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51.
根际氧浓度对番茄幼苗生长发育的影响 总被引:3,自引:0,他引:3
为了探究设施园艺作物栽培时适宜的水气环境,采用水培试验,以河南四号和粉珍珠2个栽培番茄品种为研究对象,设置3个氧水平:低氧(0.5~2.0 mg/L)、正常氧(7.0~8.0 mg/L)和饱和氧(14.0~17.0 mg/L)处理,以不通气作为空白对照CK,研究根际不同氧浓度对番茄幼苗植株的形态生长、生物量、根系活力和光合色素的影响。结果表明,随着根际氧浓度的增加,番茄幼苗的长势越好,根系活力增加,但叶绿素含量降低。在处理末期,正常氧处理与饱和氧处理显著提高番茄幼苗的最长根长并增加番茄幼苗的干、鲜质量。其中,在18 d河南四号正常氧和饱和氧处理下总干质量比CK分别增加24.00%和74.86%,而低氧处理比CK降低3.43%;最长根长分别增加67.23%和230.55%,而低氧处理比CK降低1.63%。饱和氧处理下根系更发达健壮,地上部分长势更好,生物量积累最多。因此,在设施园艺栽培管理中,增加营养液中根际氧浓度有利于番茄生物量的积累,进而提高产量。 相似文献
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[目的] 分析黑河流域中游荒漠区沙尘暴、扬沙以及浮尘频次和时长的月变化和年变化,并分析其与主要气候因子的关系,为区域沙尘天气的早期预警和荒漠区的经营和管理提供依据。[方法] 利用黑河流域红沙窝荒漠化综合防治试验站的2010—2019年的沙尘天气监测数据和气象数据进行分析。[结果] 沙尘频次和时长主要集中在春季,其次是冬季,春冬两季的频次和时长各占全年的82.3%和79.4%。10 a间沙尘暴和扬沙频次总体变化趋势逐渐减少,而浮尘频次总体变化趋势逐年增加;沙尘时长总体变化趋势逐年增加。沙尘频次月变化与土壤湿度(10 cm)和大气湿度之间呈极显著负相关(p<0.01),与风速之间呈极显著正相关(p<0.01)。扬沙年际发生频次与土壤温度(5 cm)之间呈显著负相关(p<0.05),与大气温度之间呈极显著负相关(p<0.01)。[结论] 近10 a来,黑河流域中游荒漠区的沙尘天气主要发生在春季和冬季,破坏性较大的沙尘暴和扬沙逐年减少,而浮尘逐年增加。沙尘频次的月变化主要影响因素是浅层土壤湿度、大气湿度和风速。春季的浅层土壤湿度影响了沙尘暴和扬沙年际频次变化,浅层土壤温度影响了浮尘年际频次变化;冬季的浅层土壤温湿度和降水量影响了沙尘暴的年际频次变化,浅层土壤温度和大气温度影响了扬沙的年际频次变化。 相似文献
54.
Specific ion effects (Hofmeister effects) have recently attracted the attention of soil scientists, and it has been found that ionic non-classic polarization plays an important role in the specific ion effect in soil. However, this explanation cannot be applied to H+. The aim of this work was to characterize the specific ion effect of H+ on variably charged soil (yellow soil) colloid aggregation. The total average aggregation (TAA) rate, critical coagulation concentration (CCC), activation energy, and zeta potential were used to characterize and compare the specific ion effects of H+, K+, and Na+. Results showed that strong specific ion effects of H+, K+, and Na+ existed in variably charged soil colloid aggregation. The TAA rate, CCC, and activation energy were sensitive to H+, and the addition of a small amount of H+ changed the TAA rate, CCC, and activation energy markedly. The zeta potential results indicated that the specific ion effects of H+, K+, and Na+ on soil colloid aggregation were caused by the specific ion effects of H+, K+, and Na+ on the soil electric field strength. In addition, the origin of the specific ion effect for H+ was its chemical adsorption onto surfaces, while those for alkali cations were non-classic polarization. This study indicated that H+, which occurs naturally in variably charged soils, will dominate variably charged soil colloid aggregation. 相似文献
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从植物中提取的天然色素对pH值与金属离子浓度的敏感度不同,所受影响也不同。主要选取黄皮果皮色素、赤豆皮色素、柑桔皮色素、勾儿茶果、红雪茶色素,来测定pH值对它们的影响。选取,黄皮果皮色素、赤豆皮色素、勾儿茶果色素、红雪茶色素来测定金属离子浓度对他们的影响,从而探讨这些色素对pH值与金属离子的稳定性。 相似文献
57.
