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81.
林婉奇  薛立 《生态学报》2020,40(12):4188-4197
土壤微生物是有机物分解和养分循环的主要介质,因此在维持土壤的功能多样性和持续性方面发挥着关键作用。气候变化驱动因素会影响土壤微生物的生理活动,引起其群落结构和功能多样性的改变,并对生物地球化学循环和气候―生态系统反馈产生连锁效应,其中氮沉降和降水是全球气候变化的研究热点。土壤氮(N)的有效性有可能通过改变微生物的群落组成以调节微生物对降水变化的响应,但目前关于N沉降和降水及其交互作用对土壤微生物群落功能多样性的影响机制仍不清楚。为了准确预测未来气候条件下生态系统的功能状况,需要更好地了解土壤微生物对环境变化的响应。基于BIOLOG技术综述了氮沉降和降水变化及其交互作用对土壤微生物功能多样性影响的相关研究进展,可以为进一步研究全球气候变化背景下地下生态学的发展提供参考。另外,分析阐述了当前工作中存在的一些主要瓶颈,并对未来的研究热点进行了探讨和展望。  相似文献   
82.
为了明确鄂西南木林子亚热带山地常绿落叶阔叶混交林的短期群落动态,为该区森林生态的保护、恢复与可持续经营提供科学依据。该研究基于木林子自然保护区2.2 hm2动态监测样地,以2014和2019年样地内所有胸径(DBH)≥1 cm的木本植物为研究对象,从物种组成与多样性、重要值、死亡率、补员率及胸径等方面分析了其动态变化。结果表明:(1)5年间2.2 hm2样地内木本植物个体从17 308株减少到16 533株,降幅为4.48%,胸高断面积31.42 m2·hm-2增长到35.53 m2·hm-2,物种增加了1科6属18种,消失1属7种。 乔木、亚乔木、灌木及藤本4类生长型物种的Margalef丰富度指数均上升,而Pielou均匀度指数均下降;除乔木外其他3种生长型的Shannon Wiener多样性指数和Simpson指数均上升。(2)补员个体1 269株,平均胸径2.44 cm,胸高断面积为0.32 m2·hm-2,平均新增115.36 株·hm-2·a-1,隶属39科59属99种;死亡个体2 044株,平均胸径3.32 cm,胸高段面积为1.31 m2·hm-2,平均死亡185.82 株·hm-2·a-1,隶属51科90属146种;不同径级补员与死亡个体数差异明显,总体上随着径级的增大而减少。(3)46个主要物种中有15种重要值增大,有31种降低,增加与降低的变化幅度为乔木层>灌木层>亚乔木层;平均胸径从4.70 cm上升为5.12 cm,除锥栗(Castanea henryi)平均胸径有所下降外其他物种均上升。(4)主要树种中有44个为增长型种群,另外2个物种种群增长率不变,主要物种年补员率大于年死亡率,不同生长型物种及其不同径级的死亡率与补员率不同,不同径级补员率总体大于死亡率;随着径级的增大,补员率与死亡率的差值逐渐降低趋于平缓。研究认为,该群落物种组成与多样性及主要物种的重要值、平均胸径变化幅度较小,未发生明显波动,主要物种不同径级的更新动态有所差别,但不剧烈,因此整个群落外貌基本保持不变,发展较为稳定。  相似文献   
83.
Global climatic fluctuations governed the ancestral demographic histories of species and contributed to place the current population status into a more extensive ecological and evolutionary context. Genetic variations will leave unambiguous signatures in the patterns of intraspecific genetic variation in extant species since the genome of each individual is an imperfect mosaic of the ancestral genomes. Here, we report the genome sequences of 20 Branchiostoma individuals by whole‐genome resequencing strategy. We detected over 140 million genomic variations for each Branchiostoma individual. In particular, we applied the pairwise sequentially Markovian coalescent (PSMC) method to estimate the trajectories of changes in the effective population size (Ne) of Branchiostoma population during the Pleistocene. We evaluated the threshold of sequencing depth for proper inference of demographic histories using PSMC was ≥25×. The PSMC results highlight the role of historical global climatic fluctuations in the long‐term population dynamics of Branchiostoma. The inferred ancestral Ne of the Branchiostoma belcheri populations from Zhanjiang and Xiamen (China) seawaters was different in amplitude before the first (mutation rate = 3 × 10?9) or third glaciation (mutation rate = 9 × 10?9) of the Pleistocene, indicating that the two populations most probably started to evolve in isolation in their respective seas after the first or third glaciation of the Pleistocene. A pronounced population bottleneck coinciding with the last glacial maximum was observed in all Branchiostoma individuals, followed by a population expansion occurred during the late Pleistocene. Species that have experienced long‐term declines may be especially vulnerable to recent anthropogenic activities. Recently, the industrial pollution and the exploitation of sea sand have destroyed the harmonious living environment of amphioxus species. In the future, we need to protect the habitat of Branchiostoma and make full use of these detected genetic variations to facilitate the functional study of Branchiostoma for adaptation to local environments.  相似文献   
84.
