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941.
生长在NO3^--N、NH4^--N和NH4NO3-N的香蕉叶片有相近似的最大光合速率,UV-B辐射引起生长在不同氮源的香蕉叶片光合速率、表现量子产率和光肥利用效率的降低。UV-B辐射使生长在不同氮源的植株叶面积干重和叶氮含是降低。生长在NH4^--N的植株Vcmax和Jmax均较生长在其它氮源的高。UV-B辐射引起生长在NH4^-N的植株Vcmax和Jmax降低较相同处理的NO3^--N和NH4NO3-N植株明显,表明生长在NH4^ -N的香蕉对UV-B辐射更加敏感。UV-B辐射改变植株的叶片的碳氢比和碳氮比。经过UV-B辐射处理的NH4^ -N生长植株的碳氮生长在NO3^--N和NH4NO3-N的低。UV-B辐射可能改变植株对不同氮源的吸收利用,从而引起碳氮代谢和酸碱调节的变化。UV-B辐射降低叶氮在Rubisco和生物力能学组分的分配系数,可能使这些组分合成减少,使叶片光调节的变化。UV-B辐射降低叶氮在Rubisco和生物力能学组分的分配系数,可能使这些组分合成减少,使叶片光合速率下降。结果表明,生长在不同氮源的香蕉植树对UV-B辐射有不同响应,NH4^ -N有利于主要光合参数增高,但其对UV-B辐射亦最为敏感。氮供应受限制或植株生长在中性盐如NH4NO3-N则对UV-B辐射不甚敏感。 相似文献
942.
对贵阳花溪区麦坪乡煤矿废弃地进行了野外调查, 对该地优势植物和土壤进行了采样, 测定样品As、Cd、Cu、Hg、Pb和Zn的含量, 发现当地优势植物雀稗(Paspalum thunbergii Kunth ex Steud.)地上部分Cu含量达到1058.12 mg•kg-1, 转移系数2.89, 富集系数16.07。研究了雀稗在铜离子胁迫实验中的根系活力变化和叶绿素浓度变化, 雀稗根系活力随实验进行而逐渐降低, 铜离子浓度为500 µg•mL-1的实验进行到第四周时TTC还原量达到最低值; 叶绿素浓度随着铜离子浓度的增加而缓慢降低, 进一步确认当地土著植物雀稗对铜离子有一定的耐受性。 相似文献
943.
番茄耐盐体细胞变异体的离体筛选 总被引:24,自引:3,他引:21
以上海主要栽培番茄品种“鲜丰”的下胚轴作为外植体诱导愈伤组织,用NaCl进行直接高盐胁迫和逐渐加大盐浓度胁迫筛选。研究结果表明,逐渐NaCl浓度胁迫筛选获得的耐盐性大多属生理适应性,直接高盐胁迫筛选才有可能获得真正的耐盐突变体。直接高盐胁迫筛选再生出的12株耐盐植株,在150mmol/L NaCl的盐胁迫下,幼苗的成活率可达66%,而未经胁迫筛选过的原始株成活率则为零。其中,2株耐盐突变株能正常开花、结果。其在盐胁迫培养基中芽体的生根率、鲜重及干重均显著高于原始株。 相似文献
944.
UV—B辐射增强对植物光合作用的影响及植物的相关适应性研究 总被引:32,自引:6,他引:26
综述了UV-B辐射增强对植物光合作用的影响,植物对光破坏的响应与适应性方面的国内外研究进展,许多研究表明UV-B辐射增强对植物具有破坏作用能引起植物光抑制,光氧化和光损伤,植物依靠自身修复系统而对其破坏又具有一定的适应性。 相似文献
945.
园艺植物水分胁迫生理及耐旱机制研究进展 总被引:32,自引:2,他引:30
概述了园艺植物在水分胁迫下的生理生化,分子反应及耐旱机制研究进展,并指出尚需进一步研究的问题。 相似文献
946.
种子脱水耐性及其与种子类型和发育阶段的相关性 总被引:7,自引:0,他引:7
种子脱水耐性是种子发育过程中获得的综合特性,是判断种子贮藏持性的一个重要依据。当种子获得脱水耐性时,生理,形态和结构会发生相应的变化,包括糖,蛋白质,脂类和抗氧化系统等保护性物质的合成,各种保护性物质不是单独作用的,而是协同调节种子的脱水耐性。不同的植物种子,其脱水耐性不同,并且随着种子的发育而变化。关于种子脱水耐性的获得,主要有2种观点,一种认为是数量性状,另一种认为是突变性状。种子库收集种子保存时,适时采集和适度脱水才能有效地延长种子的贮藏寿命。 相似文献
947.
小麦根系过氧化氢积累与耐盐性的关系 总被引:16,自引:0,他引:16
以抗盐性不同的2个小麦品系为材料,对其在盐胁迫下根细胞膜的膜渗透率,MDA含量,H2O2积累以及POD,SOD相对活性进行了分析和对比。结果表明:盐胁迫下抗性低的小麦品系93029#POD活性下降,导致活性氧积累而引起膜脂的过氧化作用;而抗盐性强的906#,在盐胁迫下。POD活性显著升高,没有明显的活性氧积累和膜脂过氧化现象,植物的抗盐性与其活性氧代谢和H2O2水平有关,抗必品系具有较高的清除活性氧的能力,使得H2O2浓度处于较低的水平,不对细胞造成伤害,外施Ca^2 和Vc可部分缓解盐害。 相似文献
948.
