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1.
Calcium (Ca) deficiency symptoms in plants often occur in agriculture; however, little is known about the mechanisms for adaptation to low-Ca conditions. To understand the mechanisms, we screened for Arabidopsis thaliana (L.) Heynh mutants sensitive to low Ca. Here, we describe one of the mutants, lcs1-1, isolated from the screen. The relative shoot growth of the mutant was reduced under the low-Ca conditions compared with the wild-type plants. Genetic mapping and genome resequencing revealed that lcs1-1 has one nonsynonymous mutation in the region of the chromosome responsible for the phenotype. The mutation is in Pleiotropic Regulatory Locus 1 (PRL1). An allelism test between lcs1-1 and a T-DNA inserted allele of prl1 demonstrates that the causal gene of lcs1-1 is PRL1. It has been reported that PRL1 is involved in sugar metabolism; however, the involvement of PRL1 in low-Ca tolerance has not been reported. Our results suggest a new insight connecting sugar metabolism with a mechanism for low-Ca tolerance in plants.  相似文献   

2.
研究了核盘茵侵染拟南芥哥伦比亚生态型(Col-O)过程中,拟南芥的发病症状、活性氧和芥子油苷组分和含量的变化,及其抗性相关基因和芥子油苷生物合成相关基因表达的变化.结果表明,在侵染过程中,拟南芥的受侵染部位出现黄色水渍状病斑,随发病时间的延长病斑逐渐扩大到整株,其相对含水量逐渐下降,相对电导率不断上升,活性氧(过氧化氢...  相似文献   

3.
为研究光照对香菇菌丝后熟转色过程中活性氧代谢的影响,通过设置自然光照条件与黑暗条件下香菇菌丝后熟转色对比试验,分析其活性氧含量、丙二醛(MDA)含量、还原型烟酰胺腺嘌呤二核苷酸磷酸(NADPH)氧化酶活性、抗氧化酶活性及自噬的差异。结果表明,自然光照条件下香菇菌丝正常后熟转色,黑暗条件下香菇菌丝不转色。自然光照条件下香菇菌丝活性氧含量、MDA含量、NADPH氧化酶活性、过氧化氢酶(CAT)活性、过氧化物酶(POD)活性均显著高于黑暗条件,超氧化物歧化酶(SOD)活性变化则与之相反。同时,香菇菌丝细胞自噬的透射电镜分析及实时荧光定量PCR(qRT-PCR)对自噬基因Atg8的表达水平分析结果表明,在自然光照条件下香菇菌丝细胞的自噬特征明显。本研究结果为优化香菇栽培的环境条件提供了一定的理论依据,也为后续对光照环境下香菇体内氧化平衡的作用机理研究提供了有效参考。  相似文献   

4.
赭曲霉毒素A(ochratoxin A,OTA)是一种分布广泛的真菌毒素,会对谷物、动物饲料、动物性食品等造成污染。OTA对多种动物具有较强的肾毒性和肝毒性,并有致畸、致突变和致癌作用。对植物的研究表明,OTA还具有植物毒性。本实验研究了植物中重要的内源信号分子水杨酸(Salicyli cacid,SA)在OTA对拟南芥(Arabidopsis thaliana)毒性中的作用。利用高效液相色谱测定了拟南芥叶片在OTA处理下SA含量的变化,结果显示,OTA胁迫促进了SA含量的上升;通过实时荧光定量PCR测定了OTA对SA途径中重要的病程相关蛋白1基因(pathogenesis-related gene1,PR1)相对表达量的影响,结果显示,OTA能诱导PR1的表达,并且这种诱导作用与OTA胁迫时间有关;SA与OTA同时处理拟南芥叶片后,观察到SA能造成OTA引起的叶片坏死斑的加重,相对电导率和活性氧含量的测定结果表明,SA能加重OTA对叶片的伤害,促进OTA诱导的活性氧的上升。本研究表明,SA参与了OTA诱导的拟南芥毒性过程,SA和OTA共同处理能增强OTA的植物毒性。  相似文献   

