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81.
Ninety four accessions of the cultivated triploid potatoS. chaucha were analyzed and classified in genotypic groups using 9 isozyme loci and RAPD markers disclosed by 20 arbitrary 10-mer primers.
Eight isozyme loci out of nine were polymorphic. A total of 22 allozymes were analyzed but none of them were specific for
any genotypic group. About half (52%) of the 102 RAPD markers scored, were polymorphic, all of them showing polymorphism among
groups and rarely within groups. Eighteen RAPD markers were specific for certain genotypes. The isozyme markers showed a certain
amount of intra group variation which made classification less reliable than with RAPD markers. A total of 10 triploid genetic
groups were discriminated using both techniques together. A single primer was found to be sufficient to distinguish all 10
groups. All varieties of a single group are considered to have been derived from the same cross and then clonally propagated,
even though there is a high amount of morphological variation within a single genotypic group due probably to somatic mutations.
RAPD markers have been shown to be more reliable in the classification of triploid potato varieties than other genetic markers
like isozymes, proteins and morphological traits. 相似文献
82.
J.M. Scervino I. Sampedro M.A. Ponce M.A. Rodriguez J.A. Ocampo A. Godeas 《Soil biology & biochemistry》2008,40(9):2474
Exudates of Rhodotorula mucilaginosa, a yeast commonly found in the rhizosphere, increased hyphal length of the arbuscular mycorrhizal (AM) fungi Gigaspora rosea and Gigaspora margarita. Rhodotorulic acid (RA), a siderophore compound obtained from R. mucilaginosa exudates, increased hyphal length and branching. Thus, the increase in the number of entry points and the higher AM root colonization of tomato plants in the presence of RA can at least partially be explained by the positive effect of RA on the pre-symbiotic stages of the AM fungi. 相似文献
83.
Mkabwa L. K. Manoko Ronald G. van den Berg Richard M. C. Feron Gerard M. van der Weerden Celestina Mariani 《Genetic Resources and Crop Evolution》2008,55(3):409-418
Two hexaploid species of Solanum sect. Solanum are present in Africa: Solanum scabrum and S. nigrum. Solanum scabrum is a widely cultivated species and is used as a leafy vegetable, as a source of medicine and as a source of ink dye. In previous
studies a wide range of morphological diversity has been reported in this species and in some studies subspecies have been
proposed. Subspecies are also recognized in S. nigrum. However, it has not been established whether or not the morphological differences are reflected at the genomic level. The
present study applies AFLPs to study the genetic diversity in S. scabrum and its relationship to geographical provenance, morphological differences and the possible existence of subspecies within
S. scabrum and S. nigrum. The data obtained were analyzed with cluster analysis (using UPGMA and NJ). The results indicate that the genetic variation
within S. scabrum was higher within accessions than between accessions. Accessions did not cluster according to their geographical provenance,
indicating that accessions from different geographical areas were not significantly different genetically. The clustering
reflected neither morphological differences nor domestication status (cultivated or wild). The morphological differences exhibited
by S. scabrum could be due to selection by farmers for different plant types. The AFLP derived clustering pattern did not segregate the
subspecies recognized in S. scabrum and S. nigrum into separate subclusters. 相似文献
84.
85.
为阐明杂种一代在氮素吸收方面的优势,研究了不同氮效率茄子基因型及其杂种 F1的氮素吸收特性。试验以3个典型氮效率的茄子基因型及其F1代为材料,研究其在正常供氮和低氮胁迫条件下的根系体积、根系干重、氮素吸收总量、根系活力、硝酸还原酶活性及谷氨酰胺合成酶活性。结果表明,与高氮低效-低氮低效基因型L相比,氮高效基因型H1、H2的单株根系体积、根系干重、根系活力以及氮素吸收总量均较大; 且具有较高的硝酸还原酶与谷氨酰胺合成酶活性。三个杂交组合F1-1(L×H1)、F1-2(L×H2)和F1-3(H1×H2)的单株根系体积、根系干重、根系活力、硝酸还原酶活性、谷氨酰胺合成酶活性以及氮素吸收总量的中亲优势(Hm)和超亲优势(Hp)多为正向优势; 其中,组合F1-3杂种优势最为明显。利用杂种在氮素吸收方面的优势,对于改善植株体内的氮代谢水平进而提高氮效率具有重要意义。 相似文献
86.
Verónica Nilda Ispizúa Irma Rosana Guma Sergio Feingold Andrea Martina Clausen 《Genetic Resources and Crop Evolution》2007,54(8):1833-1848
Andean potato varieties are cultivated in the northwest of Argentina and constitute the most important staple food for the
local farmers. The genetic diversity of 155 accessions conserved at the Genebank of Balcarce (INTA) was tested using four
microsatellites. Three commercial potato varieties of Tuberosum group and one accession of Curtilobum group were used as outgroups.
The presence of bands was scored for each microsatellite and for each accession and the data were analysed by principal coordinate
analysis. The polymorphism information content was obtained for each molecular marker from banding patterns. Analysis of molecular
variance was carried out with a variable number of accessions for each landrace, from different departments and sites within
departments. More than one genotype was detected in the majority of the potato landraces. Some accessions within each landrace
did not differentiate. AMOVA revealed that most of the genetic variation occurred among sites within departments and among
local varieties. These findings are discussed considering the agricultural practices carried out in the Andean farming system. 相似文献
87.
