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大放送!生态&农业资源普查合作成果项目文章合辑

2024-05-28

生态&农业资源普查合作成果大放送(3).jpg

在全球绿色浪潮中,农业资源普查与环境生态研究成为推动可持续发展的关键。农业资源普查如同自然资产的审计师,精准揭示资源现状与潜力,为合理配置与保护提供数据支持。环境生态研究则专注于生态与农业的和谐共生,探寻减少环境影响的农业生产模式,如循环农业、生态种植等,旨在提升生产效率同时维护生态平衡。这些努力不仅守护了自然资源基础,也引领农业创新,促进经济与环境的双重收益,是实现绿色未来的重要途径。

这里为大家整理了系列精品文章,涵盖了环境生态和农业资源普查研究的常见方向,部分文章点击题目即可跳转软文(蓝色标题),快和小派一起来回顾一下吧!


目录

1.农业资源普查领域

农作物资源

园艺/林木

畜禽/水产/昆虫

2.环境生态领域

微塑料/颗粒物污染

抗生素/农药

盐胁迫/重金属


1、农业资源普查领域

⏩ 农作物资源

农业资源是粮食安全的基石。2021年启动的全国农业资源普查已全面揭示我国农业资源状况。新资源将纳入国家库,进行精准鉴定,挖掘优异资源。同时生物育种作为农业“芯片”,对解决种业瓶颈、促进粮食增产至关重要。来看看小派和研究人员们通过多组学分析为遗传机制及种质创制等方面做出了哪些贡献吧~

期刊

影响因子

标题

内容概述

Nature

64.8

THP9 enhances seed protein content and nitrogen-use efficiency in maize

THP9能提高玉米种子蛋白含量和氮素利用效率

Nature Microbiology

28.3

Phyllosphere microbiome induces host metabolic defence against rice  false-smut disease

叶际微生物诱导宿主代谢防御抵抗水稻假黑穗病

Nature Plants

18

Bacterial seed endophyte shapes disease resistance in rice

细菌种子内生菌形成水稻的抗病能力

Nature Communications

16.6

Carotenoids modulate kernel texture in maize by influencing amyloplast envelope integrity

类胡萝卜素调控玉米硬质胚乳形成新机制

Journal of Hazardous Materials

13.6

Integrating transcriptome and physiological analyses to elucidate the molecular responses of buckwheat to graphene oxide

整合转录组和生理分析,阐明荞麦对氧化石墨烯的分子反应

The Plant Cell

11.6

Maize VKS1 Regulates Mitosis and Cytokinesis during Early Endosperm Development

玉米VKS1调控胚乳早期有丝分裂和细胞分裂

Science of the Total Environment

9.8

Foliar carbon dot amendment modulates carbohydrate metabolism, rhizospheric properties and drought tolerance in maize seedling

叶面碳点修正对玉米幼苗碳水化合物代谢、土壤特性和耐旱性的影响

Science of the Total Environment

9.8

Polymer amendment regulates cadmium migration in cadmium contaminated cotton field: Insights from genetic adaptation and phenotypic plasticity

聚合物改良剂调节镉污染棉田中的镉迁移:来自遗传适应和表型可塑性的见解

New Phytologist

9.4

Host selection shapes crop microbiome assembly and network complexity

寄主选择决定了作物微生物组的组合和网络的复杂性

Environmental Pollution

8.9

Differentially-expressed genes related to glutathione metabolism and heavy metal transport reveals an adaptive, genotype-specific mechanism to Hg2+ exposure in rice (Oryza sativa L.)

