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1.
改良土壤和提高植物抗旱性是影响边坡植被恢复与重建效果的关键因子。试验选择对边坡常用植物台湾相思进行不同接种量的彩色豆马勃接种处理,接种半年后测定生长量和菌根侵染率;对菌根苗和对照苗进行自然干旱胁迫处理,测定处理前后的叶片光合指标和叶绿素荧光指标变化。结果表明:接种彩色豆马勃后,台湾相思菌根苗生长量、叶绿素含量显著大于未接种对照苗。干旱胁迫下,台湾相思Pn、Cond、Tr随着胁迫时间延长持续下降,Ci先上升后下降;F_v/F_m在胁迫前期略有上升,重度胁迫时显著下降,ΦPSII、ETR、q P持续下降。菌根苗的光合和叶绿素荧光指标的降幅均显著小于对照,同时期各指标值均显著大于对照,表明菌根接种可促进植物生长、增强植物光合效率和水分利用率,提高植物抗旱性。少量接种和多量接种均有一定促生作用,但多量接种可使根系获得更高的侵染率,对植物生长的促进和植物抗旱性的影响更为显著。  相似文献   

2.
野生大豆与栽培大豆抗旱性对接种丛枝菌根真菌的响应   总被引:1,自引:0,他引:1  
采用盆栽试验,分别对栽培大豆和野生大豆接种AM真菌进行研究,同时设不接种对照。接种和不接种处理均下设2种水分处理:植物生长期间全程正常供水和前期正常供水后期干旱处理,研究了水分胁迫下接种丛枝菌根(AM)真菌对栽培大豆和野生大豆生理生化特性的影响及菌根水孔蛋白基因GintAQPF1和GintAQPF2表达量的变化。结果表明:干旱胁迫下接种AM真菌能刺激野生大豆和栽培大豆根系伸长生长,对茎秆的促进作用并不明显;干旱胁迫下脯氨酸含量与过氧化氢酶(CAT)活性显著高于未接种对照组,其中接种AM真菌的野生大豆脯氨酸含量、CAT活性增幅最大;未接种AM真菌的栽培大豆与野生大豆丙二醛(MDA)含量与相应接种AM真菌组比显著增加;接种AM真菌的野生大豆与栽培大豆中GintAQPF1和GintAQPF2表达量均显著增加,其中野生大豆GintAQPF2表达量显著高于栽培大豆。说明接种AM真菌能够促进脯氨酸积累,增加CAT活性,提高GintAQPF1和GintAQPF2基因表达,刺激根系的伸长生长。  相似文献   

3.
干旱胁迫下冬小麦产量结构与生长、生理、光谱指标的关系   总被引:12,自引:1,他引:12  
通过控制生育期水分条件形成不同程度的干旱胁迫,对冬小麦生长、产量及生理指标和冠层高光谱反射率对干旱胁迫的反应进行监测,建立冬小麦减产率与生长、生理及冠层光谱反射率的相关模型。研究结果表明:不同生育期冬小麦干物质积累速度随水分胁迫程度的增大而减小;叶绿素含量与水分条件的关系不同于其他参数,表现为中等水分条件下叶绿素含量最大,严重水分胁迫下叶绿素含量最低;不同水分条件下光合速率呈两种不同日变化特征,且正常供水处理的光合速率明显高于严重干旱处理。光合速率和增强植被指数(EVI)同冬小麦减产率相关性较强,能够建立较好的关系模型用于小麦产量预测。  相似文献   

