ANNALS OF APPLIED BIOLOGY应用生物学纪事

ANNALS OF APPLIED BIOLOGY(英文缩写 ANN APPL BIOL),ISSN 0003-4746,eISSN 1744-7348,中文译名:应用生物学纪事 是一本学术期刊。本页汇总该期刊的最新影响因子、分区信息以及最新收录于 PubMed 的文献,帮助您快速了解期刊全貌。

2026 年数据 · 影响因子
2.100
JCR 分区
Q2
CAS 分区
B3
近一年发文量
0
本站 PubMed 收录统计

发文量统计区间:2025-09-27 至 2026-09-27,按本站收录文献的发表日期统计。

ISSN: 0003-4746 · eISSN: 1744-7348 · 缩写: ANN APPL BIOL ·中文: 应用生物学纪事

期刊介绍

选择期刊介绍栏目

期刊简介

《应用生物学纪事》是一本历史悠久的国际期刊,聚焦农业、园艺、林业及环境生物学的应用基础研究。主要发表病虫害防治、作物生理、土壤生态、生物技术等领域的原创论文与综述,读者群为植物科学家、农技推广人员及生态学者。

研究方向

涵盖作物与林木的病虫害管理、植物-微生物互作、生物防治、农药毒理、土壤健康及气候变化对农业生态系统的影响。论文类型包括原创研究、短通讯、综述及方法学文章,强调田间与实验室结合的实证研究。

期刊特色

研究取向注重应用性与生态可持续性,论文通常包含多环境验证或长期数据。适合农业院校师生、植保站研究人员及关注粮食安全的政策制定者。对理论创新要求适中,但强调结果对生产实践的指导价值。

投稿难度

投稿难度中等偏上,因期刊对田间数据完整性和统计严谨性要求较高。建议准备时突出研究对实际生产问题的解决贡献,并补充多地点或多年份验证。若仅限室内实验,需强化机制解释与应用潜力。

历年影响因子趋势

JCR 数据年份影响因子JCR 分区
20212.766Q2
20222.600Q2
20232.200Q2
20241.800Q2
20252.100Q2

ANNALS OF APPLIED BIOLOGY 最新收录文献

  1. JCR分区: Q2 CAS分区: B3 影响因子: 2.1

    1. {"_":"A semiochemical view of the ecology of the seed beetle Say (Coleoptera: Chrysomelidae, Bruchinae).","i":["Acanthoscelides obtectus"]}

    作者:
    József Vuts, Stephen J Powers, Eudri Venter, Árpád Szentesi
    日期:
    2024-01-01

    The dried bean beetle, , is an economically important pest of stored legumes worldwide. Tracking the human-aided dispersion of its primary hosts, the beans, it is now widespread in most bean-growing areas of the tropics and subtropics. In temperate regions where it can only occasionally overwinter in the field, proliferates in granaries, having multiple generations a year. Despite its negative impact on food production, no sensitive detection or monitoring tools exist, and the reduction of local populations still relies primarily on inorganic insecticides as fumigating agents. However, in the quest to produce more nutritious food more sustainably and healthily, the development of environmentally benign crop protection methods is vital against . For this, knowledge of the biology and chemistry of both the host plant and its herbivore will underpin the development of, among others, chemical ecology-based approaches to form an essential part of the toolkit of integrated bruchid management. We review the semiochemistry of the mate- and host-finding behaviour of and provide new information about the effect of seed chemistry on the sensory and behavioural ecology of host acceptance and larval development.