水稻谷胱甘肽代谢和重金属转运相关的差异表达基因揭示了对Hg2+暴露的适应性、基因型特异性机制


⏩ 园艺/林木

园艺作物范畴广泛,涵盖果蔬、观赏及药用植物等,其遗传资源的精细解析受益于高通量测序技术的飞速发展。与此同时,面对环境挑战与生态建设需求,林木研究亦展现出新的活力。林木不仅是自然生态系统的关键组成,还在应对全球变暖、促进碳循环中扮演核心角色。小派整理了一些相关的研究案例,带你快速get文章思路。

期刊

影响因子

标题

内容概述

Molecular Plant

27.5

Genome- and transcriptome-wide association studies provide insights into the genetic basis of natural variation of seed oil content in Brassica napus

全基因组和转录组关联研究为甘蓝型油菜种子含油量自然变异的遗传基础提供了见解

Nature Communications

16.6

Characterization of two O-methyltransferases involved in the biosynthesis of O-methylated catechins in tea plant

茶树中参与邻甲基化儿茶素生物合成的两种O-甲基转移酶的特征

Plant Cell

11.6

Duality of immune recognition by tomato and virulence activity of the Ralstonia solanacearum exo-polygalacturonase PehC

番茄免疫识别的二重性及青枯菌多聚半乳糖醛酸酶外切酶PehC的毒力活性

Horticulture Research

8.7

A novel TcS allele conferring the high-theacrine and low-caffeine traits and having potential use in tea plant breeding

一种具有高苦茶碱和低咖啡因特性的新TcS等位基因,在茶树育种中具有潜在的应用价值

Frontiers in Plant Science

5.6

The genome of single-petal jasmine (Jasminum sambac) provides insights into heat stress tolerance and aroma compound biosynthesis

单瓣茉莉基因组的研究为茉莉耐高温和芳香化合物的生物合成提供了新的研究方向

Theoretical and Applied Genetics

5.4

BrKAO2 mutations disrupt leafy head formation in Chinese cabbage (Brassica rapa L. ssp. pekinensis)

BrKAO2突变破坏了大白菜叶状头的形成

Theoretical and Applied Genetics

5.4

CsUFO is involved in the formation of fowers and tendrils in cucumber

CsUFO参与黄瓜花和卷须的形成

Plants

4.7

Mapping of Two Major QTLs Controlling Flowering Time in Brassica napus Using a High-Density Genetic Map

利用高密度遗传图谱定位甘蓝型油菜控制花期的两个主要QTLs

Scientia Horticulturae

4.3

Construction of a high-density genetic map for melon using ddRAD-Seq technology from a population derived from flexuosus and reticulatus botanical groups

利用ddRAD-Seq技术构建甜瓜曲纹和网状植物群体高密度遗传图谱


⏩ 畜禽/水产/昆虫

畜禽、蜂蚕、水产养殖等作为国内农业的重要组成部分,对保障国家粮食安全、促进农村经济发展以及满足人民群众对农产品的需求具有重要意义。下面小派为大家精选了这些方向的研究案例,双手奉上,快来康康吧!

期刊

影响因子

标题

内容概述

Microbiome

15.5

Intestinal microbiome-mediated resistance against vibriosis for Cynoglossus semilaevis

肠道菌群在半滑舌鳎抗弧菌病性状形成中的机制

Microbiome

15.5

Vitamin B12 produced by Cetobacterium somerae improves host resistance against pathogen infection through strengthening the interactions within gut microbiota

益生菌调节斑马鱼肠道共生菌对宿主抵抗病原体感染的作用

Journal of Hazardous Materials

13.6

Physiological and transcriptomic changes of zebrafish (Danio rerio) embryos-larvae in response to 2-MIB exposure

2MIB毒性对胚胎生理和转录组变化

Environmental Science & Technology

11.4

Marine Dehalogenator and Its Chaperones: Microbial Duties and Responses in 2,4,6-Trichlorophenol Dechlorination

海洋脱卤剂及其伴侣:微生物在2,4,6-三氯酚脱氯中的作用和反应

Environmental Science & Technology

11.4

Multi- and Transgenerational Developmental Impairments Are Induced by Decabromodiphenyl Ethane (DBDPE) in Zebrafish Larvae

DBDPE在斑马鱼幼鱼中诱导多代和跨代发育障碍

Carbohydrate Polymers

11.2

Plasmablasts induced by chitosan oligosaccharide secrete natural IgM to enhance the humoral immunity in grass carp