4.
通过温室盆栽试验研究了不同水分处理下接种3种丛枝菌根(AM)真菌(Diversispora spurcum、Glomus aggre gatum和Glomus constrictum)后对稀土矿砂中黑麦草(Lolium perenneL.)和狗牙根(Cynodon dactylon(L.)Pers.)植物株高、地上和地下部分干重及植株内Pb和Zn含量的影响。结果表明:不同水分处理下黑麦草和狗牙根与AM真菌均有一定的结合。在干旱胁迫(W1和W2)下,接种3种AM真菌均提高了黑麦草的株高、地上和地下部分干重,其中,接种Glomus aggregatum促进作用最为显著,重度干旱胁迫(W1)处理下接种后黑麦草株高、地上和地下部分干重比对照分别提高了76.16%、202.86%和481.82%;接种Glomus constrictum显著提高了狗牙根的株高、地上和地下部分干重,W1处理下狗牙根接种后的株高、地上和地下部分干重比对照分别提高了119.17%、290.63%和247.37%。接种AM真菌的植株内Pb和Zn含量与AM真菌种类、植物品种、水分处理及重金属性质等相关,在W1处理下接种Glomus constrictum显著降低了黑麦草植株内Pb的含量,而对Zn的含量影响不大;而对于狗牙根,在W1处理下接种Glomus constrictum显著增加了其Pb和Zn的含量。此外,还测定了植物叶片丙二醛和脯氨酸含量,结果显示接种AM真菌明显降低了干旱处理下黑麦草和狗牙根叶片丙二醛和脯氨酸含量,表明接种AM真菌能有效提高植物的抗逆性。  相似文献   

5.
丛枝菌根对酸枣实生苗耐盐性的影响   总被引:15,自引:4,他引:15       下载免费PDF全文
本文研究了在土中加入不同量NaCl条件下 (0、1 5、3 0、4 5gkg-1干土 )接种丛枝菌根真菌 (AMF)Glomusmosseae对盆栽酸枣 (ZizyphusspinosusHu)实生苗生长及耐盐性的影响。结果表明 ,无论接种与否 ,植株的高度、根茎叶的干鲜重均随土壤NaCl浓度的增加而降低 ,而根、茎、叶和整株的Na浓度及Na全量均随土壤NaCl浓度的增加而增大。在土壤盐浓度相同的条件下 ,接种AMF植株的生长量 (株高、鲜重、干重等 )和叶片的叶绿素含量显著高于不接种植株。接种AMF的植株茎、叶中Na浓度低于不接种植株 ,而根中Na浓度、植株Na总量显著高于不接种植株。盐浓度最大的接种处理 ,其植株生长量和叶片叶绿素含量均高于不加盐不接菌处理。播种时进行盐胁迫处理和播种后 4 0d开始进行盐胁迫处理对菌根的侵染率、植株生长的影响差异不显著。上述四种盐浓度播种时进行盐处理的接种AMF植株的总干重比不接种植株分别提高 16 4 %、14 9%、4 8%、35 % ,在播种后 4 0d进行盐处理的接种AMF的植株比不接种植株分别提高 194 %、12 7%、72 %、4 6 %。结果证明 ,酸枣实生苗具有较强的耐盐性 ,其生长对菌根真菌有很强的依赖性 ,接种菌根真菌提高了其耐盐能力。  相似文献   

6.
在灭菌的土壤条件下,对杧果实生苗进行接种 V-A 菌根菌试验。结果V-A 菌根对苗木有明显的促进生长效应,接菌的株高、茎粗、植株干物重均比对照有明显的增加,叶片叶绿素含量、光合速率、根系活力也有所提高,而且增强了植株对营养元素的吸收。  相似文献   

7.
番茄叶片叶绿素含量光谱估算模型   总被引:2,自引:0,他引:2  
以番茄品种“金粉2号”为试验材料,在玻璃温室内设置3种土壤水分胁迫水平,以正常灌溉为对照,于2013年3—7月和8—12月两个生长季对番茄进行全生育期持续处理。采用便携式地物光谱仪测定各生育期番茄冠层的光谱反射率,同步测定叶片总叶绿素和叶绿素a含量,并基于3—7月数据计算常见高光谱植被指数,分别建立番茄叶片叶绿素总量和叶绿素a估算模型,用8一12月生长季的试验数据对模拟精度进行检验。结果表明:(1)水分胁迫对番茄叶片总叶绿素、叶绿素a含量和番茄冠层光谱反射率产生明显影响,水分胁迫越严重,叶绿素总量和叶绿素a含量均越低,番茄冠层光谱反射率也越低;(2)随着生育期的推进,番茄总叶绿素和叶绿素a含量均持续增加,而冠层光谱反射率在红光和蓝光波段的反射率逐渐减少;(3)4种估算模型中R670模型的决定系数(R。)最高,效果最佳(P〈0.01),番茄叶片总叶绿素和叶绿素a最佳估算模型分别为:C_chl(a+b)=44.83R670+_670+7.36,C_chl=39.92R_670+5.12,均根方误差分别为0.45、0.42mg·g^-1,表明利用高光谱数据估算番茄叶片的叶绿素含量可行。  相似文献   

