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探究不同磷肥施用量对菊芋块茎产量、品质、植株理化特性及磷肥利用率的影响,为实现菊芋高产优质栽培和农田磷素高效利用与科学施磷提供参考依据。于2019-2020连续两年分别于河南省原阳县和方城县布置磷肥用量田间试验,2019年设0、60、120、180和240 kg P2O5·hm-2 5个磷肥用量水平,2020年则分别设0、45、90、135、180和225 kg P2O5·hm-2 6个施磷水平。研究磷肥施用对成熟期菊芋块茎产量、品质(菊糖、还原糖含量)以及营养生长和生殖生长期地上部植株磷素积累量、叶片绿原酸、SPAD值、可溶性糖、可溶性蛋白含量等理化指标的影响,计算分析菊芋收获指数、磷肥利用率和农学效率等肥料吸收利用状况。结果表明:磷肥供应均显著提高2019和2020年菊芋块茎产量,肥料效应呈“线性+平台”趋势变化,适宜施磷量分别为155和107 kg·hm-2。此外,磷肥供应显著提高菊芋块茎菊糖和还原糖含量。与不施磷相比,2019-2020年度块茎总糖含量增幅分别平均为11.6%和18.3%。各生育期菊芋地上部植株磷素积累量、叶片绿原酸含量、SPAD值、可溶性糖和可溶性蛋白含量均随施磷量增加而明显提高。菊芋磷素收获指数(PHI)、磷肥利用率(AUP)和农学效率(AEP)均随着磷肥用量增加而明显下降,施磷处理两年平均PHI、AUP和AEP分别为0.813、15.1%和23.9 kg·kg-1。因此,合理施磷可显著提高菊芋成熟期块茎产量、改善品质,增强各生育期生理活性。在本试验条件下菊芋适宜施磷量为105~150 kg·hm-2。 相似文献
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The development of commercial sunflower hybrids based on new CMS sources is of special interest for reducing the potential risk of vulnerability to pathogens and for increasing genetic diversity. From 263 test crosses involving nine new CMS sources, i.e. ANL1, ANL2, MAX1, PEF1, PET2, ANN1, ANN2, ANNS and ANN4, five lines were selected as potential restorers for PEF1, PET2 and ANN4. In test crosses between all nine CMS sources and these five restorer lines evaluated in 2 years, seven fully restored hybrids could be identified. These hybrids, based on ANL1, ANL2, MAX1, PEF1, PET2, and ANN4, showed good agronomic performance for plant height, days to flowering, maturity and oil content. Segregation analyses of the F2 populations indicate that a single dominant restorer gene was sufficient to restore pollen production of hybrids based on ANL2, PEF1 and PET2. For restoration of ANN4, two dominant complementary genes are required. In restoration of fertility in the crosses of ANL1 and MAX1 investigated, two dominant genes are involved each of which on its own allows the production of fertile plants. 相似文献
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J. Dominguez J. M. Melero-Vara J. Miller J. M. Fernández-Martinez 《Plant Breeding》1996,115(3):201-202
Racial evolution of sunflower broomrape (Orobanche cernua) has been very rapid in Spain during recent years, in which resistance has been overcome several times and there has been an important increase in areas infested with this parasitic angiosperm. In order to find resistance to a highly virulent population of sunflower broomrape that could be used directly in breeding programmes, three different sets of cultivated plant material composed of 429 entries were tested by artificial inoculation. All evaluated inbred lines from Moden, Canada, were fully susceptible. Out of the 240 P.I. accessions tested, only 10 segregated for resistance to broomrape, the rest being susceptible. From the 160 USDA breeding lines evaluated, 5% were resistant and 19% segregated for resistance to O. cernua. These lines traced back mainly to crosses of RHA 274 and RHA 801 with Russian, Turkish and Romanian hybrids. The origin of P.I. accessions that segregated for resistance were primarily derived from the former USSR and from Romania. 相似文献
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病程相关蛋白(pathogenesis-related proteins)经常被用作植物抗病反应的分子标记。本文在核盘菌诱导向日葵转录组文库的基础上克隆1个病程相关蛋白1基因HaPR1的cDNA全长序列,并进行了表达模式和功能分析。结果表明, 该基因cDNA全长开放阅读框为489 bp,编码162个氨基酸,分子量为17.52 kD,等电点为8.19,具有6个保守半胱氨酸,4个保守的allergen V5/Tpx-1结构域,GenBank登录号为KR071874。经比较HaPR1与多种物种PR1高度同源。实时荧光定量PCR检测结果表明,HaPR1相对表达量在向日葵叶中最高,根中其次,茎中最低。干旱、盐、草酸、核盘菌及其代谢物均可显著诱导其表达。利用农杆菌介导法将该基因导入烟草,提高了转基因株系对核盘菌的抗性。对抗性株系烟草防御酶活性及丙二醛含量测定发现转基因烟草叶片在核盘菌胁迫下显著提高了SOD、POD和CAT活性,降低了MDA含量。初步推断HaPR1具有抗核盘菌的功能。 相似文献
