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71.
花房内的温湿度变化直接影响到花卉的健壮生长,以C8051F330为核心设计一款简易的花房温湿度无线自动监控系统,可对花房内的温湿度进行实时自动监控,当花房内温湿度指标超过设定值时,系统发出声光报警。该系统温度测量范围为-55~125℃,精度为±4℃;相对湿度测量范围为10%~90%,精度为±5%。经测试,系统运行稳定,...  相似文献   
72.
以3份优质粳稻品种为供试材料,研究了3种低温预处理和9个激素处理组合对离体花药培养的影响。结果表明:供试材料花药对低温预处理的响应存在明显差异,对激素处理组合的响应也存在一定差异。  相似文献   
73.
根据水分的高低,对新收购的高水分玉米分别储存在露天囤和高大平房仓中,将露天囤里的玉米通风降水后转入高大平房仓储存,再对玉米通风降温,并采取仓房密封、悬挂防晒网、空调控温等配套措施控制粮温,期间采取磷化铝多次补药熏蒸杀灭粮堆内害虫及霉菌,使玉米安全度夏。  相似文献   
74.
ABSTRACT

The objective of this study was to examine the effect of late planting on sucrose metabolism in cotton bolls and the relationship to fiber properties and within-boll yield components. Two cotton lines A201 and A705 were employed in a sowing date experiment where two temperature regimes during boll maturation period were created at mean daily temperature of 26.8°C, 28.3°C for early planting and 25.2°C, 23.1°C for late planting in 2016 and 2017, respectively. Boll size, seed mass per boll, seed index and fiber length were increased, and lint percentage was decreased by late planting. Greater cell wall invertase activity and the resultant hexose concentration in fibers were observed in late planting, and thus led to decreased osmotic potential accounting for the enhanced fiber length. Similarly, late planting increased the maximum of vacuolar invertase activity in ovules occurring at 5 days post anthesis (DPA) and hexose concentrations in embryos from 10 DPA afterwards which may favor embryo cell division, and thus increase final seed size. Our data indicate that acid invertase and hexose are implicated in the formation of within-boll yield components and fiber properties as affected by the lower temperature regime due to late planting.  相似文献   
75.
为探讨低温胁迫下降香黄檀的生理变化,筛选降香黄檀耐寒产地和向北引种栽培推广提供依据。通过来自8个不同产地的降香黄檀幼苗进行人工模拟先降温再复温处理,测定分析降香黄檀幼苗叶片的细胞膜透性、保护酶活性和激素等10个生理生化指标的变化规律,并通过方差分析、多重比较、主成分分析等方法筛选抗寒性能力强的产地降香黄檀。结果表明,8个产地降香黄檀叶片的REC、MDA含量和POD、SOD和CAT活性随着胁迫温度的降低而升高。低温胁迫下ABA显著>对照,GA3、IAA和ZR减少。运用主成分分析和隶属函数法综合评价结果表明,8个不同产地降香黄檀抗寒能力大小依次为四川乐山、浙江温州、贵州罗甸、广东怀集、广东韶关、广西崇左、广东高要、海南尖峰。通过低温驯化,可以适当增强降香黄檀幼苗的耐寒能力。  相似文献   
76.
中国南方喀斯特地区干草调制受限于诸多自然因素,客观上阻碍了该类地区草食畜牧业的发展,本研究在喀斯特典型地区贵州毕节撒拉溪示范区选取扁穗雀麦(Bromus cartharticus)、高羊茅(Festuca elata)、鸭茅(Dactylis glomerata)、菊苣(Cichorium intybus)、紫花苜蓿(Medicago sativa)、白三叶(Trifolium repens)、红三叶(T.pratense)、多年生黑麦(Lolium perenne)8种牧草进行田间自然晾晒,记录各时间段牧草的重量、空气温度和湿度,并对历年该地区气候进行浅析,重点分析近3年来4、5、6、7月份的最高温和最低温变化,通过对该地区8种主要栽培牧草的干燥过程和水分散失规律的研究,结合多年降水和气温变化规律,分析该地区调制干草的可行性,以期为喀斯特地区畜牧业的发展提供一些数据支撑。结果表明,1)4种禾本科牧草的干燥速率明显优于3种豆科牧草和菊苣;2)从外观评价角度出发,白三叶、红三叶、菊苣均不适合进行牧草晾晒;3)在选择的影响指标中,对干草晾晒的影响程度表现为晾晒时间空气湿度温度;4)综合分析各气候因子,在贵州毕节地区7月份最适合进行干草调制;5)干草调制具备可观的经济收益。  相似文献   
77.