8.
利用多光谱快速准确获取棉花花铃期旱胁迫性状对棉花后期产量和纤维品质具有重要帮助。为实现棉花关键抗旱指标的快速检测,该研究以253份棉花品种为材料,设置干旱胁迫和正常灌溉2个处理,在花铃期通过大疆精灵4多光谱无人机获得图像,分析花铃期干旱胁迫和正常处理棉花的光谱反射率,结合地面调查叶绿素相对值(SPAD)和叶片含水量(LWC)数据,结合神经网络算法中的径向基函数进行模型的预测。结果显示:棉花干旱胁迫前后除红光反射值略上升,其余4个光谱均小于正常处理;通过径向基函数模型估测SPAD和LWC的最佳估测模型都为二次函数,决定系数R2分别为0.848 8和0.936 6,均方根误差RMSE分别为2.005和0.930,相对误差RE分别为0.004和0.011;将2个模型应用于试验区影像,对SPAD及LWC预测值进行聚类分析,根据SPAD聚类结果,试验棉花旱情等级划分为特旱、重旱、...  相似文献   

9.
接种丛枝菌根真菌(AMF)能显著促进大豆生长和对磷的吸收,但不同磷效率基因型大豆对AMF接种的响应还少有报道。为探究接种AMF对不同磷效率基因型大豆生长和磷转运基因表达的影响,以磷高效大豆BX10和磷低效大豆BD2为试验材料进行盆栽试验,设置接菌和不接菌处理,对大豆干重、菌根侵染性状、氮磷养分含量、根系性状,以及菌根诱导的磷转运基因表达进行了分析。结果表明, AMF接种显著促进了大豆的磷吸收,并且接菌效果存在显著的基因型差异,接种AMF显著增加了BD2的地上部干重、磷含量以及植株总磷吸收量,但只增加了BX10的地上部磷含量和总磷吸收量,对植株地上部干重没有显著影响。无论接种与否,BD2的地上部磷含量均显著高于BX10,表明磷低效的BD2具有较高的植株体内磷转运能力。不接菌条件下,两个大豆基因型根系性状无显著差异;接种AMF后BX10的根系体积和根系平均直径均显著高于BD2。BD2的菌根生长反应(MGR)和菌根磷反应(MPR)均显著高于BX10,对菌根依赖性更高。此外,在接菌处理的BD2根系,代表菌根途径磷吸收的磷转运基因GmPT8、GmPT9和GmPT10表达均显著高于BX10;相应地,BD2的总磷吸收量也显著高于BX10。以上结果表明,接种AMF对促进磷低效大豆BD2生长和磷吸收的作用更大,这可能主要是由于BD2菌根途径的磷吸收量较高,体内磷转运效率较高。以上结果将为研究AMF接种对磷吸收的贡献提供理论依据。  相似文献   

10.
水分胁迫下氮素对分蘖期小麦某些生理特性的影响   总被引:4,自引:0,他引:4  
曹翠玲  李生秀 《核农学报》2004,18(5):402-405,401
本研究结果表明 :水分胁迫且充足供氮时 ,叶片硝酸还原酶活性降幅较小 ;水分胁迫且不供氮时 ,硝酸还原酶活性几乎检测不出。水分胁迫下叶片可溶性蛋白含量和叶绿素含量均低于对照 ;根系活力在水分胁迫下均升高 ,根系还原活性在水分胁迫下显著降低。在小麦分蘖期 ,水分胁迫使根系的分布范围增大 ;氮素供给充足时 ,水分胁迫使根系干物质积累增多 ;但水分胁迫下使地上干物质积累降低 ,不供氮处理降幅更大。分蘖期的水分胁迫导致小麦收获期株高显著低于对照处理 ,不供氮处理更是明显 ;根系、地上干物质积累低于对照水平 ;不供氮处理降幅极大。分蘖期水分胁迫处理影响小麦的产量  相似文献   