  2. JCR分区: Q2 CAS分区: B3 影响因子: 2.1

    2. {"_":"A review of sources of resistance to turnip yellows virus (TuYV) in species.","i":["Brassica"]}

    作者:
    Kyle Macleod, Shannon F Greer, Lawrence E Bramham, Ricardo J G Pimenta, Charlotte F Nellist, Dieter Hackenburg, Graham R Teakle, Guy C Barker, John A Walsh
    日期:
    2023-11-01

    Turnip yellows virus (TuYV; previously known as beet western yellows virus) causes major diseases of species worldwide resulting in severe yield-losses in arable and vegetable crops. It has also been shown to reduce the quality of vegetables, particularly cabbage where it causes tip burn. Incidences of 100% have been recorded in commercial crops of winter oilseed rape () and vegetable crops (particularly ) in Europe. This review summarises the known sources of resistance to TuYV in (AACC genome), (AA genome) and (CC genome). It also proposes names for the quantitative trait loci (QTLs) responsible for the resistances, (), that have been mapped to at least the chromosome level in the different species. There is currently only one known source of resistance deployed commercially (). This resistance is said to have originated in and was introgressed into the A genome of oilseed rape via hybridisation with to produce allotetraploid (AACC) plants that were then backcrossed into oilseed rape. It has been utilised in the majority of known TuYV-resistant oilseed rape varieties. This has placed significant selection pressure for resistance-breaking mutations arising in TuYV. Further QTLs for resistance to TuYV (-) have been mapped in the genomes of , and and are described here. QTLs from the latter two species have been introgressed into allotetraploid plants, providing for the first time, combined resistance from both the A and the C genomes for deployment in oilseed rape. Introgression of these new resistances into commercial oilseed rape and vegetable brassicas can be accelerated using the molecular markers that have been developed. The deployment of these resistances should lessen selection pressure for resistance-breaking isolates of TuYV and thereby prolong the effectiveness of each other and extant resistance.

  3. JCR分区: Q2 CAS分区: B3 影响因子: 2.1

    3. Incidence of RNA viruses infecting taro and tannia in East Africa and molecular characterisation of dasheen mosaic virus isolates.

    作者:
    Dawit B Kidanemariam, Amit C Sukal, Adane D Abraham, Joyce N Njuguna, Francesca Stomeo, James L Dale, Anthony P James, Robert M Harding
    日期:
    2022-03-01

    Taro () and tannia ( sp.) plants growing in 25 districts across Ethiopia, Kenya, Tanzania and Uganda were surveyed for four RNA viruses. Leaf samples from 392 plants were tested for cucumber mosaic virus (CMV), dasheen mosaic virus (DsMV), taro vein chlorosis virus (TaVCV) and Colocasia bobone disease-associated virus (CBDaV) by RT-PCR. No samples tested positive for TaVCV or CBDaV, while CMV was only detected in three tannia samples with mosaic symptoms from Uganda. DsMV was detected in 40 samples, including 36 out of 171 from Ethiopia, one out of 94 from Uganda and three out of 41 from Tanzania, while none of the 86 samples from Kenya tested positive for any of the four viruses. The complete genomes of nine DsMV isolates from East Africa were cloned and sequenced. Phylogenetic analyses based on the amino acid sequence of the DsMV CP-coding region revealed two distinct clades. Isolates from Ethiopia were distributed in both clades, while samples from Uganda and Tanzania belong to different clades. Seven possible recombination events were identified from the analysis carried out on the available 15 full-length DsMV isolates. Nucleotide substitution ratio analysis revealed that all the DsMV genes are under strong negative selection pressure.

  4. JCR分区: Q2 CAS分区: B3 影响因子: 2.1

    4. {"_":"South West and North Central Nigeria: Assessment of cassava mosaic disease and field status of and .","i":["African cassava mosaic virus","East African cassava mosaic virus"]}

    作者:
    Angela O Eni, Oghenevwairhe P Efekemo, Olabode A Onile-Ere, Justin S Pita
    日期:
    2021-05-01