壳寡糖增强鱼类体液免疫的细胞和分子机制

Science of the Total Environment

9.8

Geosmin disrupts energy metabolism and locomotor behavior of zebrafish in early life stages

土臭素破坏斑马鱼生命早期的能量代谢和运动行为

Environmental  Pollution

8.9

Effects of perchlorate and exogenous T4 on growth, development and tail resorption of Rana chensinensis

高氯酸盐和外源T4对中国林蛙生长发育和尾吸收的影响

Molecular Ecology Resources

7.7

Chromosome level assembly reveals a unique immune gene organization and signatures of evolution in the common pheasant

染色体水平装配揭示了一种独特的免疫基因组织和签名的进化在普通的野鸡

Ecotoxicology and Environmental Safety

6.8

Transcriptomic analysis reveals Apis mellifera adaptations to high  temperature and high humidity

转录组学分析揭示了意大利蜜蜂对高温和高湿度的适应性

Molecular Ecology

4.9

Population genomic insights into invasion success in the polyphagous agricultural pest,Halyomorpha halys

多食性农业害虫Halyomorpha halys入侵成功的种群基因组见解

Molecular Ecology

4.9

Polygenic adaptation contributes to the invasive success of the Colorado potato beetle

多基因适应有助于科罗拉多马铃薯甲虫的入侵成功

Biochimica et Biophysica Acta-Gene Regulatory Mechanisms

4.7

BmSUC1 is essential for glycometabolism modulation in the silkworm, Bombyx mori

BmSUC1对家蚕的糖代谢调节至关重要

BMC Genomics

4.4

Transcriptome profiling of pyrethroid resistant and susceptible mosquitoes in the malaria vector, Anopheles sinensis

疟疾媒介中华按蚊中拟除虫菊酯抗性和易感蚊的转录组分析


2

环境生态领域

⏩ 微塑料/颗粒物污染

微塑料污染遍及全球生态,激发塑料际微生物群落研究,科学界倚重微生物降解技术应对污染。同时,PM2.5等颗粒物作为大气污染重大难题,严重威胁环境与健康,研究重点转向源头治理、精密监测及健康影响,力图减轻其害。接下来,快来看看这些关于污染物微观机制和生物作用的研究案例,一起寻找保护地球的新思路吧!

期刊

影响因子

标题

内容概述

ACS Nano

17.1

Mitigates the Effects of microplastics on a ryegrass Soil–microbe–plant system

减轻微塑料对黑麦草土壤-微生物-植物系统的影响

Journal of Hazardous Materials

13.6

Microplastics change soil properties, heavy metal availability and bacterial community in a Pb-Zn-contaminated soil

微塑料改变铅锌污染土壤中的土壤性质、重金属有效性和细菌群落

Journal of Hazardous Materials

13.6

A Pseudomonas sp. strain uniquely degrades PAHs and heterocyclic derivatives via lateral dioxygenation pathways

假单胞菌通过侧向双加氧途径降解多环芳烃和杂环衍生物

Journal of Hazardous Materials

13.6

Polyester microfiber and natural organic matter impact microbial communities, carbon-degraded enzymes, and carbon accumulation in a clayey soil

聚酯超细纤维和天然有机物影响粘质土壤中的微生物群落、碳降解酶和碳积累过程

Water Research

13.4

Hydrostatic pressure drives microbe-mediated biodegradation of microplastics in surface sediments of deep reservoirs: Novel findings from hydrostatic pressure simulation experiments

微塑料特性在不同静水压条件下的微生物降解代谢途径

Science of the Total Environment

9.8

Comparison of chemical composition and airborne bacterial community structure in PM2.5 during haze and non-haze days in the winter in Guilin, China

桂林市冬季霾日与非霾日PM2.5化学成分及空气细菌群落结构比较


⏩ 抗生素/农药

抗生素和农药的普及提升了农业产出,但也引发了环境污染、生物多样性骤减和食品残留问题,威胁生态与人类健康。多组学研究正帮助科学家从分子到生态系统层析构生物对这些化合物的反应,以求减轻负面影响,守护生态健康。这里小派归纳了一些领域内多组学精品研究,一起来品品~

