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141.
Phosphorus (P) is an essential macronutrient required for plant development and production. The mechanisms regulating phosphate (Pi) uptake are well established, but the function of chloroplast Pi homeostasis is poorly understood in Oryza sativa (rice). PHT2;1 is one of the transporters/translocators mediating Pi import into chloroplasts. In this study, to gain insight into the role of OsPHT2;1‐mediated stroma Pi, we analyzed OsPHT2;1 function in Pi utilization and photoprotection. Our results showed that OsPHT2;1 was induced by Pi starvation and light exposure. Cell‐based assays showed that OsPHT2;1 localized to the chloroplast envelope and functioned as a low‐affinity Pi transporter. The ospht2;1 had reduced Pi accumulation, plant growth and photosynthetic rates. Metabolite profiling revealed that 52.6% of the decreased metabolites in ospht2;1 plants were flavonoids, which was further confirmed by 40% lower content of total flavonoids compared with the wild type. As a consequence, ospht2;1 plants were more sensitive to UV‐B irradiation. Moreover, the content of phenylalanine, the precursor of flavonoids, was also reduced, and was largely associated with the repressed expression of ADT1/MTR1. Furthermore, the ospht2;1 plants showed decreased grain yields at relatively high levels of UV‐B irradiance. In summary, OsPHT2;1 functions as a chloroplast‐localized low‐affinity Pi transporter that mediates UV tolerance and rice yields at different latitudes.  相似文献   
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植物的功能性状变异和表型可塑性是其应对异质生境的主要机制, 对植物的生长和分布有重要贡献。本文以湖北星斗山国家级自然保护区的水杉(Metasequoia glyptostroboides)原生母树为研究对象, 分析了母树种群功能性状对树木形态、地形因子及人为干扰的响应机制。结果表明: 水杉原生母树叶面积、叶干重和比叶面积的变异幅度大, 可塑性较强, 而枝和叶的干物质含量稳定性最高。人为干扰和4个地形因子均对每个功能性状变异方差有5%-20%的解释度, 冠幅对枝、叶干物质含量的变异方差有高达38%和76%的解释度。5个功能性状主要受海拔、坡位和人为干扰影响, 其中, 比叶面积对环境因子和干扰的响应规律不明显, 叶面积和叶干重在强烈人为干扰的环境中普遍增大, 枝和叶的干物质含量对坡向的变化最敏感。总之, 水杉原生母树种群通过功能性状变异对环境能产生一定的可塑性响应, 但人为干扰对母树生长影响较大, 建议人工辅助更新, 并适度减少农业和建筑对现存母树的影响。  相似文献   
144.
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   
145.
维生素E是一种只能在光合组织中合成的脂溶性小分子有机化合物,是人体和动物营养不可缺少的重要维生素。由于植物中维生素E含量较低,人类大多处于慢性缺乏维生素E--“隐性饥饿”的状态,而动物饲料中则需要添加外源合成的维生素E以满足其营养需求。因此,提高植物中维生素E的含量是改善维生素E缺乏的重要途径之一。从维生素E的合成途径入手,详细地综述了维生素E合成关键酶基因的表达变化以及前体物质的含量变化对维生素E合成的影响,发现三烯生育酚和α-生育酚的生物强化效果较好,而生育酚总量提高受限;进而从遗传的角度探讨了维生素E合成受限的原因以及遗传上可能影响维生素E合成的其他代谢途径;最后结合可能影响维生素E合成的调控因子以及其前体物质的转运等方面为今后维生素E的生物强化提出了新的思路。  相似文献   
146.
Tissue engineering is a promising option for cartilage repair. However, several hurdles still need to be overcome to develop functional tissue constructs suitable for implantation. One of the most common challenges is the general low capacity of chondrocytes to synthesize cartilage-specific extracellular matrix (ECM). While different approaches have been explored to improve the biosynthetic response of chondrocytes, several studies have demonstrated that the nutritional environment (e.g., glucose concentration and media volume) can have a profound effect on ECM synthesis. Thus, the purpose of this study was to optimize the formulation of cell culture media to upregulate the accumulation of cartilaginous ECM constituents (i.e., proteoglycans and collagen) by chondrocytes in 3D culture. Using response surface methodology, four different media factors (basal media, media volume, glucose, and glutamine) were first screened to determine optimal media formulations. Constructs were then cultured under candidate optimal media formulations for 4 weeks and analyzed for their biochemical and structural properties. Interestingly, the maximal accumulation of proteoglycans and collagen appeared to be elicited by different media formulations. Most notably, proteoglycan accumulation was favored by high volume, low glucose-containing DMEM/F12 (1:1) media whereas collagen accumulation was favored by high volume, high glucose-containing F12 media. While high glutamine-containing media elicited increased DNA content, glutamine concentration had no apparent effect on ECM accumulation. Therefore, optimizing the nutritional environment during chondrocyte culture appears to be a promising, straight-forward approach to improve cartilaginous tissue formation. Future work will investigate the combined effects of the nutritional environment and external stimuli.  相似文献   
147.