    Cassava mosaic disease (CMD), caused by cassava mosaic begomoviruses (CMBs), is a major threat to cassava production in Nigeria. The predominant CMBs in Nigeria are African cassava mosaic virus (ACMV), East African cassava mosaic virus (EACMV) and East African cassava mosaic Cameroon virus (EACMCV), which are transmitted through infected stem cuttings and whitefly vectors. This study was conducted in 2015 and 2017 to assess the epidemiology of CMD and the current distribution of CMBs in cassava farms in South West (SW) and North Central (NC) Nigeria. A survey of cassava farms was undertaken, and samples representative of disease symptoms were collected and assessed using molecular techniques. A total of 184 and 328 cassava farms were sampled in 2015 and 2017, respectively. CMD incidence for both regions surveyed was 43.80 and 12.25% in 2015 and 2017, respectively. Fields in SW recorded a higher incidence rate in 2015 (SW: 45.11%, NC: 42.47%), while the reverse occurred in 2017 (SW: 10.90%, NC: 14.01%). Overall, the CMD incidence in Benue State (NC) was significantly higher than other locations surveyed in both years. CMD symptom severity and mean whitefly population were higher in SW Nigeria in the two survey years. ACMV was widespread across both zones, occurring in 79.1% (453/613) and 54.8% (386/704) of cassava leaf samples analysed in 2015 and 2017, respectively. EACMV was detected in only 6.0% (37/613) and 4.7% (33/704) of all cassava leaf samples analysed in 2015 and 2017, respectively. Overall, a higher proportion of infected samples were found in NC in both 2015 (NC: 85.2%, SW: 75.4%) and 2017 (NC: 73.6%, SW: 45.2%). Detection using strain-specific primers revealed that 97% of EACMV positive samples were indeed infected by the EACMCV strain of the virus. As previously reported, samples with mixed infections showed a higher symptom severity than samples with single ACMV or EACMV infections. This study provides an update to the distribution of CMBs in SW and NC Nigeria and will be useful in development of monitoring and management strategies for the disease in both regions.

  5. JCR分区: Q2 CAS分区: B3 影响因子: 2.1

    5. Cereal asparagine synthetase genes.

    作者:
    Sarah Raffan, Nigel G Halford
    日期:
    2021-01-01

    Asparagine synthetase catalyses the transfer of an amino group from glutamine to aspartate to form glutamate and asparagine. The accumulation of free (nonprotein) asparagine in crops has implications for food safety because free asparagine is the precursor for acrylamide, a carcinogenic contaminant that forms during high-temperature cooking and processing. Here we review publicly available genome data for asparagine synthetase genes from species of the Pooideae subfamily, including bread wheat and related wheat species ( and spp.), barley () and rye () of the Triticeae tribe. Also from the Pooideae subfamily: brachypodium () of the Brachypodiae tribe. More diverse species are also included, comprising sorghum () and maize () of the Panicoideae subfamily and rice () of the Ehrhartoideae subfamily. The asparagine synthetase gene families of the Triticeae species each comprise five genes per genome, with the genes assigned to four groups: 1, 2, 3 (subdivided into 3.1 and 3.2) and 4. Each species has a single gene per genome in each group, except that some bread wheat varieties (genomes AABBDD) and emmer wheat (; genomes AABB) lack a group 2 gene in the B genome. This raises questions about the ancestry of cultivated pasta wheat and the B genome donor of bread wheat, suggesting that the hybridisation event that gave rise to hexaploid bread wheat occurred more than once. In phylogenetic analyses, genes from the other species cluster with the Triticeae genes, but brachypodium, sorghum and maize lack a group 2 gene, while rice has only two genes, one group 3 and one group 4. This means that , the most highly expressed asparagine synthetase gene in wheat grain, has no equivalent in maize, rice, sorghum or brachypodium. An evolutionary pathway is proposed in which a series of gene duplications gave rise to the five genes found in modern Triticeae species.