张瑜  严琳玲  罗小燕  白昌军 《种子》2017,(11):44-48
以自然高温胁迫下的11份蝴蝶豆为材料,研究叶片厚度、叶绿素值、叶片含水量、电导率值和丙二醛(MDA)含量等外观和生理指标与对照的差异,隶属函数分析结果表明:在高温胁迫下,材料C4、C6、C11的生长表现较好,在叶绿素含量、质膜透性、叶片含水量、MDA含量中的综合反应均较好,相比其它8个材料具有较好的相对耐高温特性,C1和C5的综合反应较弱,为热敏材料.  相似文献   
78.
Flowering time is the most critical developmental stage in wheat, as it determines environmental conditions during grain filling. Thirty-five spring durum genotypes carrying all known allele variants at Ppd-1 loci were evaluated in fully irrigated field experiments for three years at latitudes of 41°N (Spain), 27°N (northern Mexico) and 19°N (southern Mexico). Relationships between weight of central grains of main spikes (W) and thermal time from flowering to maturity were described by a logistic equation. Differences in flowering time between the allele combination causing the earliest (GS100/Ppd-B1a) and the latest (Ppd-A1b/Ppd-B1a) flowering were 7, 20 and 18 days in Spain, northern Mexico and southern Mexico, respectively. Flowering delay drastically reduced the mean grain filling rate (R) and W at all sites. At autumn-sowing sites, an increase of 1°C in mean temperature during the first half of the grain filling period decreased W by 5.2 mg per grain. At these sites, W was strongly dependent on R. At the spring-sowing site (southern Mexico), W depended on both R and grain filling duration. Our results suggest that incorporating the allele combinations GS100/Ppd-B1a and GS105/Ppd-B1a (alleles conferring photoperiod insensitivity) in newly released varieties can reduce the negative effects of climate change on grain filling at the studied latitudes.  相似文献   
79.
80.
Methane (CH4) is a potent greenhouse gas and the huge CH4 fluxes emitted from paddy fields can prejudice the eco-compatibility of rice cultivation. CH4 production in submerged rice crops is known to be highly influenced by water temperature. Hence, lowering ponding water temperature (LPWT) could be an option to mitigate CH4 emissions from paddy environments when it is possible either to irrigate with slightly colder water or to increase ponding water depth. However, paddy soil is a complex environment in which many processes are simultaneously influenced by temperature, leading to a difficult prediction of LPWT effects. For this reason, LPWT efficiency is here theoretically investigated with a one-dimensional process-based model that simulates the vertical and temporal dynamics of water temperature in soil and the fate of chemical compounds that influence CH4 emissions. The model is validated with literature measured data of CH4 emissions from a paddy field under time-variable temperature regime. Based on modeling results, LPWT appears promising since the simulated reduction of CH4 emissions reaches about −12% and −49% for an LPWT equal to −5 °C during the ripening stage only (last 30 days of growing season, when rice is less sensitive to temperature variations) and −2 °C over the whole growing season, respectively. LPWT affects CH4 emissions either directly (decreasing methanogenic activity), indirectly (decreasing activity of bacteria using alternative electron acceptors), or both. The encouraging results provide the theoretical ground for further laboratory and field studies aimed to investigate the LPWT feasibility in paddy environments.  相似文献   
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