少花龙葵种间嫁接后代对小白菜生长及镉积累的影响 总被引:4,自引:0,他引:4
通过盆栽试验,将茄子、土豆、番茄作为砧木嫁接的少花龙葵后代与小白菜混种,研究了镉胁迫条件下(10 mg kg~(-1)),少花龙葵种间嫁接后代对小白菜生长及镉积累的影响。结果表明:混种少花龙葵种间嫁接后代均能提高小白菜的生物量和叶绿素含量,其大小顺序均为:混种茄子砧木的少花龙葵嫁接后代混种土豆砧木的少花龙葵嫁接后代混种未嫁接少花龙葵混种番茄砧木的少花龙葵嫁接后代单种。同时,混种少花龙葵种间嫁接后代也能提高小白菜根系镉含量、地上部分镉含量及整株镉含量。混种小白菜后,番茄砧木嫁接的木少花龙葵后代的地上部分生物量、地上部分镉含量及地上部分镉积累量较未嫁接少花龙葵均有所提高,分别较未嫁接少花龙葵提高了7.73%、7.54%和15.84%,其余的处理则提高不明显或低于未嫁接少花龙葵。因此,少花龙葵不适合混种镉污染条件下的小白菜,但番茄作为砧木嫁接的少花龙葵后代能够提高少花龙葵对土壤镉污染的修复能力。 相似文献
88.
Encarna Cayuela Alicia Muñoz‐Mayor Francisco Vicente‐Agulló Elena Moyano Jose O. Garcia‐Abellan Maria T. Estañ Maria C. Bolarín 《植物养料与土壤学杂志》2007,170(4):479-484
Agricultural productivity is worldwide subjected to increasing salinity problems. Various strategies are applied to overcome the deleterious effects of salinity on plants. This study was conducted in order to determine whether drought pretreatment of seedlings or seed pretreatment with NaCl increases the long‐term salinity resistance of tomato (Solanum lycopersicum L.) and whether the adaptive response to salinity is accompanied by physiological changes throughout the plant‐growth cycle. When plants were pretreated at the five‐leaf growth stage, the plant dry weight was significantly higher in drought‐pretreated than in non‐pretreated plants after 50 d of salt treatment. The positive effect of drought pretreatment applied at the five‐leaf stage was maintained throughout the entire growth cycle, as fruit yield of drought‐pretreated plants was 40% higher than that of non‐pretreated plants at the end of the harvest period (150 d of 70 mM NaCl treatment). Moreover, the most productive plants maintained lower Na+ and Cl– accumulation in their leaves until the end of the growth cycle, which shows that adaptation is a long‐term response during which the plants adjust their physiology to the environmental conditions. Salt resistance was also improved through seed pretreatment with NaCl. In conclusion, drought pretreatment applied at the five‐leaf stage or seed pretreatment with NaCl provide an alternative way to enhance salt resistance in tomato, and the increase in yield is associated with physiological changes throughout the plant‐growth cycle. 相似文献
89.
黑龙江省马铃薯气候生产力特征及区划 总被引:7,自引:5,他引:7
利用黑龙江省81个气象站1975-2004年30 a的逐日气象资料及相应插值的网格同期逐日气象资料,采用WOFOST作物生长模型,模拟并分析了马铃薯气候生产力的空间分布特征,同时分析了各地气候生产力影响因素及分布特征;利用气候生产力的距平百分率、变异系数及与气候生产力密切相关的有关生育期的4个气候因子(平均气温、气温日较差、日平均日照时数、降水量),采用动态聚类分析方法,将黑龙江省马铃薯可能种植区初步划分为9类气候栽培区,为充分利用当地气候资源发展马铃薯生产提供参考。 相似文献
90.
Amplified Fragment Length Polymorphisms (AFLPs) were employed within the taxonomically difficult Solanum nigrum L. complex in order to characterize the genetic diversity present in a collection of the Gatersleben Genebank, to classify taxonomically unknown material, and to correlate the clustering of the examined accessions with their geographic origin. The results from AFLP analyses using two primer combinations on 44 entries from five species led to the detection of four major clusters, simultaneously uncovering significant differences in the levels of genetic diversity within or between species. S. americanumexhibited the highest infraspecific variation despite close geographic origins, simultaneously being placed in a clearly separated cluster in comparison to the other examined species of the complex. In addition, these other species showed even less interspecific variation than was found at the infraspecific level in S. americanum. In terms of taxonomy, the application of AFLPs helped in the classification of 13 black nightshade accessions formerly only listed as Solanum sp. This also was confirmed by morphological determination. Furthermore, one accession formerly classified as S. physalifolium var. nitidibaccatum i) clustered with AFLPs and ii) was identified morphologically as S. villosum. Contradictory classifications remain for two further entries from the same species, found within the S. nigrum cluster after AFLP analyses, while belonging to S. physalifolium var. nitidibaccatum according to herbarium specimen. Finally, as indicated by the information on provenance in geographically separated subclusters in S. americanum and partially in S. villosum, clues on the currently unknown origin of accessions from the genebank seem feasible by AFLP data. 相似文献