The geographic and biological diversity of China has resulted in the differential adaptation of the eastern honeybee, Apis cerana, to these varied habitats. A. cerana were collected from 14 locations in China. Their genomes were sequenced, and nucleotide polymorphisms were identified at more than 9 million sites. Both STRUCTURE and principal component analysis placed the bees into seven groups. Phylogenomic analysis groups the honeybees into many of the same clusters with high bootstrap values (91%–100%). Populations from Tibet and South Yunnan are sister taxa and together represent the earliest diverging lineage included in this study. We propose that the evolutionary origin of A. cerana in China was in the southern region of Yunnan Province and expanded from there into the southeastern regions and into the northeastern mountain regions. The Cold‐Temperate West Sichuan Plateau and Tropical Diannan populations were compared to identify genes under adaptive selection in these two habitats. Pathway enrichment analysis showing genes under selection, including the Hippo signaling pathway, GABAergic pathway, and trehalose‐phosphate synthase, indicates that most genes under selection pressure are involved in the process of signal transduction and energy metabolism. qRT‐PCR analysis reveals that one gene under selection, the AcVIAAT gene, involved in the GABAergic pathway, is responding to cold temperature stress. Through homologous recombination, we show that the AcVIAAT gene is able to replace the CNAG_01904 gene in the fungus Cryptococcus neoformans and that it makes the fungus less sensitive to conditions of oxidative stress and variations in temperature. Our results contribute to our understanding of the evolutionary origin of A. cerana in China and the molecular basis of environmental adaptation.  相似文献   
148.
为了解广东从化温泉的原核微生物多样性及其产纤维素酶、淀粉酶的能力,选取从化3个地热区的7个温泉样点,现场测量各采样点的水体理化参数,并采集温泉水样品。利用免培养技术对从化温泉环境样品基因组的16S rRNA基因进行扩增,利用高通量测序技术,分析从化温泉环境原核微生物群落结构及多样性。同时,借助纯培养技术,对7个样点的微生物进行分离纯化,并将菌株接种于以微晶纤维素或淀粉为唯一碳源的培养基中,检测其纤维素酶、淀粉酶活性。免培养结果显示,广东从化温泉环境原核微生物群落以细菌为主,群落结构与总碳含量相关性最大。通过选择性分离培养,共获得71株细菌,分属于17个不同的属,其中有9株属于潜在新分类单元,其中67.61%有纤维素酶活性,18.31%有淀粉酶活性。广东从化温泉中存在丰富多样的原核微生物类群,且蕴藏大量具有产生纤维素酶、淀粉酶活性的菌株,极具进一步发掘和研究的价值。  相似文献   
149.
150.
Deng  Mingyang  Liu  Jianyang  He  Jialin  Lan  Ziwei  Hu  Zhiping  Yuan  Huan  Xiao  Han 《Neurochemical research》2021,46(11):2969-2978

Intracerebral hemorrhage (ICH) causes long term neurological abnormality or death. Oxidative stress is closely involved in ICH mediated brain damage. Steroid receptor cofactor 3 (SRC-3), a p160 family member, is widely expressed in the brain and regulates transactivation of Nrf2, a key component of antioxidant response. Our study aims to test if SRC-3 is implicated in ICH mediated brain injury. We first examined levels of SRC-3 and oxidative stress in the brain of mice following ICH and analyzed their correlation. Then ICH was induced in wild type (WT) and SRC-3 knock out mice and how SRC-3 deletion affected ICH induced brain damage, oxidative stress and behavioral outcome was assessed. We found that SRC-3 mRNA and protein expression levels were reduced gradually after ICH induction in WT mice along with an increase in oxidative stress levels. Correlation analysis revealed that SRC-3 mRNA levels negatively correlated with oxidative stress. Deletion of SRC-3 further increased ICH induced brain edema, neurological deficit score and oxidative stress and exacerbated ICH induced behavioral abnormality including motor dysfunction and cognitive impairment. Our findings suggest that SRC-3 is involved in ICH induced brain injury, probably through modulation of oxidative stress.

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