5.
以玉米为材料,通过营养液培养试验,研究浓度为5~100 μmol/L的镉胁迫后不同时间内,植株体内活性氧代谢及其抗氧化酶活性的变化特征,探讨镉胁迫导致植物体内活性氧自由基累积的原因及不同程度镉胁迫对植物体内活性氧代谢的影响。随着加镉量的增加,玉米地上部生物量明显降低,而根部生物量未表现出差异。镉处理降低了叶片光合作用速率,高镉处理的影响较早。镉处理4d后,5、20、和100 mol/L Cd2+浓度处理玉米叶片Fv/Fm减小,PSII系统的原初光能转换效率下降,但比光合作用速率下降的时间要晚;镉处理7d的叶片中丙二醛(MDA)含量还没有受到明显影响,但20和100 μmol/L Cd2+处理4d后,根系膜质过氧化增强,MDA含量升高。随着镉浓度升高,处理时间延长,活性氧酶清除系统包括超氧化物歧化酶(SOD)、过氧化物酶(POD)、过氧化氢酶(CAT)和谷胱甘肽还原酶(GR)等酶活性明显增加,受到镉胁迫诱导,高浓度镉处理该现象出现更早。本文试验结果表明,镉胁迫下植物体内活性氧形成增多,诱导活性氧酶清除系统活性升高,其中一个重要原因是与CO2同化受到限制有关。  相似文献   

6.
用亚精胺(Spd)处理了低氧胁迫下的黄瓜幼苗,并对根系中的活性氧及保护酶进行了检测。结果表明,低氧处理后黄瓜幼苗根系的脂质过氧化产物丙二醛(M DA)含量显著升高,活性氧生成速率含量和保护酶活性,都有一个先升后降的过程;Spd处理后,低氧胁迫下的黄瓜幼苗根系中的M DA、活性氧含量显著下降,过氧化物歧化酶(SOD)和过氧化物酶(POD)都保持较高的活性,而过氧化氢酶(CAT)活性较弱。超氧阴离子(O2-)生成速率的变化与SOD活性的变化有一定的相关性,H2O2的含量变化与过氧化物酶(POD)有一定的相关性。  相似文献   

7.
用亚精胺(Spd)处理了低氧胁迫下的黄瓜幼苗,并对根系中的活性氧及保护酶进行了检测。结果表明,低氧处理后黄瓜幼苗根系的脂质过氧化产物丙二醛(MDA)含量显著升高,活性氧生成速率含量和保护酶活性,都有一个先升后降的过程;Spd处理后,低氧胁迫下的黄瓜幼苗根系中的MDA、活性氧含量显著下降,过氧化物歧化酶(SOD)和过氧化物酶(POD)都保持较高的活性,而过氧化氢酶(CAT)活性较弱。超氧阴离子(O-2)生成速率的变化与SOD活性的变化有一定的相关性,H2O2的含量变化与过氧化物酶(POD)有一定的相关性。  相似文献   

8.
Environmental stresses present major challenges in our quest to achieve sustainable food production. The reactions of plants to environmental stresses are complex and involve many kinds of physiological and biochemical responses. Stress causes multifarious adverse effects in plants. Production of a family of reactive oxygen species (ROS) is a common phenomenon. When plants are subjected to environmental stress, the balance between the production of ROS and the quenching activity of antioxidants is upset, often resulting in an oxidative damage. Plants with high levels of antioxidant enzyme activity are reported to have greater resistance to this oxidative damage. The activities of component enzymes or the antioxidant levels are usually only double in response to many stress situations. This rather moderate response might be understood if we consider that the system is geared to self-destruction when it comes under threat. Understanding the mechanisms by which plants perceive environmental signals and transmit the signals to cellular machinery to activate adaptive responses is of fundamental importance to biology. The present review is focusing on ROS generation and plant defenses to them.  相似文献   

