-
1581por Sunitha, Sukumaran, Loyola, Rodrigo, Alcalde, José Antonio, Arce-Johnson, Patricio, Matus, José Tomás, Rock, Christopher D.“…We explored the effects of ultraviolet B radiation (UV-B) on the developmental dynamics of microRNAs and phased small-interfering-RNA (phasi-RNAs)-producing loci by sequencing small RNAs in vegetative and reproductive organs of grapevine (Vitis vinifera L.). In particular, we tested different UV-B conditions in in vitro-grown plantlets (high-fluence exposition) and in berries from field-grown (radiation filtering) and greenhouse-grown (low- and high-fluence expositions) adult plants throughout fruit development and ripening. …”
Publicado 2019
Enlace del recurso
Enlace del recurso
Enlace del recurso
Online Artículo Texto -
1582por Zhang, Wenying, Abdelrahman, Mostafa, Jiu, Songtao, Guan, Le, Han, Jian, Zheng, Ting, Jia, Haifeng, Song, Changnian, Fang, Jinggui, Wang, Chen“…BACKGROUND: Grape (Vitis vinifera) is highly sensitive to gibberellin (GA), which effectively induce grape parthenocarpy. …”
Publicado 2019
Enlace del recurso
Enlace del recurso
Enlace del recurso
Online Artículo Texto -
1583por Zhang, Ying, Yao, Jia-Long, Feng, Hu, Jiang, Jianfu, Fan, Xiucai, Jia, Yun-Fei, Wang, Ran, Liu, Chonghuai“…BACKGROUND: Grapevine is an important fruit crop grown worldwide, and its cultivars are mostly derived from the European species Vitis vinifera, which has genes for high fruit quality and adaptation to a wide variety of climatic conditions. …”
Publicado 2019
Enlace del recurso
Enlace del recurso
Enlace del recurso
Online Artículo Texto -
1584por Riaz, Summaira, Menéndez, Cristina M., Tenscher, Alan, Pap, Daniel, Walker, M. Andrew“…Cultivated grapevines (Vitis vinifera) lack resistance to powdery mildew (PM) with few exceptions. …”
Publicado 2020
Enlace del recurso
Enlace del recurso
Enlace del recurso
Online Artículo Texto -
1585por Zombardo, A., Crosatti, C., Bagnaresi, P., Bassolino, L., Reshef, N., Puccioni, S., Faccioli, P., Tafuri, A., Delledonne, M., Fait, A., Storchi, P., Cattivelli, L., Mica, E.“…BACKGROUND: In viticulture, rootstock genotype plays a critical role to improve scion physiology, berry quality and to adapt grapevine (Vitis vinifera L.) to different environmental conditions. …”
Publicado 2020
Enlace del recurso
Enlace del recurso
Enlace del recurso
Online Artículo Texto -
1586“…Next, to enhance the precursor malonyl-CoA supply, an inactivation-resistant version of acetyl-CoA carboxylase (ACC1(S659A,S1157A)) was introduced into the downstream Saccharomyces cerevisiae module constitutively expressing codon-optimized 4-coumarate-CoA ligase from Arabidopsis thaliana (4CL) and resveratrol synthase from Vitis vinifera (STS), and thus further improve the conversion of p-coumaric acid-to-resveratrol. …”
Enlace del recurso
Enlace del recurso
Enlace del recurso
Online Artículo Texto -
1587“…We illustrate the performance of HapSolo on genome data from three species: the Chardonnay grape (Vitis vinifera), with a genome of 490 Mb, a mosquito (Anopheles funestus; 200 Mb) and the Thorny Skate (Amblyraja radiata; 2650 Mb). …”
Enlace del recurso
Enlace del recurso
Enlace del recurso
Online Artículo Texto -
1588por Herrera, José M., Silva, Bruno, Jiménez-Navarro, Gerardo, Barreiro, Silvia, Melguizo-Ruiz, Nereida, Moreira, Francisco, Vasconcelos, Sasha, Morgado, Rui, Rodriguez-Pérez, Javier“…We performed a spatially-explicit interaction-based assessment of potential biocontrol services in Portugal, using 1853 pairwise trophic interactions between 78 flying vertebrate species (birds and bats) and 53 insect pests associated to two widespread and economically valuable crops in the Euro-Mediterranean region, olive groves (Olea europaea subsp. europaea) and vineyards (Vitis vinifera subsp. vinifera). The study area was framed using 1004 square cells, each 10 × 10 km in size. …”