对圆口铜鱼(Coreius guichenoti)精浆离子和氨基酸成分及精液生理特性进行了检测分析。结果显示,圆口铜鱼精液pH值为7.3,呈弱碱性;精液浓度为39.7%,精子密度为5.3×10~9个/mL;精浆离子以Na~+含量88.7 mmol/L最高,其次是K~+,之后为Ca~(2+)、Mg~(2+)、Zn~(2+)、Cu~(2+);精浆水解氨基酸总量为2 872.69μmol/100mL,其中以脯氨酸含量最高,蛋氨酸、酪氨酸和组氨酸含量最低。该结果填补了圆口铜鱼繁殖生物学的相关数据,为圆口铜鱼规模化人工繁育提供了基础资料。 相似文献
58.
Y. Sun F. Liu M. Bendevis S. Shabala S.‐E. Jacobsen 《Journal of Agronomy and Crop Science》2014,200(1):12-23
Quinoa (ChenopodiumquinoaWilld.) is a highly nutritious Andean seed crop which shows great potential to grow under a range of hostile environments. The objective of this study was to investigate the differences of drought tolerance of a Bolivian (Achachino) and a Danish (Titicaca) variety, and especially drought‐related adaption strategies. Soil water status was expressed as the fraction of transpirable soil water (FTSW). Relative stomatal conductance (RSC), relative transpiration (RT) and relative leaf water potential (RLW) were calculated by determining stomatal conductance, transpiration rate and leaf water potential of the drought‐treated plants relative to those of fully irrigated plants. The responses of RSC, RT and RLW to decreasing FTSW were described by a linear‐plateau model. The critical value of FTSW was the threshold of FTSW where the parameters studied decreased. The thresholds increased CS for stomatal conductance, CT for transpiration and CLfor leaf water potential. Achachino showed significantly lower CT and CL when compared with Titicaca, implying that transpiration and leaf water potential were less affected under mild drought conditions in the Bolivian variety. CS in Achachino was significantly higher than CL and CT, which indicated that stomatal conductance declined before transpiration and leaf water potential were reduced. Such difference was found in Titicaca where reduction of leaf area had more effect on transpiration than stomatal closure. Slower growth rate and smaller leaf area in combination with a lower stomatal conductance was found to contribute to drought resistance in Achachino. ABA concentration in the xylem sap tended to increase in both varieties after 2 days onset of drought, prior to decline in leaf water potential. Titicaca showed significantly (P < 0.05) higher ABA concentration when compared with Achachino under both fully irrigated and drought conditions. Titicaca had higher xylem nutrient concentration in comparison with Achachino in both fully‐watered and drought plants at day 2 after onset of soil drying. It was concluded that Titicaca was more sensitive to progressive drought than Achachino which avoided water loss by means of lower growth rate and smaller leaf area. 相似文献
59.
研究不同铝水平胁迫(0、50、100、200、400 mmol/L)对橡胶树幼苗过氧化物酶(POD)、超氧化物歧化酶(SOD)、丙二醛(MDA)、叶绿素含量、叶片相对电导率及幼苗地上部与地下部铝含量变化的影响。结果表明,铝胁迫均使橡胶树幼苗生理指标产生一定的变化。在200 mmol/L和400 mmol/L铝水平下橡胶苗叶片POD活性和SOD活性先上升后下降至胁迫前甚至为0;MDA含量则大量增加,而且越来越高;叶绿素总量、叶绿素a和叶绿素b随胁迫时间的推移呈下降趋势,且铝浓度越大下降趋势越明显;相对电导率随胁迫时间的推移均呈现上升趋势,介于60%~100%之间,超过细胞质膜死亡的阈值;橡胶苗地下部铝含量分别约为地上部铝含量的3倍、2倍、1.3倍。不同铝水平胁迫处理中,随着铝浓度越高、胁迫时间越长对橡胶树幼苗生理指标的影响越大。其中在200 mmol/L铝水平下叶片相对电导率大于50%,达到叶片细胞膜透性阈值,MDA则大量增加,SOD和POD急速上升后下降,叶绿素含量极少。因而认为橡胶树幼苗的最高铝耐受浓度为200 mmol/L,地下部铝含量的耐受量为6.2 mg/g,地上部的耐受量为2.9 mg/g。 相似文献
60.