9.
应用RT-PCR技术研究了6个拟南芥(Arabidopsis thaliana)株系的查耳酮合成酶(CHS)基因转录对UV-B照射以及过氧化氢(H2O2)、D/L-NG -一甲基精氨酸(D-NAME、L-NAME)和2-苯基-l-4,4,4,4-四甲基咪唑啉-1-烃氧基-3-氧化物(PTIO)等化合物处理的响应。结果表明,在6个株系中,Fah1-2突变株UV-B伤害最为敏感,而野生型WS2对UV-B伤害耐受力最强;在15 μmol/m2/s UV-B照射2 h,CHS基因转录产物明显增加,但24 h后消失。H2O2对CHS基因转录没有显著作用,D-NAME 和L-NAME能抑制CHS在UV-B照射下表达转录的增加,而PTIO对CHS基因表达的抑制作用很弱。据此认为,CHS基因对UV-B照射响应的表达和转录不受NO和H2O2的调节  相似文献   

10.
Accumulation of mRNA for MT2a, a metallothionein of Arabidopsis thaliana, is known to be upregulated by excess copper (Cu). We compared the localization of the promoter activity of the MT2a gene and the accumulation site(s) of CU in the roots of transgenic A. thaliana. Open reading frame of the β-glucuronidase (GUS) gene was fused with the MT2a gene promoter and introduced into A. thaliana. Strong GUS activity was observed in the region near or within the stele in the presence of CU at a high concentration (high-CU condition). Electron probe X-ray micro-analysis demonstrated that under high-CU conditions, CU accumulated most abundantly in the cortex, where GUS activity was not significantly induced. These results indicate that the sites showing the MT2a promoter activity and CU accumulation did not coincide with each other, suggesting that CU is not a direct activator of the MT2a promoter.  相似文献   

11.
抗氧化水平对小麦幼苗耐缺铁及铁累积能力的影响   总被引:1,自引:0,他引:1  
以小麦品种"石4185"和"沧6001"为试验材料,采用水培方法,分析了抗氧化水平对小麦幼苗耐缺Fe和Fe累积能力的影响。结果表明:Fe缺乏引起小麦根部活性氧(ROS)累积,导致根部产生过氧化伤害,同时降低叶片中叶绿素含量。与"石4185"相比,"沧6001"具有相对较低的ROS水平和较高的叶绿素含量。缺Fe条件下,"沧6001"比"石4185"诱导出更多的根毛和侧根,并具有较高Fe累积。抗氧化酶活性分析结果表明,缺Fe条件下,"沧6001"比"石4185"具有更高的SOD、CAT和APX活性。在缺Fe条件下添加抗氧化剂NAC或AsA提高了幼苗中的Fe含量,表明抗氧化水平的提高促进了小麦幼苗对Fe的吸收和累积。本研究对于理解小麦对缺Fe胁迫响应的生理机制及筛选耐Fe缺乏和高Fe累积的小麦品种具有指导意义。  相似文献   

12.
Tolerance to zinc (Zn) deficiency was examined for three wheat (Triticum aestivum L.) and three barley (Hordeum vulgare L.) varieties grown in chelator‐buffered nutrient solution. Four indices were chosen to characterize tolerance to Zn deficiency: (1) relative shoot weight at low compared to high Zn supply (“Zn efficiency index”), (2) relative shoot to root ratio at low compared to high Zn supply, (3) total shoot uptake of Zn under deficient conditions, and (4) shoot dry weight under deficient conditions. Barley and wheat exhibited different tolerance to Zn deficiency, with barley being consistently more tolerant than wheat as assessed by all four indices. The tolerance to Zn deficiency in the barley varieties was in the order Thule=Tyra>Kinnan, and that of wheat in the order Bastian=Avle>Vinjett. The less tolerant varieties of both species accumulated more P in the shoots than the more tolerant varieties. For all varieties, the concentrations of Mn, Fe, Cu, and P in shoot tissue were negatively correlated with Zn supply. This antagonism was more pronounced for Mn and P than for Cu and Fe. Accumulation of Cu in barley roots was extremely high under Zn‐deficient conditions, an effect not so clearly indicated in wheat.  相似文献   

