Temporal and Within-Sporophyte Variations in Triphenyltin Chloride (TPTCL) and Its Degradation Products in Cultivated Undaria pinnatifida [0.03%]
养殖海藻(Undaria pinnatifida)中三苯基氯化锡(TPTCl)及其降解产物的时间和同孢子变异规律研究
Xingyue Ren,Yuanyuan Zhang,Xu Gao et al.
Xingyue Ren et al.
The accumulation pattern of TPTCL and its degradation products seems closely related to nutrient allocation in U. pinnatifida.
Nutrient allocation patterns of Picea crassifolia on the eastern margin of the Qinghai-Tibet Plateau [0.03%]
青海河南蒙古族自治县白桦沟大果圆柏林营养物质分布格局研究
Jingjing Wu,Liang Jiao,Xichen Che et al.
Jingjing Wu et al.
It can provide a basis for decision making for the conservation and sustainable use of forest ecosystems in mountains to understand the stoichiometric properties and nutrient allocation strategies of major tree species....However, the plant nutrient allocation strategies under different environmental gradients in forest systems of arid and semi-arid mountains are not fully understand....Therefore, three typical regions in the Qilian Mountains on the eastern edge of the Qinghai-Tibet Plateau were selected based on precipitation and temperature gradients, and the stoichiometric characteristics and nutrient allocation strategies of Qinghai spruce (Picea crassifolia) of the dominant tree...The results showed that (1) the stoichiometric characteristics of plant tissues were different in the three regions. (2) The importance of each tissue in the plant nutrient allocation varied in different regions, showing that the plant roots are more important in the warm-wet region, while the plant...leaves, branches and trunks are more important in the transition and hot-dry regions. (3) The influencing factors affecting plant nutrient allocation strategies were inconsistent across regions, which showed that plant nutrient allocation strategies in the warm-wet and transition region were mainly influenced
Unraveling plant adaptation to nitrogen limitation from enzyme stoichiometry aspect in Karst soils: a case study of Rhododendron Pudingense [0.03%]
从酶化学计量学角度解析喀斯特植物适应缺氮的问题——以紫花杜鹃为例
Haodong Wang,Baoxian Huang,Hongjiu Zhao et al.
Haodong Wang et al.
The study highlighted the substantial impact of Total Nitrogen (TN) and N-acquiring enzymes (NAE) on nutrient allocation within the components of R. pudingense....Overall, the research demonstrated that N was the primary limiting factor in the study area's soil, and R. pudingense's nutrient allocation strategy was closely associated with N limitations in the karst microenvironment.
Intake and growth histories modulate bone morphology, microarchitecture, and mineralization in juvenile green turtles (Chelonia mydas) [0.03%]
饵料和生长历史调节绿海龟的骨骼形态、微观结构和矿化程度
Morgan C Abell,José A Sánchez Hernández,Robin Bast et al.
Morgan C Abell et al.
We examined the possibility that changes in nutrient allocation to bone structure during realimentation facilitated CG in previously food-restricted turtles. Restoration of bone lengths was prioritized over restoration of bone widths during CG....Shifts in nutrient allocation away from certain bone attributes during food restriction that were not rectified when food availability increased probably provided an energy surplus that enhanced the conversion of food to growth and thus powered the CG response.
Haiyang Gong,Yuan Niu,Karl J Niklas et al.
Haiyang Gong et al.
These findings may hold significant implications for predicting plant nutrient allocation strategies in response to environmental changes.
Metabolic reprogramming, autophagy, and ferroptosis: Novel arsenals to overcome immunotherapy resistance in gastrointestinal cancer [0.03%]
代谢重组、自噬和铁死亡:克服胃肠癌免疫治疗抵抗的新武器
Xiangwen Wang,Liwen Zhou,Hongpeng Wang et al.
Xiangwen Wang et al.
These processes redefine the nutrient allocation blueprint between cancer cells and immune cells, facilitating tumor immune evasion, which critically impacts the therapeutic efficacy of immunotherapy for gastrointestinal cancers.
C:N:P stoichiometry of plants, soils, and microorganisms: Response to altered precipitation [0.03%]
植物、土壤和微生物的C/N/P计量学对变化降水的响应
Jiwei Li,Lei Deng,Josep Peñuelas et al.
Jiwei Li et al.
Although altered precipitation affects above- and belowground C:N:P stoichiometry, considerable uncertainties remain regarding plant-microbial nutrient allocation strategies under increased (IPPT) and decreased (DPPT) precipitation.
Honey bee retinue workers respond similarly to queens despite seasonal differences in Queen Mandibular Pheromone (QMP) signaling [0.03%]
蜂后随从工蜂对蜂后的反应相似,尽管季节性蜂后下颌腺信息素(QMP)信号存在差异
Mark J Carroll,Nicholas J Brown,Zachary Ruetz et al.
Mark J Carroll et al.
In terms of reproductive quality, queens did not differ over the months in matedness (spermatheca sperm storage) or physiological age (protein carbonyl content), but varied in nutrient allocation to reproductive and non-reproductive tissues.
Inner bark vs sapwood is the main driver of nitrogen and phosphorus allocation in stems and roots across three tropical woody plant communities [0.03%]
内树皮和边材是驱动三个热带木本植物群落中茎和根氮磷分配的主要因素
Julieta A Rosell,Carmen R Marcati,Mark E Olson et al.
Julieta A Rosell et al.
Thought to be mainly driven by environmental conditions, nutrient allocation to woody organs, especially to living tissues, is poorly understood....To examine the role of differences in living tissues (sapwood, SW, vs inner bark, IB), organs, ecological strategies, and environmental conditions in driving nutrient allocation and scaling in woody plants, we quantified nitrogen and phosphorus in main stems and coarse roots of 45 species from three...Our results highlight the important role of IB and SW for nutrient storage, the coordination in nutrient allocation across tissues and organs, and the need to differentiate between IB and SW to understand plant nutrient allocation.
Abscisic Acid: A Potential Secreted Effector Synthesized by Phytophagous Insects for Host-Plant Manipulation [0.03%]
赤霉素:食植昆虫用来操控寄主植物的潜在分泌效应物
Stephannie Seng,Gabriela E Ponce,Peter Andreas et al.
Stephannie Seng et al.
The pervasiveness of ABA among both gall- and non-gall-inducing insects and our current knowledge of the role of ABA in plant processes suggest that insects are using ABA to manipulate source-sink mechanisms of nutrient allocation or to suppress host-plant defenses.
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