7.
Induced parthenogenesis as a possible method of haploidization in sunflower (H. annuus L.) was tested in previous investigations
(Todorova et al., 1994) and conditions for reproducible regeneration of gynogenic doubled haploids were established by the
present work. Forty eight treatments were studied, involving four pollen donors and four recipient hybrids. Pollen was irradiated
with doses of 300 Gy, 600 Gy and 900 Gy. In total, 2279 embryos were cultivated in vitro of which 1107 plants were obtained
and 582 of them produced seeds after selfing. The ploidy level of the regenerants was evaluated at the two – three leaf stage
and 296 of the plantlets obtained were haploids. Some of them underwent spontaneous diploidization, the others were treated
with colchicine solution for chromosome doubling. The diploid plantlets were checked for their gynogenic origin by genetical
and biochemical methods. The effectiveness of the method expressed as the number of agronomically useful DH lines to the number
obtained that were fertile and resistant to downy mildew, branched and unbranched plants was 8,6% on average.
This revised version was published online in July 2006 with corrections to the Cover Date. 相似文献
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Sclerotinia sclerotiorum (Lib.) de Bary is a major limiting factor for sunflower (Helianthus annuus) production. This study was conducted to (1) evaluate a large number of current sunflower lines for their reaction to Sclerotinia, and (2) determine the optimum allocation of resources for their selection. A set of 85 inbred lines was screened under artificial leaf infection in three environments. The test revealed ample variation for all resistance traits in the current germplasm. A line selected from NDBLOS, an oilseed sunflower germplasm poo, and its derivatives were most resistant to Sclerotinia. Lines derived from interspecific crosses with the wild species Helianthus tuberosus and Helianthus argophyllus also showed satisfactory Sclerotinia resistance. The evaluation of five plants per plot in two replications and four environments appears to be a reasonable allocation of resources in order to optimize the selection response. 相似文献
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《Plant Production Science》2013,16(3):204-208
AbstractArgentina is a major sunflower producer in the world, with crop acreage of 2?2.7 million ha in the last four years. Sunflower crop yield is often influenced by sanitary constraints, mainly fungal pathogens. Helianthus petiolaris is a wild species native to North America established in central Argentina displays a high tolerance to a number of fungal diseases and insects. Controlled crosses of this species with sunflower demonstrated that H. petiolaris constitutes a valuable genetic variability source for sunflower breeding to improve tolerance to rust (Puccinia helianthi), white rust (Albugo tragopogonis), verticillium wilt (Verticillium dahliae), powdery mildew (Erisiphe sp.) and the sunflower moth (Rachiplusia nu). This places H. petiolaris in an outstanding position as a genetic resource since different important traits could be transferred to the crop through interspecific hybridization. 相似文献
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