期刊

影响因子

标题

内容概述

Nature Microbiology

28.3

Phyllosphere microbiome induces host metabolic defence against rice false-smut disease

叶际微生物组诱导宿主代谢防御水稻稻曲病的机制

Chemical Engineering Journal

15.1

Mechanism of β-cypermethrin metabolism by Bacillus cereus GW-01

蜡样芽孢杆菌GW-01代谢β-氯氰菊酯的机理

Journal of Hazardous Materials

13.6

Multi-omics analysis reveals the influence of tetracycline on the growth of ryegrass root

多组学分析揭示了四环素对黑麦草根系生长的影响

Science of the Total Environment

9.8

Disparate toxicity mechanisms of parabens with different alkyl chain length in freshwater biofilms: Ecological hazards associated with antibiotic resistome

宏基因组揭示对羟基苯甲酸在淡水微生物的毒性机制和抗性耐药

Microbiology Spectrum

3.7

Genetic Characteristics and Microbiological Profile of Hypermucoviscous Multidrug-Resistant Klebsiella variicola Coproducing IMP-4 and NDM-1 Carbapenemases

细菌完成图助力探究高黏液性多重耐药变栖克雷伯菌的遗传特性和微生物学特征


⏩ 盐胁迫/重金属

植物生长受自然非生物胁迫、生物胁迫和人为因素影响(如盐碱地、重金属污染等)。研究盐碱和重金属对植物的影响,旨在揭示植物适应机制,发掘耐逆境品种,恢复生态,指导可持续农业,对环境保护和食品安全至关重要。那么相关的多组学研究思路有哪些可以借鉴呢?跟随小派的脚步一起来探索吧~

期刊

影响因子

标题

内容概述

Journal of Hazardous Materials

13.6

Thiobacillus spp. and Anaeromyxobacter spp. mediate arsenite oxidation-dependent biological nitrogen fixation in two contrasting types of arsenic-contaminated soils

16S扩增子和宏基因组测序揭示依赖重砷的生物固氮代谢机制

Journal of Hazardous Materials

13.6

Arsenic (As) oxidation by core endosphere microbiome mediates As speciation in Pteris vittata roots

蜈蚣凤尾蕨内生菌介导了砷污染的生态修复机制

The ISME Journal

11

Desulfurivibrio spp. mediate sulfur-oxidation coupled to Sb(V) reduction, a novel biogeochemical process

脱硫弧菌介导硫氧化耦合Sb(V)还原,是一种新的生物地球化学过程

Environ Pollut. 

8.9

Foliar-applied cerium oxide nanomaterials improve maize yield under salinity stress: Reactive oxygen species homeostasis and rhizobacteria regulation.

叶面施用氧化铈纳米材料提高盐胁迫下玉米产量:活性氧平衡和根际细菌的调节

Environmental Pollution

8.9

Differentially-expressed genes related to glutathione metabolism and heavy metal transport reveals an adaptive, genotype-specific mechanism to Hg2+ exposure in rice (Oryza sativa L.)

水稻谷胱甘肽代谢和重金属转运相关的差异表达基因揭示了对Hg2+暴露的适应性、基因型特异性机制

Horticulture Research

8.7

Dopamine  alleviates  cadmium  stress  in  apple  trees  by recruiting  beneficial  microorganisms  to  enhance  the physiological  resilience  revealed  by  high-throughput sequencing  and  soil  metabolomics

多巴胺通过招募有益微生物增强苹果树的生理恢复能力来缓解镉胁迫

Journal of Agricultural and Food Chemistry

6.1

Transcriptomic and Metabolomic Analyses Provide Insights into the Enhancement of Torulene and Torularhodin Production in Rhodotorula glutinis ZHK under Moderate Salt Conditions

盐胁迫对粘红酵母的类胡萝卜素产量的影响

Frontiers in Plant Science

5.6

H2S Regulation of Metabolism in Cucumber in Response to Salt-Stress Through Transcriptome and Proteome Analysis

硫化氢调控黄瓜耐盐性的分子机制研究