  6. JCR分区: Q2 CAS分区: B3 影响因子: 2.1

    6. {"_":"Characterisation of bird cherry-oat aphid ( L.) behaviour and aphid host preference in relation to partially resistant and susceptible wheat landraces.","i":["Rhopalosiphum padi"]}

    作者:
    Beant Singh, Amma Simon, Kirstie Halsey, Smita Kurup, Suzanne Clark, Gudbjorg Inga Aradottir
    日期:
    2020-09-01

    The bird cherry-oat aphid ( L.) is a major pest of wheat ( L.) and can cause up to 30% yield losses. Heritable plant resistance to aphids is both an economically and ecologically sound method for managing aphids. Here we report how the behaviour and performance of differs on two resistant, one susceptible wheat landrace and a susceptible elite wheat variety. Feeding behaviour differed among the genotypes, with aphids on resistant lines spending longer in the pathway phase and less time phloem feeding. These behaviours suggest that both inter- and intracellular factors encountered during pathway and phloem feeding phases could be linked to the observed aphid resistance. Locomotion and antennal positioning choice tests also revealed a clear preference for susceptible lines. Although feeding studies revealed differences in the first probe indicating that the resistance factors might also be located in the peripheral layers of the plant tissue, scanning electron microscopy revealed no difference in trichrome length and density on the surface of leaves. Aphids are phloem feeders and limiting the nutrient uptake by the aphids may negatively affect their growth and development as shown here in lower weight and survival of nymphs on resistant genotypes and decreased reproductive potential, with lowest mean numbers of nymphs produced by aphids on W064 (54.8) compared to Solstice (71.9). The results indicate that resistant lines markedly alter the behaviour, reproduction and development potential of and possess both antixenosis and antibiosis type of resistance.

  7. JCR分区: Q2 CAS分区: B3 影响因子: 2.1

    7. Acrylamide in food: Progress in and prospects for genetic and agronomic solutions.

    7. 食品中的丙烯酰胺:遗传和农艺解决方案的进展和前景
    作者:
    Sarah Raffan, Nigel G Halford
    日期:
    2019-11-01

    Acrylamide is a processing contaminant and Group 2a carcinogen that was discovered in foodstuffs in 2002. Its presence in a range of popular foods has become one of the most difficult problems facing the food industry and its supply chain. Wheat, rye and potato products are major sources of dietary acrylamide, with biscuits, breakfast cereals, bread (particularly toasted), crispbread, batter, cakes, pies, French fries, crisps and snack products all affected. Here we briefly review the history of the issue, detection methods, the levels of acrylamide in popular foods and the risk that dietary acrylamide poses to human health. The pathways for acrylamide formation from free (non-protein) asparagine are described, including the role of reducing sugars such as glucose, fructose and maltose and the Maillard reaction. The evolving regulatory situation in the European Union and elsewhere is discussed, noting that food businesses and their suppliers must plan to comply not only with current regulations but with possible future regulatory scenarios. The main focus of the review is on the genetic and agronomic approaches being developed to reduce the acrylamide-forming potential of potatoes and cereals and these are described in detail, including variety selection, plant breeding, biotechnology and crop management. Obvious targets for genetic interventions include asparagine synthetase genes, and the asparagine synthetase gene families of different crop species are compared. Current knowledge on crop management best practice is described, including maintaining optimum storage conditions for potatoes and ensuring sulphur sufficiency and disease control for wheat.

  8. JCR分区: Q2 CAS分区: B3 影响因子: 2.1

    8. Factors influencing reversion from virus infection in sweetpotato.

    作者:
    Alexander Ssamula, Anthony Okiror, Liat Avrahami-Moyal, Yehudit Tam, Victor Gaba, Richard W Gibson, Amit Gal-On, Settumba B Mukasa, Peter Wasswa
    日期:
    2019-01-01

    Viruses limit sweetpotato () production worldwide. Many sweetpotato landraces in East Africa are, however, largely virus-free. Moreover, some plants infected by the prevalent Sweet (SPFMV) may be able to revert to virus-free status. In this study, we analysed reversion from SPFMV, (SPCSV) and using the indicator plant and PCR/reverse-transcriptase PCR. We also investigated environmental factors (temperature and soil nutrients) that may influence reversion from virus infection. We tested reversion in the East African cultivars New Kawogo, NASPOT 1 and NASPOT 11, and the United States cultivars Resisto and Beauregard. Reverted plants were asymptomatic and virus was undetectable in assayed parts of the plant. After graft inoculation, only the East African cultivars mostly reverted at a high rate and from most viruses though cultivar Beauregard fully reverted following sap inoculation with None of the tested cultivars fully reverted from single or double infections involving SPCSV, and reversion was only observed in co-infections involving potyviruses. Root sprouts derived from SPFMV-reverted plants were also virus free. Reversion generally increased with increasing temperature and by improved soil nutrition. Overall, these results indicate variation in reversion by cultivar and that the natural ability of sweetpotato plants to revert from viruses is malleable, which has implications for both breeding and virus control.