To understand arbuscular mycorrhizal (AM) fungi resources and develop AM fungal species in ornamental plants with saline-alkaline tolerances, Iris lactea, which grows in the Songnen saline-alkaline grassland with a high ornamental value, was selected as the experimental material, and the colonization characteristics of its roots and the AM fungal diversity in its rhizosphere were explored. The results of the observations and calculations of mycorrhizae from ten different samples showed that AM fungi colonized the roots of I. lactea and formed Arum-type mycorrhizal structures. There was a significant correlation between soil spore density and pH value, while the colonization rate showed a fluctuating trend with increasing pH values. The observed colonization intensities were of Levels II (1%–10%) or III (11%–50%), and the vesicle abundances were of grades A2 or A3 among different sites. AM fungi produced a large number of mycelia and vesicles in the roots of I. lactea after colonization. Thirty-seven species belonging to 15 genera of AM fungi were isolated from the rhizosphere of I. lactea and identified by morphological identification. Funneliformis and Glomus were the dominant genera, accounting for 21.79% and 20.85% of the total number, respectively. F. mosseae and Rhizophagus intraradices were isolated in all samples with importance values of 58.62 and 51.19, respectively. These results are expected to provide a theoretical basis for the analysis of the salt tolerance mechanism of I. lactea and for the discovery, exploration and further screening of AM fungal resources with salinity tolerances in saline-alkaline soils.  相似文献   
85.
Huang  Xing-Qi  Wang  Lin-Juan  Kong  Meng-Juan  Huang  Na  Liu  Xin-Ya  Liang  Han-Yu  Zhang  Jia-Xin  Lu  Shan 《Protoplasma》2021,258(2):371-378

Chloroplasts are semi-autonomous organelles, with more than 95% of their proteins encoded by the nuclear genome. The chloroplast-to-nucleus retrograde signals are critical for the nucleus to coordinate its gene expression for optimizing or repairing chloroplast functions in response to changing environments. In chloroplasts, the pentatricopeptide-repeat protein GENOMES UNCOUPLED 1 (GUN1) is a master switch that senses aberrant physiological states, such as the photooxidative stress induced by norflurazon (NF) treatment, and represses the expression of photosynthesis-associated nuclear genes (PhANGs). However, it is largely unknown how the retrograde signal is transmitted beyond GUN1. In this study, a protein GUN1-INTERACTING PROTEIN 1 (GIP1), encoded by At3g53630, was identified to interact with GUN1 by different approaches. We demonstrated that GIP1 has both cytosol and chloroplast localizations, and its abundance in chloroplasts is enhanced by NF treatment with the presence of GUN1. Our results suggest that GIP1 and GUN1 may function antagonistically in the retrograde signaling pathway.

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86.
87.
诺如病毒是导致人类急性胃肠炎的主要食源性致病原,由于变异快且缺乏稳健的体外细胞培养体系及小动物感染模型,限制了我们对该病原体的深入研究。近年来,可培养鼠源诺如病毒的发现、人源诺如病毒肠道细胞培养体系的开发,以及诺如病毒反向遗传操作体系的构建为系统研究该病原提供了有力工具,加深了我们对其复制机制、致病机理、病毒-宿主相互作用等的了解。本文主要综述了反向遗传学技术用于诺如病毒研究的工作进展,并讨论了该技术在诺如病毒分子病毒学研究、药物筛选和疫苗制备中的应用及发展前景,以期为诺如病毒防控策略的制定及药物靶点的挖掘提供有益参考,推进我国食品安全风险防控工作。  相似文献   
88.
Shao  Xiao  Liu  Zhaozheng  Liu  Shanshan  Lin  Na  Deng  Yue 《Molecular and cellular biochemistry》2021,476(4):1783-1795
Molecular and Cellular Biochemistry - Non-coding RNAs (ncRNAs) have shown to act as crucial mediators in atherosclerosis (AS) development. The purpose of our study was to explore the role of...  相似文献   
89.
Zhou  Rongmiao  Li  Yan  Wang  Na  Niu  Chaoxu  Huang  Xi  Cao  Shiru  Huo  Xiangran 《Molecular biology reports》2021,48(2):1485-1491
Molecular Biology Reports - DNA repair system plays a crucial role in maintaining genomic integrity and stability and in protecting against cancer. Poly(ADP-ribose) polymerase 1 (PARP1) functions...  相似文献   
90.
Zhang  Jing  Song  Na  Liu  Yuzhi  Guo  Junwei 《Neurochemical research》2021,46(3):638-647
Neurochemical Research - Alzheimer’s disease (AD) is a common neurodegenerative disease associated with deposition of β-amyloid peptide (Aβ). Platycodin D (PLD), a...  相似文献   
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