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木本植物木质部的冻融栓塞应对研究进展   总被引:1,自引:0,他引:1       下载免费PDF全文
冻融栓塞在中高纬度地区木本植物中普遍存在。抗冻融栓塞能力对在寒冷环境中木本植物的生长和安全越冬十分关键, 这直接决定植物分布范围。冻融栓塞是由于冰中气体溶解度低, 木质部水分在低温下冷冻, 使之前水中溶解的气体逸出到导管中, 随后木质部中的冰融化又使气泡扩张而引发的栓塞现象。木质部解剖结构的差异会影响植物的抗冻融栓塞能力, 植物还可以通过调节木质部正压、代谢耗能等方式主动修复冻融栓塞, 也可通过增加树液溶质含量等逃避冷冻, 以减少低温损伤。然而, 与干旱栓塞相比, 目前对木质部冻融栓塞的形成以及植物响应和调节机制的理解不足。为此, 该文首先综述了木质部冻融栓塞的形成机制和植物的逃避、忍耐、修复等3种冻融栓塞的应对策略, 然后总结了木质部抗低温胁迫能力的生理表现、影响因子和评价指标, 并在此基础上讨论了低温抗性、干旱抗性和水力效率之间的多元权衡关系, 最后提出今后该领域中的5个优先研究问题: (1)不同植物冰冻的最低温度阈值; (2)是否存在应对低温胁迫的水力脆弱性分割机制; (3)冻融栓塞修复与代谢消耗的关系; (4)低温抗性、干旱抗性和水力效率之间的权衡关系; (5)抗冻融栓塞性状是否能够纳入经济性状谱系。  相似文献   
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The mechanism of water-stress-induced embolism of xylem was investigated in Malosma laurina and Heteromeles arbutifolia, two chaparral shrub species of southern California. We tested the hypothesis that the primary cause of xylem dysfunction in these species during dehydration was the pulling of air through the pores in the cell walls of vessels (pores in pit membranes) as a result of high tensions on xylem water. First, we constructed vulnerability-to-embolism curves for (i) excised branches that were increasingly dehydrated in the laboratory and (ii) hydrated branches exposed to increasing levels of external air pressure. Branches of M. laurina that were dehydrated became 50% embolized at a xylem pressure potential of -1.6 MPa, which is equal in magnitude but opposite in sign to the +1.6 MPa of external air pressure that caused 50% embolism in hydrated stems. Dehydrated and pressurized branches of H. arbutifolia reached a 50% level of embolism at -6.0 and +6.4 MPa, respectively. Secondly, polystyrene spheres ranging in diameter from 20 to 149 nm were perfused through hydrated stem segments to estimate the pore size in the vessel cell walls (pit membranes) of the two species. A 50% or greater reduction in hydraulic conductivity occurred in M. laurina at perfusions of 30, 42, 64 and 82 nm spheres and in H. arbutifolia at perfusions of 20 and 30 nm spheres. Application of the capillary equation to these pore diameters predicted 50% embolism at xylem tensions of -2.2 MPa for M. laurina and -6.7 MPa for H. arbutifolia, which are within 0.7 MPa of the actual values. Our results suggest that the size of pores in pit membranes may be a factor in determining both xylem efficiency and vulnerability to embolism in some chaparral species. H. arbutifolia, with smaller pores and narrower vessels, withstands lower water potentials but has lower transport efficiency. M. laurina, with wider pores and wider vessels, has a greater transport efficiency but requires a deeper root system to help avoid catastro-phically low water potentials.  相似文献   
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目的分析急性脑梗死并发肺部感染患者病原菌分布、病原菌耐药性、患者用药特征及其危险因素。方法选取2015年3月至2017年3月在我院急诊科进行住院治疗,且年龄60岁的急性脑梗死并发肺部感染患者60例为研究对象,对患者的一般资料及病原菌分布情况、耐药情况和患者用药情况进行分析。结果 60例患者中有30例出现肺部感染,感染率为50.00%。肺部感染患者中死亡4例。肺部感染患者痰液中共培养出28株病原菌,其中革兰阴性菌21株,革兰阳性菌5株,真菌2株。30例肺部感染患者共使用6种抗感染药物,其中哌拉西林/舒巴坦的使用频率最高,其次为依替米星及美罗培南。Logistic回归分析显示,病原菌分布、耐药情况和患者用药情况与患者的预后存在相关性。结论急性脑梗死并发肺部感染患者的病原菌分布、耐药情况及患者用药情况与患者的预后密切相关,应针对上述因素给予患者合理的治疗。  相似文献   
36.
Journal of Biological Physics - The paper delves into the plausibility of applying fractal, spectral, and nonlinear time series analyses for lung auscultation. The thirty-five sound signals of...  相似文献   
37.
摘要 目的:探讨SOCE对百草枯(PQ)致肺纤维化过程的具体调控作用。方法:体外培养肺泡上皮A549细胞,设置分组为对照组、PQ组和PQ+SKF96365组。对照组不作任何处理;PQ组给予800 μM的PQ溶液处理细胞24 h;PQ+SKF96365组先加入10 μM的SKF96365预处理细胞2 h,然后再加800 μM PQ处理24 h。免疫荧光检测PQ染毒后SOCE相关蛋白的活化和胞内分布、NFATc1的表达和入核情况。清洁级小鼠40只,随机分为空白对照组、PQ组、SKF96365组和PQ+SKF96365组。PQ组及PQ+SKF96365组给予百草枯(20 mg/kg)一次性腹腔注射,对照组给予等量生理盐水;SKFS96365组及PQ+SKF96365组每天腹腔注射一次10 mg/kg的SKF96365溶液,持续3天,行HE染色、Masson染色观察肺组织病理状态改变以及胶原纤维的变化情况。结果:与正常组相比,PQ染毒组STIM1蛋白活化出现寡聚化现象并且ORAI1、TRPC1膜定位显著;PQ引起细胞质内NFATc1信号向细胞核内转移,密度差异具有统计学意义(P<0.01),使用SOCE抑制剂后NFATc1信号减弱向细胞质内转移(P<0.01)。与对照组相比,PQ中毒的小鼠肺泡结构被破坏,肺间质大量胶原纤维沉积;与PQ组相比,PQ+SKF96365组肺泡结构相对完整并且间质胶原纤维沉积减少。结论:PQ中毒可活化SOCE并通过增加NFAT入核激活下游转录信号,促进肺纤维化的发生。  相似文献   
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Background