11.
基于IRIV算法优选大豆叶片高光谱特征波长变量估测SPAD值   总被引:1,自引:0,他引:1  
于雷  章涛  朱亚星  周勇  夏天  聂艳 《农业工程学报》2018,34(16):148-154
在植物叶绿素特征波长变量筛选过程中,与叶绿素关系较弱的波长变量极易被忽略,导致这些弱信息变量包含叶绿素的有效信息丢失,因此,确定叶片光谱中弱信息变量对揭示叶绿素高光谱响应规律具有重要意义。该研究以江汉平原大豆鼓粒期的叶片为研究对象,采集80组大豆叶片高光谱和SPAD(soil and plant analyzer development)值,分析SPAD值与大豆叶片反射率相关关系和光谱波长变量自相关关系,基于迭代和保留信息变量法(iteratively retains informative variables,IRIV)筛选大豆叶片的特征波长变量,建立偏最小二乘回归(partial least squares regression,PLSR)和支持向量机(support vector machine,SVM)模型估测SPAD值。结果表明,大豆叶片SPAD值与光谱反射率在可见光波段具有极显著负相关,在近红外波段存在不显著的正相关性(P0.01);可见光、近红外2波段的波长变量之间相关性较弱,但2波段内变量之间的相关性较强;基于IRIV算法确定了大豆叶绿素的特征波长变量,利用特征波长变量建立的估测模型的估测能力高于仅利用强信息波长变量建立的估测模型,表明弱信息变量对估测叶片SPAD值具有重要意义;IRIV-SVM模型估测能力最优,验证集R2和相对分析误差(RPD)分别为0.73、1.82。该文尝试证明了光谱中弱信息变量的重要性,为揭示叶片高光谱响应机理提供了理论依据。  相似文献   

12.
The effect of drought stress and inoculation with an indigenous Mozambican and a commercial arbuscular mycorrhizal (AM) inoculant on root colonization and plant growth and yield was studied in two peanut (Arachis hypogaea L.) cultivars—a traditional, low-yielding Mozambican landrace (Local) and a modern, high-yielding cultivar (Falcon)—grown in a non-sterile Mozambican soil. In these cultivars, AM mycorrhizal colonization was not substantially reduced by drought stress. Growth and yield of inoculated plants subjected to drought stress were increased in comparison with non-inoculated ones. The indigenous Mozambique inoculant significantly increased leaf and root growth in both cultivars under drought stress by preventing an increase in root weight ratio (RWR) and maximum root-length to leaf-area ratio (MRLAR). The commercial Hannover inoculant had a positive effect on growth only under well-watered conditions, this result was due most likely to a lesser ability to adapt to drought conditions to which the AM fungal strains in Mozambique inoculant are frequently exposed. Such drought-stress effects on growth could be alleviated by inoculation with Mozambique inoculant, particularly because of its ability to decrease sensitivity of the host plant to reduction in leaf expansion. Therefore, an adequate management of the AM symbiosis may improve peanut productivity, particularly under drought stress and in small-scale farming systems.  相似文献   

