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21.
以不同栽培代数的木麻黄(第1代FCP、第2代SCP、第3代TCP)根际土壤为试验材料,运用BIOLOG微平板和磷脂脂肪酸(PLFA)技术分析根际土壤微生物群落结构和功能多样性对多代连栽响应。结果表明,不同代数的土壤微生物对各类碳源的利用程度存在显著差异,连栽后木麻黄根际土壤微生物对碳源利用率显著下降。在6类碳源中,除胺类外,其他5种碳源均呈现FCP>SCP>TCP。PLFA分析共检测到11种PLFA生物标记,FCP土壤微生物PLFA生物标记总量明显高于SCP和TCP,3个代数土壤中含量最高的PLFA生物标记是i16:0、a15:0和18:1ω9c。土壤中特征微生物含量差异明显,细菌分布量最大,其次是真菌和放线菌。随栽植代数增加,细菌含量减少,真菌含量增加。土壤微生物群落多样性指数均呈现FCP>TCP>SCP,与土壤理化性质变化密切相关。可见木麻黄连栽显著影响其根际土壤微生物群落结构与功能,因此根际土壤微生态失衡可能是导致木麻黄连栽障碍的重要因素。 相似文献
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Susanna Price 《Asia Pacific viewpoint》2019,60(2):191-204
The realisation that climate change might necessitate resettlement of people displaced initially raised interest in the experience of development‐forced displacement and resettlement (DFDR). Looking back, in 1980 the first international policy on involuntary resettlement was approved to address perceived weaknesses in state property and expropriation law to safeguard people in the way of development projects. Since then international policy and praxis have brought global attention to developmentally displaced people but have not guaranteed them an effective safeguard. Recently, renewed attention has focussed on state legal and governance frameworks substantively and procedurally. Identifying four key policy objectives that resonate with climate change displacement I analyse their treatment in a data base of DFDR laws and regulations from 40 Asia Pacific states. This analysis finds overall little legal congruence. Innovative new formulations in some Asian state laws address recent public criticisms and research findings, but mostly are yet to demonstrate positive outcomes for displaced people. Pacific states increasingly abandon expropriation law to negotiate lease terms for public infrastructure projects with customary landowners that do not extinguish customary title. Any laws governing climate change relocations must protect rights, livelihoods, well‐being, inclusive decision‐making and community initiatives with procedures whilst not relinquishing climate‐change‐reducing action. 相似文献
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Sheng-cai QIANG Fu-cang ZHANG Miles Dyck Yan ZHANG You-zhen XIANG Jun-liang FAN 《农业科学学报》2019,18(10):2369-2380
Excessive use of nitrogen(N) fertilizers in agricultural systems increases the cost of production and risk of environmental pollution. Therefore, determination of optimum N requirements for plant growth is necessary. Previous studies mostly established critical N dilution curves based on aboveground dry matter(DM) or leaf dry matter(LDM) and stem dry matter(SDM), to diagnose the N nutrition status of the whole plant. As these methods are time consuming, we investigated the more rapidly determined leaf area index(LAI) method to establish the critical nitrogen(N_c) dilution curve, and the curve was used to diagnose plant N status for winter wheat in Guanzhong Plain in Northwest China. Field experiments were conducted using four N fertilization levels(0, 105, 210 and 315 kg ha-1) applied to six wheat cultivars in the 2013–2014 and 2014–2015 growing seasons. LAI, DM, plant N concentration(PNC) and grain yield were determined. Data points from four cultivars were used for establishing the N_c curve and data points from the remaining two cultivars were used for validating the curve. The N_c dilution curve was validated for N-limiting and non-N-limiting growth conditions and there was good agreement between estimated and observed values. The N nutrition index(NNI) ranged from 0.41 to 1.25 and the accumulated plant N deficit(N_(and)) ranged from 60.38 to –17.92 kg ha~(-1) during the growing season. The relative grain yield was significantly affected by NNI and was adequately described with a parabolic function. The N_c curve based on LAI can be adopted as an alternative and more rapid approach to diagnose plant N status to support N fertilization decisions during the vegetative growth of winter wheat in Guanzhong Plain in Northwest China. 相似文献
