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1.
In order to simplify the workload and find a reliable method for screening soybeans with different phosphorus(P)efficiencies,47 soybean varieties were screened from 90 varieties according to yield under normal phosphorus,and 10 indicators including root phenotype,phosphorus utilization efficiency at the seedling stage and yield were measured.Through single-index cluster analysis,the performance value and relative value of the abovementioned indexes under low-phosphorus conditions were analyzed,and then,the combined indexes were analyzed by principal components method.The membership function method and the cluster analysis method was used to calculate and analyze the comprehensive score value.Three indexes of root P utilization efficiency(X1),relative value of root P utilization efficiency(X2),and root volume(X3)under low P at the seedling stage were selected as the most consistent with the yield screening results under low P condition,and the mathematical model of the comprehensive score value was obtained:D=1.218X1t 0.320X2t 0.007X3-0.664(P=0.000,R2=1.000).The comprehensive score can screen and identify the P efficiency of soybeans with fewer indexes in the early growth stages,which provides a more rapid and reliable mathematical model for screening and identifying a larger number of germplasm resources for P efficiency.  相似文献   
2.
不同生育阶段燕麦对干旱胁迫的响应   总被引:1,自引:0,他引:1  
设中度干旱(MD,土壤田间最大持水量的55±5%)、重度干旱(SD,土壤田间最大持水量的35±5%)两个处理,研究干旱胁迫对温室盆栽燕麦不同生育阶段(苗期、分蘖期、拔节期)的生长性状、叶绿素荧光参数以及根系形态的影响。结果表明,与正常供水(CK)相比,干旱胁迫处理均显著(P<0.05)降低了燕麦苗期、分蘖期、拔节期3个生育阶段地上部生物量、株高以及叶片光合荧光参数Fv/Fm、Fv/Fo。干旱胁迫下,燕麦根系表现出明显的形态可塑性,苗期通过增加根长、分支数和细根数(直径≤0.48mm)来响应干旱胁迫,分蘖期主要通过减少根长、分支数来响应干旱胁迫,拔节期主要通过减缓各级根系的生长并增加根的分级数来响应干旱胁迫。  相似文献   
3.
基于多重表型的高粱耐盐性综合评价方法   总被引:3,自引:0,他引:3  
高粱耐盐性因种质、发育时期及生长条件的不同而存在明显差异,因此建立一套全面、客观、准确的高粱耐盐性鉴定方法,对于高粱耐盐种质的筛选和评价具有重要意义。选择64份高粱材料通过室内萌发期耐盐性评定,从中选择36份不同等级材料进行田间苗期耐盐性鉴定,并从中选出13份材料进行室内苗期耐盐性复筛。通过隶属函数值法、主成分分析法、聚类分析法对田间和室内苗期测定的株高、茎粗等形态指标以及超氧化物歧化酶、脯氨酸、丙二醛等生理生化指标的评价,最终确定耐盐材料2份,盐敏感材料2份。建立了一套基于多重表型的耐盐性综合评价方法,即针对高粱不同生育时期(萌发期、苗期)、不同生长条件(田间与室内)采用不同形态指标与生理生化检测指标,并结合多种数据分析方法对不同高粱材料耐盐性进行准确、系统地评价。该方法的建立对于高粱种质资源的耐盐性评价以及高粱耐盐育种具有一定的参考价值。  相似文献   
4.
蜕皮是甲壳动物重要的生理活动,与其蜕皮激素的合成密切相关,细胞色素P450(CYP)302a1是甲壳动物蜕皮激素合成通路中的关键酶之一。本研究克隆了罗氏沼虾CYP302a1基因(Mr-CYP302a1),cDNA全长1859 bp,开放阅读框(ORF)为1629 bp,编码543个氨基酸(aa),分子量大小为61.09 ku,等电点为8.42。氨基酸序列分析显示CYP302a1基因的保守结构域含有5个P450基因家族特征保守区域:heme-binding、helix-K、helixC、helix-I及PERF。系统进化分析结果显示Mr-CYP302a1首先与绿虾CYP302a1聚为一支,然后与凡纳滨对虾及三疣梭子蟹等十足目甲壳动物的CYP302a1聚为一支,与甲壳动物的亲缘关系最近。实时荧光定量PCR(qRT-PCR)检测表明Mr-CYP302a1在罗氏沼虾的多个组织中均有表达,其中在Y器官中的表达量最高,性腺中次之。同时研究发现,MrCYP302a1基因在罗氏沼虾的蜕皮后期(A期和B期)表达量很低,蜕皮间期(C期)表达量开始上升,在蜕皮前期D1亚期达到峰值。对Mr-CYP302a1进行蛋白表达及多克隆抗体制备,蛋白印迹法(Western blot,WB)检测表明Mr-CYP302a1蛋白在罗氏沼虾Y器官中的表达量最高,在蜕皮过程中的蜕皮前期D1亚期达到峰值。综上所述,该基因在罗氏沼虾的蜕皮过程中扮演着十分重要的角色。  相似文献   
5.