13.
A pot experiment was carried out to study the effects of three arbuscular mycorrhizal fungi (AMF), including Glomus intraradices, Glomus constrictum and Glomus mosseae, on the growth, root colonization and Cd accumulation of marigold (Tagetes erecta L.) at Cd addition levels of 0, 5 and 50 mg kg-1 in soil. The physiological characteristics, such as chlorophyll content, soluble sugar content, soluble protein content and antioxidant enzyme activity, of Tagetes erecta L. were also investigated. The symbiotic relationship between the marigold plant and arbuscular mycorrhizal fungi was well established under Cd stress. The symbiotic relationship was reffected by the better physiobiochemical parameters of the marigold plants inoculated with the three AMF isolates where the colonization rates in the roots were between 34.3% and 88.8%. Compared with the non-inoculated marigold plants, the shoot and root biomass of the inoculated marigold plants increased by 15.2%- 47.5% and 47.8%-130.1%, respectively, and the Cd concentration and accumulation decreased. The chlorophyll and soluble sugar contents in the mycorrhizal marigold plants increased with Cd addition, indicating that AMF inoculation helped the marigold plants to grow by resisting Cd stress. The antioxidant enzymes reacted differently with the three AMF under Cd stress. For plants inoculated with G. constrictum and G. mosseae, the activities of superoxide dismutase (SOD) and catalase (CAT) increased with increasing Cd addition, but peroxidase (POD) activity decreased with increasing Cd addition. For plants inoculated with G. intraradices, three of the antioxidant enzyme activities were significantly decreased at high levels of Cd addition. Overall, the activities of the three antioxidant enzymes in the plants inoculated with AMF were higher than those of the plants without AMF inoculation under Cd stress. Our results support the view that antioxidant enzymes have a great influence on the biomass of plants, and AMF can improve the capability of reactive oxygen species (ROS) scavenging and reduce Cd concentration in plants to alleviate Tagetes erecta L. from Cd stress.  相似文献   

14.
冬小麦越冬中期冻害高光谱敏感指数研究   总被引:2,自引:0,他引:2  
利用试验箱进行冬小麦冻害盆栽试验,观测受冻前后叶片光谱反射率、叶绿素含量并分析其变化规律;通过对高光谱数据进行倒数对数、一阶导数、二阶导数变换,与叶绿素含量进行相关分析,寻找表征冻害胁迫的特征值,获得识别和评价冻害差异程度的波段或指数。结果表明,(1)在可见光范围内叶绿素含量与原始光谱反射率呈负相关,在近红外范围内呈正相关,与倒数对数光谱的相关性则相反。一阶导数光谱大部波段相关性通过0.01水平的显著性检验,二阶导数光谱仅少部分波段通过。(2)相关性分析表明,冻害监测的敏感性波段为684.92nm处倒数对数光谱、578.37nm处一阶导数光谱、571.93nm处二阶导数光谱,这些波段与叶绿素的相关系数均通过0.01水平的显著性检验,且相关系数最大,其中以倒数对数光谱为自变量的估算模型最优。(3)叶绿素含量与高光谱特征变量的相关性分析表明,以由蓝边面积(SDb)和红边面积(SDr)计算的VI3(VI3=SDr/SDb)或VI3[VI5=(SDr—SDb)/(SDr+SDb)]为自变量的抛物线模型最优,其训练样本拟合与验证样本精度检验水平均最高,因此VI3、VI5为冬小麦冻害监测的敏感指数。研究结果揭示了冬小麦冻害后高光谱特征,可为促进高光谱技术在冬小麦长势监测和估产中的应用,提高冬小麦冻害遥感监测的准确性提供依据。  相似文献   

15.
Abstract

Potato (Solanum tuberosum) showed a well-established mutualistic association with arbuscular mycorrhizal fungi. In the present study, earthen pots containing autoclaved soil were taken in which surface sterilized potato seeds were sown. The seed sowed earthen pots were inoculated by sterilized spores of arbuscular mycorrhizal fungi along with sterilized inoculated maize-root fragments, while the rest half of the seed filled pots, without any inoculation depicting control but were provided with non-inoculated maize root fragments. The inoculation was performed twice; first inoculation was done 3 days prior to sowing of potato seeds and second at the time of seedling emergence. Sampling of the inoculated as well as of control plants was performed at 20-day intervals till 80?days after tuber initiation. An increment in the level of metabolites as well as mineral nutrient was found in mycorrhizal inoculated potato tubers in contrast to non-inoculated. Our work demonstrates that inoculation has a great potential in enriching storage metabolites and nutrients in potato plant in low yielding soils.  相似文献   