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Thanankorn Jaiphong Jun Tominaga Kenta Watanabe Ryuichi Suwa Masami Ueno 《Plant Production Science》2017,20(1):126-135
Sugarcane (Saccharum spp.) is an economical crop in the tropical and subtropical countries. However, because of global climate change, flooding has become problematic, particularly during the rainy season, in Thailand. We investigated the effects of floods on three commercial sugarcane cultivars, namely NiF8, U-thong 6 (UT6), and U-thong 9 (UT9), as well as Erianthus spp. Growth was assessed using a pot experiment in a glasshouse with two treatments: (1) control and (2) 60 d of flooding followed by 30 d of normal conditions. In comparison with control, during prolonged flooding, Erianthus showed greatly decreased CO2 assimilation, whereas NiF8, UT6, and UT9 showed slightly declined CO2 assimilation. Growth in plants subjected to 60 d of flooding was less influenced by floods while sucrose content was not affected except in UT6. During flooding, some roots died, resulting in plants compensating adventitious roots to offset the negative effects of root death and to assist them in maintaining their growth, which appeared from the submerged nodes, with different characteristics for each cultivar. However, 30 d after draining, roots remained damaged, while adventitious roots died, resulting in lesser growth as compared with the control, but it did not significantly affect sucrose content and sugar yield. This study suggests that sugarcane plants need to produce the adventitious roots to compensate their roots’ death during flooding and require time to recover their root system after flooding for obtaining the optimum yield and quality at harvest. 相似文献
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种植年限对设施蔬菜土壤养分和环境的影响 总被引:2,自引:0,他引:2
为了给设施蔬菜地合理施肥提供依据,研究了不同种植年限设施蔬菜地土壤理化性质、微生物数量及酶活性变化,以露地土壤为对照(CK),采集种植1 a(年)、3 a、5 a、7 a、9 a、11 a、13 a、15 a、17 a、20 a以及20 a以上的0~20 cm设施蔬菜土壤样品,采用常规土壤理化性质检测方法测定了土壤理化性质和酶活性,采用平板计数法,分析土壤微生物数量。结果表明,设施菜地种植年限与土壤容重呈正相关,与土壤孔隙度呈负相关;设施菜地土壤pH值随种植年限的增加逐年降低,两者呈显著的负相关性;土壤EC值、土壤有机质和速效磷含量都随种植年限的增加而逐年增高,并与种植年限呈显著的正相关性;与CK相比,种植13 a的蔬菜样地土壤全氮和速效钾含量均显著地增加;连续种植20 a以上,设施蔬菜土壤含盐量比对照土壤显著地增加了486.49%。土壤细菌和放线菌数量、过氧化氢酶和碱性磷酸酶活性呈现出先增加后减少的趋势,且都在种植年限为11~13 a时达到最大;真菌数量随着种植年限的增加而增加,而土壤脲酶活性则随种植年限的增加呈下降趋势;转化酶活性随着种植年限的增加保持不变。土壤微生物数量与酶活性之间存在一定程度的相关关系,其中土壤真菌数量与土壤酶活性之间的相关性最为显著。综上所述,种植年限不同的设施菜地,土壤养分失衡,呈现酸化趋势,盐分含量逐年增加,土传真菌病害潜在发生,对设施蔬菜生产不利。 相似文献
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为明确水地强筋冬小麦高产、优质、高效的灌溉技术,试验设3个灌水时期8个灌溉处理[越冬期灌1水(W1),拔节期灌1水(W2),孕穗期灌1水(W3),越冬期和拔节期灌2水(W12),越冬期和孕穗期灌2水(W13),拔节期和孕穗期灌2水(W23),越冬期、拔节期和孕穗期灌3水(W123),全生育期不灌水处理(CK)],于小麦成熟期测定籽粒产量、总蛋白及其组分含量和淀粉含量。结果表明,与不灌水的CK比较,所有灌水处理的籽粒产量、有效穗数、穗粒数、千粒重、蛋白质产量以及籽粒淀粉含量均显著增加,但籽粒的总蛋白及其组分含量均呈不同程度降低(W1处理除外)。越冬期灌水对有效穗数、籽粒产量、总蛋白及其组分含量、淀粉含量的提升作用较大;拔节期灌水对穗粒数的提升作用较大,但对淀粉含量的提升作用较小,对总蛋白及其组分含量的降低作用较大;孕穗期灌水对千粒重的提升作用较大,对蛋白质产量的提升作用较小。随着灌水次数增加,小麦籽粒产量显著提高,淀粉含量先显著提高后基本不变,而籽粒总蛋白及其组分含量降低。W123处理籽粒产量最高,其次是W13处理;W1处理籽粒蛋白质及其组分含量最高,其次是W12及W13处理;W23处理淀粉含量最高,其次是W12或W13处理。综合各项指标,最好的灌水组合是越冬期和孕穗期灌2水(W13)。 相似文献