Helix aspersa hibernates in Brittany (western France), where it may experience subzero temperatures. Studies on cold hardiness, although scarce in land snails, have shown a seasonal variation in supercooling ability, associated with high temperatures of crystallization (Tc). In the present work, two key environmental factors, temperature and photoperiod, were studied to elucidate, how they may affect the enhancement of supercooling ability in the snails from the end of summer to winter. Nine groups of adult snails were acclimated to different combinations of photoperiod (LD-16:8, LD-12:12, and LD-8:16 h) and temperature (15, 10, and 5°C). Temperature of crystallization, hemolymph osmolality, and water content were measured. The results demonstrate a significant effect of the photoperiod on Tc, i.e., shorter photoperiods induce lower Tc (LD-16:8 h, mean Tc = −3.0°C, SD = 2.0; LD-12:12 h, mean Tc = −4.3°C, SD = 1.9; LD-8:16 h, mean Tc = −5.2°C, SD = 1.9; n = 90), whereas the acclimation temperature had no effect. Measurements of hemolymph osmolality and water content showed that osmolality is negatively correlated with water content. Mechanisms such as dehydration are involved in the decrease of Tc. A declining photoperiod triggers a lower Tc, long before the onset of winter conditions. This response may have an adaptive component, allowing individuals to cope with the mild winters typically observed in oceanic regions. 相似文献
949.
Loading process of sugars into cabbage petiole and asparagus shoot apex cells by incubation with hypertonic sugar solutions 总被引:1,自引:0,他引:1
Summary The freezing tolerance of cabbage petioles and asparagus shoot apexes was increased by preincubation with 0.8 M sugar solutions. In cabbage petioles with an initial freezing tolerance of –3 °C (temperature for 50% cell survival), as determined by both electrolyte leakage and fluorescein diacetate vital staining, the freezing tolerance was increased to –13 °C by incubation with sorbitol solutions for 3 h. In meristematic cells of asparagus shoot apexes with an initial freezing tolerance of –7.5 °C, as determined by fluorescein diacetate vital staining, the freezing tolerance was increased to –30 °C by incubation with 0.8 M sugar solutions for 3 h, although other cells in the shoot apexes were killed by higher freezing temperatures. During incubation of both cabbage petioles and asparagus shoot apexes with sugar solutions, sugars were intracellularly taken up by osmotically induced fluid-phase endocytotic vesicles, as indicated by comovement of Lucifer Yellows carbohydrazide (LYCH) observed with a confocal laser scanning microscope. The amounts of intracellularly taken up sugars increased concomitantly with the formation of endocytotic vesicles depending on the time of incubation in parallel with a gradual increase of freezing tolerance. However, the endocytotic vesicles and their contents were retained not only after prolonged incubation after maximum freezing tolerance had been achieved but also after recovery of these tissue cells to isotonic conditions or after freeze-thawing. These results suggest that although sugars are intracellularly taken up by endocytotic vesicles, they might be sequestered within vesicles, casting doubt on their protective role to the plasma membranes as a main site of freezing injury. The pretreatment with 1 mMp-chloromercuribenzenesulfonic acid (PCMBS), an inhibitor of sugar transport, reduced the amounts of intracellular sugar uptake without affecting the formation of endocytotic vesicles, suggesting that sugars were, at least partly, taken up by sugar transporters. In the pretreatment with PCMBS, the freezing tolerance of incubated tissues with sugar solutions was significantly reduced, although addition of PCMBS per se did not affect survival. These results suggest that sugars taken up by sugar transporters, rather than sugars taken up by endocytotic vesicles, are mainly responsible for the increased freezing tolerance of cabbage petioles and asparagus shoot apexes. Furthermore, we aimed to study the occurrence of fluid-phase endocytosis with LYCH in an isotonic condition. Our results indicated that uptake of LYCH by fluid-phase endocytotic vesicles was not detected microscopically in isotonic condition, although LYCH was spectrofluorimetrically taken up in isotonic condition. Spectrofluorimetric uptake of LYCH was inhibited by addition of probenecid, an anion transport inhibitor. These results suggest that in cabbage petioles and asparagus shoot apexes, LYCH is taken up by anion transport but not by fluid-phase endocytosis in isotonic condition, and uptake of LYCH by fluid-phase endocytosis is restricted to occur only in hypertonic condition.Abbreviations CLSM
confocal laser scanning microscope
- FDA
fluorescein diacetate
- LYCH
Lucifer Yellow carbohydrazide
- PCMSB
p-chloromercuribenzenesulfonic acid
- TEL50
temperature at which 50% electrolyte leakage occurred 相似文献
950.
大肠杆菌海藻糖合成酶基因对提高烟草抗逆性能的研究 总被引:15,自引:0,他引:15
编码大肠杆菌海藻糖合成酶的otsA基因由农杆菌介导引入野生型烟草植株并在花椰菜花叶病毒启动子序列 (CaMV35S)控制下获得表达。蒸发光散射高效液相层析法测定海藻糖实验表明 ,转基因烟草能够合成海藻糖 ,合成量达 1 4μg g叶片湿重 ;转基因烟草表现为耐盐性生长、干燥失重缓慢等抗逆表型。说明海藻糖合成酶otsA基因的引入 ,改变了烟草的糖代谢途径 ,同时也提高了植物的耐盐碱、耐干旱特性。 相似文献