16.
Beneficial interactions of arbuscular mycorrhizal fungi (AM Fungi) and plant growth promoting rhizobacteria (PGPR) have an important role in keeping agriculture sustainable. The present study reports the positive effects of AM fungi (Rhizophagus intraradices, Rhizophagus fasciculatum), Burkholderia seminalis and dual inoculation of these two strains on growth of Lycopersicon esculatum and Capsicum annuum plant under drought stress conditions. Each treatment was replicated six times and was arranged in a complete randomized block design. A significant increase in terms of biomass, root length, shoot length, and chlorophyll content was observed with the plants inoculated with these beneficial microorganisms. Accumulation of proline was found to be less in AM fungi inoculated plants suggesting the role of it in mitigating the water stress. A positive correlation between % colonization and chlorophyll content, root length, catalase activity, and guaiacol peroxidase has been observed depicting the importance of the AM fungi in drought tolerance.  相似文献   

17.
基于红边参数的植被叶绿素含量高光谱估算模型   总被引:11,自引:2,他引:9  
利用ASD便携式野外光谱仪和SPAD-502叶绿素计实测了落叶阔叶树法国梧桐、毛白杨叶片的高光谱反射率与叶片绿度,并对原始光谱反射率及一阶导数光谱与叶片绿度进行了相关分析,建立了基于红边位置、峰度系数、偏度系数的叶片叶绿素含量的高光谱估算模型,最后采用红边位置、峰度、偏度作为BP人工神经网络的输入变量进行了叶绿素含量的估算。结果表明:基于红边位置的法国梧桐、毛白杨叶绿素估算模型的决定系数达到0.7366、0.7289;基于峰度、偏度建立的估算模型可以有效提高估算精度,模型的决定系数均达0.8341以上;法国梧桐和毛白杨人工神经网络模型的确定系数决定系数分别达到0.9574和0.9523。与单变量模型相比人工神经网络模型反演精度明显提高,是一种良好的植被叶绿素含量高光谱反演模式。  相似文献   

18.
利用大豆和玉米之间根系不同分隔方式的盆栽试验,研究了在玉米/大豆间作体系中接种大豆根瘤菌、AM真菌Glomus mosseae和双接种对间作体系氮素吸收的促进作用。结果表明,双接种处理显著提高了大豆及与其间作玉米的生物量、氮含量,双接种大豆/玉米间作体系总吸氮量比单接AM菌根、根瘤菌和不接种对照平均分别增加22.6%、24.0%和54.9%。大豆促进了与其间作玉米对氮素的吸收作用,在接种AM真菌和双接种条件,间作玉米的AM真菌侵染率提高,大豆根瘤数增加; 接种AM真菌处理,不分隔和尼龙网分隔比完全分隔玉米吸氮量的净增加量是未接种对照的1.8、2.6倍,双接种处理分别是对照的1.3和1.7倍。说明在间作体系中进行有效的根瘤菌和AM真菌接种,发挥两者的协同作用对提高间作体系土壤养分利用效率,进一步提高间作体系的生产力有重要的意义。  相似文献   

19.
春玉米磷素营养的光谱响应及诊断   总被引:6,自引:2,他引:6  
通过盆栽试验监测不同磷营养水平春玉米典型生育期叶片光谱变化,并对叶片光谱反射率与叶片磷含量做了相关分析。结果表明,春玉米大喇叭口期是磷素营养的光谱响应敏感期,3507~30.nm和14201~800.nm是磷素营养的光谱敏感波段。该生育期构建的单波段高光谱变量、窄波段光谱变量和宽波段光谱变量与叶片磷含量都存在显著或极显著的回归关系;窄波段光谱变量比值指数R6725/6256和R61745/15856与叶片磷含量的回归关系达到了极显著水平,R625/555达到显著水平。可见光波段光谱变量与磷含量的回归关系优于近红外波段光谱变量与磷含量的回归关系,表明可见光波段叶片光谱反射率可能更适合春玉米磷营养状况的评价。不同波段宽度的光谱变量分析表明,在敏感波段范围内,801~00.nm波段平均的叶片宽波段光谱反射率没有降低对叶片磷含量的估算精度。  相似文献   

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