  9. JCR分区: Q2 CAS分区: B3 影响因子: 2.1

    9. {"_":"Biological control of bacterial plant diseases with strains selected for their broad-spectrum activity.","i":["Lactobacillus plantarum"]}

    作者:
    Núria Daranas, Gemma Roselló, Jordi Cabrefiga, Irene Donati, Jesús Francés, Esther Badosa, Francesco Spinelli, Emilio Montesinos, Anna Bonaterra
    日期:
    2019-01-01

    The use of lactic acid bacteria (LAB) to control multiple pathogens that affect different crops was studied, namely, pv. in kiwifruit, pv. in and in strawberry. A screening procedure based on in vitro and assays of the three bacterial pathogens was successful in selecting potential LAB strains as biological control agents. The antagonistic activity of 55 strains was first tested in vitro and the strains CC100, PM411 and TC92, and CM160 and CM209 were selected because of their broad-spectrum activity. The biocontrol efficacy of the selected strains was assessed using a multiple-pathosystem approach in greenhouse conditions. L. plantarum PM411 and TC92 prevented all three pathogens from infecting their corresponding plant hosts. In addition, the biocontrol performance of PM411 and TC92 was comparable to the reference products (Bacillus amyloliquefaciens D747, QST713, chitosan, acibenzolar-S-methyl, copper and kasugamycin) in semi-field and field experiments. The in vitro inhibitory mechanism of PM411 and TC92 is based, at least in part, on a pH lowering effect and the production of lactic acid. Moreover, both strains showed similar survival rates on leaf surfaces. PM411 and TC92 can easily be distinguished because of their different multilocus sequence typing and random amplified polymorphic DNA profiles.

  10. JCR分区: Q2 CAS分区: B3 影响因子: 2.1

    10. Searching for wheat resistance to aphids and wheat bulb fly in the historical Watkins and Gediflux wheat collections.

    作者:
    G I Aradottir, J L Martin, S J Clark, J A Pickett, L E Smart
    日期:
    2017-03-01

    Insect pests can reduce wheat yield by direct feeding and transmission of plant viruses. Here we report results from laboratory and field phenotyping studies on a wide range of wheat, including landraces from the Watkins collection deriving from before the green revolution, more modern cultivars from the Gediflux collection (north-western Europe) and modern UK Elite varieties, for resistance to the bird cherry-oat aphid, Rhopalosiphum padi (Homoptera: Aphididae) and the English grain aphid, Sitobion avenae (Homoptera: Aphididae). A total of 338 lines were screened for R. padi and 340 lines for S. avenae. Field trials were also conducted on 122 Watkins lines to identify wheat bulb fly, Delia coarctata, preference on these landraces. Considerable variation was shown in insect performance among and within different wheat collections, with reduced susceptibility in a number of varieties, but phenotyping did not identify strong resistance to aphids or wheat bulb fly. Field trials showed within collection differences in aphid performance, with fewer aphids populating lines from the Watkins collection. This differs from development data in laboratory bioassays and suggests that there is a pre-alighting cue deterring aphid settlement and demonstrates differences in aphid preference and performance on older plants in the field compared with seedlings in the laboratory, highlighting the need for phenotyping for aphid resistance at different plant growth stages. No association was identified between performance of the different insect species on individual varieties, potentially suggesting different nutritional requirements or resistance mechanisms.

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指标接近的期刊