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101.
102.
植物在生长发育过程中不可避免地受到各种生物或非生物胁迫。硫化氢(H2S)作为一种细胞信号分子,在植物体抵御冷热、重金属、盐、干旱等各种非生物逆境胁迫及与其他信号物质的互作等方面发挥重要作用。综述了H2S在植物体中通过基因调控、改变酶活性和蛋白质的表达、硫巯基化修饰、减轻氧化应激、与信号物质的互作等抵御非生物胁迫的作用机制,并展望了H2S在植物体中抵御非生物胁迫的作用机制。 相似文献
103.
Mohamed Aït Hamza Nadine Ali Johannes Tavoillot Odile Fossati-Gaschignard Hassan Boubaker Abdelhamid El Mousadik Thierry Mateille 《BMC ecology》2017,17(1):41
Background
Root-knot nematodes (RKN) are major pest of olive tree (Olea europaea ssp. europaea), especially in nurseries and high-density orchards. Soil samples were collected from main olive growing areas of Morocco, to characterize Meloidogyne species and to discuss the contribution of biotic and abiotic factors in their spatial distribution.Results
RKN were found in 159 soil samples out of 305 from nurseries (52.1% occurrence) and in 11 out of 49 soil samples from orchards (23.2% occurrence). Biochemical and molecular characterisation (PAGE esterase and SCAR) revealed the dominance of M. javanica both in nurseries and orchards with minor presence of M. incognita only in nurseries, and M. arenaria in only one nursery. RKN were distributed on aggregated basis. Frequent presence of M. javanica in orchards might have come from nurseries. In contrast, the detection of M. incognita in nurseries alone suggests that this species could not reproduce in orchards because of either the competition with other plant-parasitic nematodes or unfit local habitats. The impact of environmental variables (climate, habitat origin and physicochemical characteristics of the substrates) on the distribution of Meloidogyne species is also discussed.Conclusion
Olive nurseries in Morocco are not able to guarantee the safety of rooted plants. As a result, olive production systems are exposed to strong RKN invasion risks. Consequently, the use of healthy substrates in nurseries may prevent plant-parasitic nematode induction in orchards.104.
Silk is very promising in the field of biomaterials as a natural biomacromolecule. Silk protein can be made into various forms of materials, including hydrogels. However, silk protein-based hydrogels have not attracted much attention due to its weak mechanical properties. Here, we report high water content silk protein-based hydrogels with tunable elasticity which were fabricated through Ru(II) mediated photochemically cross-linking tyrosine residues in regenerated silk protein. The regenerated silk protein was characterized by Fourier transform infrared spectroscopy (FTIR). The gelation kinetics of the silk protein was studied by rheology measurements. The compressive mechanical properties of the silk protein-based hydrogels was investigated using compressive tests and dynamic mechanical analysis (DMA). Compressive modulus of the hydrogels reached 349±64 MPa at 15 % strain. The fabricated silk protein-based hydrogels were also characterized by Scanning electron microscopy (SEM), revealing an interconnected porous network structure, typical of hydrogels, with an average pore size of approximately 130 μm. Finally, biocompatibility of the silk protein-based hydrogels was demonstrated through cell culture studies using a human fibroblast cell line, HFL1. The reported silk protein-based hydrogels represent a promising candidate for biomaterial applications. 相似文献
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107.
Improvement of both the tensile and impact strength of the same polymeric material has always been a great challenge for the plastic industry. The study focuses on the effect of incorporation of calcium carbonate nanoparticles (0.3 wt% to 15 wt%) into three polypropylene (PP) based matrices viz. PP homopolymer, propylene-ethylene (PP-PE) copolymer and the blend of PP:PP-PE (30:70) to improve their impact behavior without hampering the tensile strength much. A loss in both the tensile and impact properties was observed in PP based nanocomposite. However, PP-PE based nanocomposites showed a significant improvement in impact strength (47 %) at 10 wt% loading with a loss of tensile strength by 22 %. To minimize this loss a blend of PP:PP-PE (30:70) was explored as a matrix. At 10 wt% loading, this matrix showed an improvement of 30 % in impact strength whereas the tensile loss was minimized to 10 %. Further, silane coupling agent which promoted good interfacial adhesion was used for best compositions. The variation of crystalline morphology of the nanocomposites with various formulations was analyzed using differential scanning calorimetry and X-ray diffraction. 相似文献
108.
