元件分析发现,Pp4CL2基因上游启动子区含有光、低温以及多种激素响应元件。(4)序列系统进化分析显示,桃Pp4CL2与杏(Prunus armeniaca)、欧洲甜樱桃(Prunus avium)和梅(Prunus mume)的蛋白相似性最高,分别为99.08%、97.98%和96.14%。(5)成功构建转化载体Pp4CL2 pRI101,对拟南芥和烟草进行遗传转化并通过PCR鉴定获得转基因拟南芥和烟草。(6)与野生型相比,低温胁迫下转基因拟南芥和烟草的Pp4CL2基因相对表达量高,受冷害程度轻,具有更高的渗透调节物质含量和抗氧化酶活性,对低温具有更强的耐受性。研究表明,过表达Pp4CL2基因可增强植物对低温的耐受性,推测Pp4CL2基因在‘丁家坝李光桃’响应低温胁迫过程中具有重要作用。  相似文献   
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