甘蓝型油菜种子萌发期耐铝毒特性综合评价及其种质筛选   总被引:1,自引:0,他引:1  
种子萌发是油菜植株形态建成的重要阶段,铝毒是酸性土壤中影响其种子萌发的主要因素之一,因此筛选出种子萌发过程中耐铝毒种质对油菜生产及研究具有重要意义。本研究利用5份甘蓝型油菜品种(系)筛选出油菜萌发期耐铝毒种质资源处理的适宜胁迫浓度为90μg mL~(-1)。并以该浓度处理148份甘蓝型油菜品种(系)种子,于萌发期测定其发芽势、发芽率、鲜重、干重、根长和芽长等指标,通过铝毒胁迫耐性综合评价值(A值)、平均隶属函数值(ASF值)、对铝毒加权耐性系数(WAC值)、相关性、频数、主成分、灰色关联度、聚类和逐步回归分析等鉴定萌发期耐铝性,建立萌发期对铝毒耐性综合评价模型并筛选出适宜的评价鉴定指标。结果表明, 148份甘蓝型油菜的萌发期各指标在品种(系)间存在显著差异;筛选出萌发期耐铝毒甘蓝型油菜品种(系) 01188、WH-20、A109、甲预31棚等。根据灰色关联度及回归分析结果认为,在油菜萌发期测定其根长、芽长、鲜重、发芽率和发芽势,通过回归方程估算其A值,可以初步判断甘蓝型油菜种质的耐铝毒特性。  相似文献   
6.
为了研究不同小麦品种萌发期的耐盐性,为小麦萌发期耐盐性鉴定提供快速、准确的鉴定方法和理论依据。本研究以40个冬小麦品种为试验材料,通过主成分分析法(PCA)与神经网络自组织映射(SOM)聚类分析法,研究盐胁迫对40个小麦品种萌发期各项形态指标的影响。主成分分析法结果表明,发芽势、发芽率、最长根长、第一片叶长及胚芽鞘长在PCA下载荷量最大;根据SOM聚类分析结果,‘德抗961’等4个小麦品种属于高度耐盐品种,‘济麦22’等14个小麦品种属于耐盐性品种,‘济麦20’等16个品种属于中等耐盐性品种,‘鲁麦21’等6个小麦品种属于盐敏感性品种。发芽势、发芽率、最长根长、第一片叶长、胚芽鞘长能够作为萌发期小麦耐盐性筛选的主要评价指标,并且结合主成分、SOM聚类分析方法进行小麦萌发期耐盐性鉴定更为科学、方便。  相似文献   
7.
为探究绵羊繁殖相关组织中CHGA基因在不同繁殖状态下的表达差异,选取不同光照条件下的成年苏尼特母羊(季节性发情品种)及不同繁殖时期的小尾寒羊母羊(常年发情品种)的下丘脑等10种组织,利用qPCR技术分析不同繁殖状态下各组织中CHGA基因的相对表达量。结果表明,CHGA基因在2个绵羊品种的不同组织中广泛表达且脑部组织中该基因的表达量高于其他组织;不同光照条件下苏尼特羊各组织中CHGA表达差异均不显著(P>0.05);黄体期小尾寒羊垂体中CHGA表达量显著高于卵泡期(P<0.05),子宫体中该基因的表达量极显著高于卵泡期(P<0.01)。以上结果暗示CHGA基因可能参与小尾寒羊不同繁殖时期垂体和子宫生理变化的调控。  相似文献   
8.