13.
14.
The role of fluorescent pseudomonads isolates (pf0, pf1, pf2, and pf3) and zinc (Zn) (0 and 5 mg kg?1 soil) interactions in alleviating salinity in pistachio seedlings were investigated. The experiment was conducted following completely randomized design with three replicates. The results revealed that salinity decreased the growth parameters, while application of PGPR (plant growth-promoting rhizobacteria) and Zn increased these parameters. Application of PGPR significantly enhanced phosphorus (P), potassium (K), calcium (Ca), magnesium (Mg), Zn, Ca/sodium (Na), and K/Na contents, while decreased the accumulation of Na and chloride (Cl). Application of PGPR and Zn increased the phenolic compounds, sucrose, membrane stability index (MSI), and relative water content (RWC) but reduced the malondialdehyde (MDA) amount. A positive correlation was observed between Zn concentrations with seedling dry weights, phenolic compounds, MSI, and RWC contents. These results indicated that the combined application of PGPR and Zn could be a simple treatment for growth and establishment of pistachio seedlings under Zn deficiency and soil salinity.  相似文献   

15.
Melatonin, known as an animal hormone and an antioxidant with a low molecular weight, is one of the most commonly used substances to improve plant resistance against various environmental stresses. However, there are no studies explaining the effects of melatonin on the relationship between defense system and mineral composition of plants under stressed and unstressed‐conditions. The present study was conducted to investigate whether the mitigating effect of melatonin is associated with its modulating influence on the mineral elements of cold‐stressed maize seedlings. The seedlings were treated with melatonin (1 mM) and cold stress (10/7°C) for 3 d separately and in combination. After 3 d, the seedlings were harvested to determine several physiological, biochemical, and molecular parameters. Melatonin application effectively mitigated the damages from cold stress, as demonstrated by higher relative water concentration, chlorophyll concentration and antioxidant enzyme activities (superoxide dismutase, guaiacol peroxidase, catalase, ascorbate peroxidase, and glutathione reductase), as well as lower superoxide, hydrogen peroxide, and malondialdehyde concentrations. Similarly, melatonin significantly ameliorated cold‐induced reductions in the concentrations of potassium, phosphorus, sulfur, magnesium, iron, copper, manganese, and zinc. Besides, it further increased calcium and boron concentrations compared to cold stress alone. Our results reveal that melatonin has an important modulating influence on the mineral element composition of plants and mitigates cold stress through up‐regulation of these elements and simultaneously enhanced antioxidant activity.  相似文献   

16.
Abstract

Litter fall and its decomposition rate play an important role in nutrient recycling, carbon budgeting and in sustaining soil productivity. Litter production and the decomposition rate were studied on commonly planted broad-leaved Eucalyptus (Eucalyptus globulus, Eucalyptus camaldulensis, Eucalyptus saligna) and coniferous (Juniperus procera, Cupressus lusitanica, Pinus patula) plantation species and compared with the adjacent broad-leaved natural forest. The production of litter was recorded by litter traps and the decomposition rate was studied by nylon net bag technique. Litter production under broad-leaved plantation species and natural forest (that varied from 9.7 to 12.6 Mg ha?1 y?1) was significantly higher (p<0.05) than that under coniferous species (that varied from 4.9 to 6.6 Mg ha?1 y?1). The average concentration of C and N in fresh mature leaves was higher than in leaf-litter fall, implying that both C and N were either sorbed in the plant system or lost through decomposition, leaching or erosion during the leaf-litter fall period. The amount of N, which potentially returned to the soil through the leaf-litter fall, tended to be higher in natural forest than in Eucalyptus plantations. The residual litter mass in the litter bag declined with time for all species. The annual dry matter decay constant (k) varied from 0.07 m?1 in Pinus patula to 0.12 m?1 in Eucalyptus saligna. The half-time (t0.5) decay varied from 6.0 for Eucalyptus saligna to 9.7 months for Pinus patula. The results suggest that the decomposition rate in Pinus patula was relatively lower than the other species and the litter production under broad-leaved Eucalyptus was comparatively higher than that in coniferous species. Overall the litter decomposition was fast for all species. The higher litter production and its relative faster rate of decomposition is a positive aspect to be considered during species selection for the restoration of degraded habitats given other judicious management practices such as prolonging the rotation period are adhered to.  相似文献   

