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Long-term high temperature stress decreases the photosynthetic capacity and induces irreversible damage in chrysanthemum seedlings 长期高温胁迫会降低菊花幼苗的光合能力,造成不可逆的伤害
IF 1.2 Q3 HORTICULTURE Pub Date : 2023-04-12 DOI: 10.17221/28/2022-hortsci
Yuanda Zhang, Zaiqiang Yang, Peijuan Wang, Chao Xu
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引用次数: 0
Identification and Functional Characterization of a New Terpene Synthase Gene from Chrysanthemum indicum var. aromaticum 野菊花萜烯合成酶新基因的鉴定及功能鉴定
IF 1.2 Q3 HORTICULTURE Pub Date : 2023-03-27 DOI: 10.17221/61/2022-hortsci
Yu Liu, Wenying Ji, Xiang Wang, Bin Xia, Miao He, Yunwei Zhou
in the Chrysanthemum genus. Studies have found that (–)-α-thujone, (+)-β-thujone, borneol and other terpenoids are the main components of C. indicum var. aromaticum (Jian et al. 2014). Terpene synthase (TPS) is a key enzyme that is studied in the biosynthesis of steroids. According to the structure and reaction mechanism, TPS in plants can be mainly divided into two categories. Class I refers to the ion-isation-dependent TPS caused by the removal of the pyrophosphate groups by metal ions such as Mn 2+ and Mg 2+ (Tholl 2015). Class II refers to the proton-ation-dependent TPS that causes the pyrophosphate group to leave by epoxidation or carbon-carbon double bond protonation (Tholl 2015). The TPS family can be divided into seven subfamilies from TPSa-TPSg according to the correlation of its amino acid
菊花属植物。研究发现,(–)-α-thujone、(+)-β-thujone、龙脑等萜类化合物是印度香茅的主要成分(Jian et al.2014)。萜烯合成酶(TPS)是研究甾体生物合成的关键酶。根据结构和反应机理,植物中的TPS主要可分为两类。I类是指由金属离子如Mn2+和Mg2+去除焦磷酸基团引起的离子依赖性TPS(Tholl 2015)。II类是指质子依赖性TPS,其导致焦磷酸基团通过环氧化或碳-碳双键质子化离开(Tholl 2015)。根据其氨基酸的相关性,TPS家族可从TPSa-TPSg分为七个亚家族
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引用次数: 0
Corrigendum: Content of trans-resveratrol, trans-ε-viniferin and trans-δ-viniferin in young spring grapevine canes - the influence of samples drying 勘误:春葡萄藤幼藤中反式白藜芦醇、反式ε-乙烯醛和反式δ-乙烯醛的含量——样品干燥的影响
Q3 HORTICULTURE Pub Date : 2023-03-27 DOI: 10.17221/30/2023-hortsci
Naděžda Vrchotová, Jan Tříska, Radomíra Střalková, Štěpán Horník, Jan Sýkora, Josef Balík, Ivo Soural, Lukáš Toupal, Radek Sotolář
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引用次数: 0
A review on seasonal succession and management of key insect- pest infesting tomato 番茄主要害虫的季节演替及防治研究进展
IF 1.2 Q3 HORTICULTURE Pub Date : 2023-03-27 DOI: 10.17221/31/2022-hortsci
S. Dhanda, S. Singh Yadav, Anil Jakhar, Sonu Kumari
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引用次数: 0
Phenotypic proximity and remoteness of seedless vine varieties depending on their ampelographic characteristics 无籽葡萄品种的表型接近性和远隔性取决于它们的葡萄形态特征
IF 1.2 Q3 HORTICULTURE Pub Date : 2023-03-27 DOI: 10.17221/59/2021-hortsci
V. Roychev, N. Keranova
Phenotypic proximity and remoteness of seedless vine varieties depending on their ampelographic characteristics
无籽葡萄品种的表型接近性和远隔性取决于它们的葡萄形态特征
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引用次数: 0
Effects of saline water and N levels on eggplant (Solanum melongena L.) fruit yield, water productivity, and nitrogen use efficiency by drip and surface flood irrigation 盐水和氮水平对滴灌和地表漫灌茄子产量、水分生产率和氮利用效率的影响