In México, gladiolus is an important crop cultivated in the central part of the country. In ornamental geophytes, the size of bulbs is a critical factor, impacting plant growth and quality. The objective of the present study was to model the accumulation of potassium (K), calcium (Ca) and Magnesium (Mg) in gladiolus plants as affected by corm size (3.5, 3.0 and 2.5 cm). Regardless of corm size, total dry mass of plants accumulated in three different stages. The initial stage occurred during the corm sprouting phase and continued through the vegetative phase, ending either shortly before (plants from 3.5 cm corms), at (plants from 3.0 cm corms) or shortly after (plants from 2.5 cm corms) the heading phase. The second stage, on which the plants exhibited a rapid dry mass accumulation, occurred shortly before or shortly after the heading phase, finishing with the elongation of the flowering stem. The third stage showed the highest dry mass accumulation rate, coinciding with the elongation of the flowering stem and ending at the blooming of the spike. To complete all the phenological phases, gladiolus required 1818 heat units regardless of corm size. Not considering the nutrients provided by the corm, gladiolus required a total of 6.33, 5.59 and 5.01 mmol plant?1 of K, 2.22, 1.69 and 1.38 mmol plant?1 of Ca and 2.49, 2.00 and 1.68 mmol plant?1 of Mg when grown from 3.5, 3.0, and 2.5 cm corms. At the beginning of the vegetative phase, plants tended to increase Ca content at the expense of K, whereas the proportion of Mg remained unaffected, however, between the vegetative and heading phases, the proportion of Ca declined while that of K and Mg increased. At the end of the study, the proportion of K was much higher than that of Ca and Mg, whereas the proportion of Ca and Mg was similar.  相似文献   
9.
Finger millet [Eleusine coracana (L.) Gaertn.] is an important coarse cereal crop grown in the arid and semi‐arid regions and often experiences high temperature (HT) stress. The objectives of this research were (i) to quantify effects of season‐long HT stress on physiological and yield traits, (ii) to identify the developmental stages most sensitive to HT stress and (iii) to quantify the genetic variability for HT stress tolerance in finger millet. Research was conducted in controlled environment conditions. HT stress decreased the chlorophyll index, photosystem II activity, grain yield and harvest index. Maximum decrease in number of seeds per panicle and grain yield per plant was observed when stress was imposed during booting, panicle emergence or flowering stages. Maximum genotypic variation was explained by panicle width and number of seeds per panicle at optimum temperature (OT) and grain yield per plant at HT and number of seeds at HT. Based on the stress response and grain yield, tolerant or susceptible genotypes were identified. Finger millet is sensitive to HT stress during reproductive stages, and there was genotypic variability among the finger millet genotypes for number of seeds per panicle and grain yield under HT, which can be exploited to enhance stress tolerance.  相似文献   
10.
[Objective] The genetic diversity of semi-wild cotton was abundant, so more new elite resistant genes could be found and applied to improve the resistance of cotton. The aim of this study was to primarily study on the regulation of response to salt-alkali stress, explore the method of integrated evaluation and characterize the resistance of semi-wild cotton. [Method] Four semi-wild and two cultivated Gossypium hirsutum accessions were evaluated for phonotypical, physiological and biochemical traits under alkali-salt versus normal conditions in hydroponic solutions. The alkali-salt tolerance was determined based on principal component analysis, cluster analysis, correlation analysis, grey rational analysis and analysis of variance. [Result] On the basis of the overall results, the alkali-salt stress tolerance of the six accessions was ranked as: Marie-galante85 > Latifolium32 > CRI16 > CRI12 > Latifolium40 > Latifolium130. Roots were found to be the most important responsive systems to complex alkali-salt stress. At seedling growth stage, the active scavenging system played a crucial role in response to alkali-salt stress. In addition, the salt tolerant and salt sensitive accessions showed different response tends towards leaf peroxidase, root ascorbate peroxidase and root catalase within 48 h, suggesting the accessions have different levels of response to salt stress. [Conclusion]Our study identified the most alkali-salt tolerant accessions and provided basic concept of complex alkali-salt tolerance mechanism within cotton accessions. And, our study provided a simple and rapid, highly accurate and precise method for evaluating salt resistance of cotton, and proved that the balance of ROS system play an important role in response to salt-alkali stress. Hence, mining of salt tolerant genes from these accessions may facilitate the development of novel salt tolerant variety.  相似文献   
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