The aim of the study was to investigate how the expression of adhesion molecules changes as neutrophils migrate from the circulation to the lung and if these changes differ between non-smoking subjects and smokers with and without COPD.

Methods

Non-smoking healthy subjects (n=22), smokers without (n=21) and with COPD (n=18) were included. Neutrophils from peripheral blood, sputum and bronchial biopsies were analysed for cell surface expression of adhesion molecules (CD11b, CD62L, CD162). Serum, sputum supernatant and BAL-fluid were analysed for soluble adhesion molecules (ICAM-1, -3, E-selectin, P-selectin, VCAM-1, PECAM-1).

Results

Expression of CD11b was increased on circulating neutrophils from smokers with COPD. It was also increased on sputum neutrophils in both smokers groups, but not in non-smokers, as compared to circulating neutrophils.Serum ICAM-1 was higher in the COPD group compared to the other two groups (p<0.05) and PECAM-1 was lower in smokers without COPD than in non-smoking controls and the COPD group (p<0.05). In BAL-fluid ICAM-1 was lower in the COPD group than in the other groups (p<0.05).

Conclusions

Thus, our data strongly support the involvement of a systemic component in COPD and demonstrate that in smokers neutrophils are activated to a greater extent at the point of transition from the circulation into the lungs than in non-smokers.  相似文献   
40.

Background and Aims

Cold neutron radiography was applied to directly observe embolism in conduits of liana stems with the aim to evaluate the suitability of this method for studying embolism formation and repair. Potential advantages of this method are a principally non-invasive imaging approach with low energy dose compared with synchrotron X-ray radiation, a good spatial and temporal resolution, and the possibility to observe the entire volume of stem portions with a length of several centimetres at one time.

Methods

Complete and cut stems of Adenia lobata, Aristolochia macrophylla and Parthenocissus tricuspidata were radiographed at the neutron imaging facility CONRAD at the Helmholtz-Zentrum Berlin für Materialien und Energie, with each measurement cycle lasting several hours. Low attenuation gas spaces were separated from the high attenuation (water-containing) plant tissue using image processing.

Key results

Severe cuts into the stem were necessary to induce embolism. The formation and temporal course of an embolism event could then be successfully observed in individual conduits. It was found that complete emptying of a vessel with a diameter of 100 µm required a time interval of 4 min. Furthermore, dehydration of the whole stem section could be monitored via decreasing attenuation of the neutrons.

Conclusions

The results suggest that cold neutron radiography represents a useful tool for studying water relations in plant stems that has the potential to complement other non-invasive methods.  相似文献   
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