17.
Micronutrient deficiency in cultivable soil, particularly that of iron (Fe) and zinc (Zn), is a major productivity constraint in the world. Low Fe availability due to the low solubility of the oxidized ferric forms is a challenge. An experiment was, thus, executed to assess the performance of eight genetically diverse rice genotypes on Fe-sufficient (100 µM) and Fe-deficient (1 µM) nutrient solution, and their ability to recover from Fe deficiency was measured. Fe efficiency under Fe deficiency in terms of biomass production showed a significant positive correlation with the root release of phytosiderophore (PS) (R2 = 0.62*). This study shows that the Fe deficiency tolerance of Pusa 33 was related to both a high release of PS by the root and an efficient translocation of Fe from the root to the shoot as the Fe–PS complex, which could be useful for improving the Fe nutrition of rice particularly under aerobic conditions.  相似文献   

18.
We investigated the use of boron phosphate (BPO4) as a slow‐release boron (B) source. Boron phosphate compounds were synthesized by mixing boric acid (H3BO3) and phosphoric acid (H3PO4) and heating at temperatures of 25 to 1000°C for 1 or 24 h. X‐ray diffraction (XRD) patterns and chemical analysis confirmed the formation of BPO4. The crystallinity of these compounds increased with increasing temperature and heating time. The compounds synthesized at 300°C or less were hygroscopic and clumped together, while those synthesized at 500 to 1000°C were non‐hygroscopic and free‐flowing. The solubility of these compounds was assessed at different pH and P concentrations, and compared to the solubility of ulexite and colemanite. The solubility of the BPO4 compounds decreased with increasing synthesis temperature and with decreasing pH. The solubility and the kinetics of B release from BPO4 compounds synthesized at 500 and 800°C were slower than for most commonly used B sources. Given their slow dissolution, the BPO4 compounds may have potential to continuously supply B to crops in environments where B leaching is a problem. The compounds synthesized at 500 and 800°C show potential for co‐granulation with macronutrient fertilizers such as mono‐ammonium phosphate to produce slow‐release B‐enriched granules.  相似文献   

19.
采用营养液培养方法,以改良毛粉802F1番茄为材料, 研究外源一氧化氮(NO,SNP为供体)对铜(Cu)胁迫下番茄幼苗铁(Fe)、 锌(Zn)、 锰(Mn)吸收分配的影响。结果显示, 50 mol/ L的 Cu2+ 胁迫下,番茄幼苗的生物量和株高显著降低了33.7% 和23.1%,外施100 mol/L SNP可显著缓解这种抑制作用, 提高Cu 胁迫下番茄幼苗根系、 茎中Fe、 Mn含量及叶柄、 叶片中Fe、 Zn含量,降低茎中Zn含量及叶柄、 叶片中Mn含量; 根系、 茎、 叶柄、 叶片Fe、 Zn及根系和茎中Mn的累积相应增加; 根系吸收的Fe、 Zn、 Mn向地上部的转运降低。Cu 胁迫下, 外源NO可显著提高番茄液泡、 细胞器的Fe、 Zn 含量, 降低根系和叶片细胞壁Fe、 Zn、 Mn含量。在作为转运组织的茎和叶柄中,Mn主要分布在细胞壁上,而在叶柄和叶片液泡、 细胞器中也有增加。表明外源NO可以调控番茄幼苗各部位及亚细胞中Fe、 Zn、 Mn的合理分布,维持胞质离子稳态和矿质营养元素平衡,缓解铜胁迫,保证番茄幼苗正常的生理代谢。  相似文献   

20.
A 45‐d pot experiment was carried out to investigate the response of white mustard and the soil microbial biomass after Zn and P addition to a P deficient silt loam. The underlying hypothesis was that P application reduces the Zn availability to crops and microbial biomass. White mustard was supplied with different levels of P (0, 50, and 100 µg g?1 soil) and Zn (0, 10, and 20 µg g?1 soil). Amendments of P generally reduced extractable Zn, shoot Zn and soil microbial biomass Zn. Amendments of P generally decreased the microbial biomass C/P ratio. At 20 µg Zn g?1 soil, a negative effect on the microbial biomass C/P ratio was observed, suggesting that high contents of extractable Zn have a negative impact on the microbial P uptake. However, the minimum Zn requirements of soil microorganisms and the consequences of microbial Zn deficiency for soil microbiological processes are completely unknown.  相似文献   

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