IF 1.2 Q3 HORTICULTURE Pub Date : 2023-03-20 DOI: 10.17221/11/2022-hortsci
S. ., Rita Dahiya, R. Prakash, Vijay Pal Singh Panghal, Manoj Kumar Gora
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引用次数: 1
Inorganic and organic foliar fertilization in oliveS 橄榄叶面无机和有机施肥
IF 1.2 Q3 HORTICULTURE Pub Date : 2023-03-10 DOI: 10.17221/69/2022-hortsci
Savros Sotiropoulos, Christos Chatzissavvidis, I. Papadakis, V. Kavvadias, C. Paschalidis, C. Antonopoulou, A. Koriki
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引用次数: 0
In vitro simulation of drought stress in some Iranian Damask rose landraces 伊朗大马士革玫瑰地方品种干旱胁迫的体外模拟
IF 1.2 Q3 HORTICULTURE Pub Date : 2023-03-02 DOI: 10.17221/107/2021-hortsci
H. S. Hajizadeh, S. Rezaei, F. Yari, V. Okatan
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引用次数: 2
Vermiliquer as a biostimulant and antioxidant in hydroponic lettuce (Lactuca sativa) production 在水培生菜(Lactuca sativa)生产中用作生物刺激剂和抗氧化剂的Vermilique
IF 1.2 Q3 HORTICULTURE Pub Date : 2023-03-01 DOI: 10.17221/5/2022-hortsci
E. Rico-García, Adrian Esteban Ortega-Torres, Tomás Sabino Herrera-Matallana
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引用次数: 0
Molecular evaluation of selected mango genotypes grown in Egypt using SCoT and ISSR markers 利用SCoT和ISSR标记对埃及芒果基因型的分子评价
IF 1.2 Q3 HORTICULTURE Pub Date : 2022-12-22 DOI: 10.17221/112/2021-hortsci
Ibrahim El-Shenawy Ghounim, Mohammed Raafat Mustafa, Ibrahim Hmmam
The mango (Mangifera indica L.) is a common tropical and subtropical fruit and the second main fruit crop in Egypt. In this work, start codon targeted (SCoT) and inter simple sequence repeat (ISSR) markers were employed to study the genetic relationship among twenty-three mango genotypes grown under the El-Giza district conditions. These genotypes consist of four newly introduced cultivars, six new progenies and thirteen closely related mango cultivars which were included as cultivar references for the best definition. Based on the overall SCoT and ISSR data, a total of 52 bands were generated (18 for SCoT and 34 for ISSR) with a total polymorphic percentage equal to 53.84% (44.44% for SCoT and 58.82% for ISSR). Based on the whole set of SCoT and ISSR marker data, the genetic similarity coefficients ranged from 80 to 97% with a mean equal to 88.5% and the first two principal axes explained about 31% of the total genetic variation among the mango accessions. The SCoT and ISSR data revealed that the four newly introduced mango genotypes, namely ‘Aya’, ‘Kasturi’, ‘Maya’ and ‘Omer’, are novel genetic resources based on their genetic profiles, which can be used for future breeding programmes in Egypt.
芒果(Mangifera indica L.)是一种常见的热带和亚热带水果,是埃及的第二大水果作物。本工作采用起始密码子靶向(SCoT)和简单序列间重复(ISSR)标记研究了在El Giza地区条件下生长的23种芒果基因型之间的遗传关系。这些基因型由4个新引进的芒果品种、6个新后代和13个密切相关的芒果品种组成,这些品种被作为最佳定义的品种参考。根据SCoT和ISSR的总体数据,共产生52条带(SCoT 18条,ISSR 34条),总多态性百分比为53.84%(SCoT 44.44%,ISSR 58.82%)。基于整套SCoT和ISSR标记数据,遗传相似系数在80%至97%之间,平均值为88.5%,前两个主轴解释了芒果材料之间约31%的总遗传变异。SCoT和ISSR数据显示,四种新引入的芒果基因型,即“Aya”、“Kasturi”、“Maya”和“Omer”,是基于其遗传图谱的新遗传资源,可用于埃及未来的育种计划。
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引用次数: 0
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Horticultural Science
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