为深入认识四川冬春季参考作物蒸散量(ET0)的变化特征,利用1980—2016年四川35个气象站的逐日气象观测资料,采用泰森多边形、气候倾向率和克里金空间插值等方法对其冬春季ET0的时空变化特征进行分析,并通过敏感性和贡献率分析了ET0的变化成因。结果表明:ET0的年代际变化呈先降后增的趋势,空间上呈明显的西南高东部低的分布特征,且高值区范围持续扩大,低值区范围波动缩小。ET0的年际变化呈上升趋势,春季ET0气候倾向率和空间差异明显大于冬季,且ET0高值区与低值区空间分布受海拔高度影响明显。ET0的同一日多年平均值自初冬至初春逐渐上升,1月22日—5月2日仅有8 d的ET0值低于多年日平均值,具有明显连续的高值时段。ET0对日照时数的变化最敏感,其次是对相对湿度与平均气温,对三者均呈高敏感性。平均气温的正贡献率是引起ET0变化的主导因子,其次是相对湿度。研究时段内平均气温的升高对ET0的正效应和相对湿度的降低对ET0的负效应,超过了日照时数减少对ET0的减少效应,导致四川地区冬春季ET0呈上升趋势。 相似文献
109.
为探究影响北方冬油菜农艺性状的气象因子,以新疆自治区阿勒泰、乌鲁木齐和喀什为研究试点,选择陇油6号、陇油7号、陇油8号、天油2号、天油4号、天油7号共6个抗寒性不同的白菜型冬油菜品种为研究材料,采用适定性分析法和相关性分析法,研究气象因子对冬油菜的株高、主花序角果数、单株角果数、角粒数等农艺性状的影响。结果显示:随纬度降低越冬率增加,农艺性状变劣,其中千粒重、株高和角粒数变异系数较小,分别为5.86%、6.23%和12.63%,单株角果数的变异系数较大,为28.25%;参试品种间,强抗寒品种陇油6号和陇油7号的农艺性状变异系数较小,弱抗寒品种天油2号等变异系数较大;农艺性状与越冬率显著正相关(P<0.05),角粒数与各种气象因子的相关性均达显著水平(P<0.05);积雪天数、年降雨量和最大积雪厚度对农艺性状具有正效应,累积贡献率达到0.877,最冷月最低气温、地面极端低温、负积温和年均气温对农艺性状具有负效应,累积贡献率达到-0.871。因此,在北方寒区,选择强抗寒冬油菜品种有利于保持农艺性状稳定,获得较好产量与效益。 相似文献
110.
以3个红叶山茶品种‘红叶黑魔法’、‘黑魔法’和‘黑蛋石’为试验材料,分别测定叶片不同发育阶段叶绿素、类胡萝卜素、总花青苷含量及叶色参数L~*、a~*、b~*值,并通过相关性分析探讨叶色参数与叶片色素含量变化之间的关系。结果表明,首先,3个不同发育阶段叶片中叶绿素a、叶绿素b和类胡萝卜素含量呈上升趋势,不同品种同一发育阶段的色素含量相近。‘红叶黑魔法’和‘黑蛋石’叶片总花青苷含量在新叶展开10 d左右达到最大值,此后极显著下降,而‘黑魔法’叶片的花青苷含量则变化不大。其次,从色素比值来看,在新叶展开10 d时,花青苷的所占比值最大,‘红叶黑魔法’和‘黑蛋石’的花青苷比值分别达到87.88%和79.08%,极显著地高于叶绿素所占比值。到50 d时,花青苷比值下降至31.74%和23.68%,且3个品种花青苷含量相近,而叶绿素和类胡萝卜素比例则显著增加,这一结果较好地解释了这3个品种叶片的呈色变化,说明花青苷含量及其各种色素含量的比例变化是导致红叶山茶叶色变化的主要原因。最后,3个品种的a*值均与花青苷含量呈显著正相关,而与叶绿素a、叶绿素b、类胡萝卜素呈负相关,a~*值可作为描述红叶山茶品种叶色变化的代表性参数。 相似文献