Publicado 2021
Enlace del recurso
Enlace del recurso
Enlace del recurso
Online Artículo Texto -
1589por Corchete, Purificación, Almagro, Lorena, Gabaldón, Jose Antonio, Pedreño, María Angeles, Palazón, Javier“…A strategy to overcome this constraint was recently tested, in which reusable CD polymers coated with magnetic Fe(3)O(4) nanoparticles were harnessed in Vitis vinifera cell cultures to produce t-resveratrol (t-R). …”
Publicado 2022
Enlace del recurso
Enlace del recurso
Enlace del recurso
Online Artículo Texto -
1590“…However, the characteristics of expressed TE loci, the identification of self-competent transposon loci contributing to new insertions, and the genomic conditions permitting their mobilisation remain largely unknown. RESULTS: Using Vitis vinifera embryogenic callus, we explored the impact of biotic stressors on transposon transcription through the exposure of the callus to live cultures of an endemic grapevine yeast, Hanseniaspora uvarum. …”
Enlace del recurso
Enlace del recurso
Enlace del recurso
Online Artículo Texto -
1591“…RESULTS: In this study, highly cold-resistant grape cultivar ‘Shuangyou’ (SY) which belongs to V. amurensis, and cold-sensitive cultivar ‘Red Globe’ (RG) which belongs to Vitis vinifera L. were used to identify cold resistance genes. …”
Enlace del recurso
Enlace del recurso
Enlace del recurso
Online Artículo Texto -
1592por Alsina, Maria Mar, Smart, David R., Bauerle, Taryn, de Herralde, Felicidad, Biel, Carme, Stockert, Christine, Negron, Claudia, Save, Robert“…To address this issue, seasonal root proliferation, stomatal conductance (g(s)) and whole root system hydraulic conductance (k(r)) were investigated for a drought-tolerant grape root system (Vitis berlandieri×V. rupestris cv. 1103P) and a non-drought-tolerant root system (Vitis riparia×V. rupestris cv. 101-14Mgt), upon which had been grafted the same drought-sensitive clone of Vitis vinifera cv. Merlot. Leaf water potentials (ψ(L)) for Merlot grafted onto the 1103P root system (–0.91±0.02 MPa) were +0.15 MPa higher than Merlot on 101-14Mgt (–1.06±0.03 MPa) during spring, but dropped by approximately –0.4 MPa from spring to autumn, and were significantly lower by –0.15 MPa (–1.43±0.02 MPa) than for Merlot on 101-14Mgt (at –1.28±0.02 MPa). …”
Publicado 2011
Enlace del recurso
Enlace del recurso
Enlace del recurso
Texto -
1593por Fortes, Ana M, Agudelo-Romero, Patricia, Silva, Marta S, Ali, Kashif, Sousa, Lisete, Maltese, Federica, Choi, Young H, Grimplet, Jerome, Martinez- Zapater, José M, Verpoorte, Robert, Pais, Maria S“…BACKGROUND: Grapes (Vitis vinifera L.) are economically the most important fruit crop worldwide. …”
Publicado 2011
Enlace del recurso
Enlace del recurso
Enlace del recurso
Online Artículo Texto -
1594por Gupta, Yogesh, Pathak, Ashish K, Singh, Kashmir, Mantri, Shrikant S, Singh, Sudhir P, Tuli, Rakesh“…Assembled unigenes were functionally annotated by querying against the protein sequences of five different public databases (NCBI non redundant, Prunus persica, Vitis vinifera, Fragaria vesca, and Amborella trichopoda), with an E-value cut-off of 10(−5). …”
Publicado 2015
Enlace del recurso
Enlace del recurso
Enlace del recurso
Online Artículo Texto -
1595“…We have performed a true genome-wide analysis of the complete set of MADS-box genes in grapevine (Vitis vinifera), analyzed their expression pattern and establish their phylogenetic relationships (including MIKC* and type I MADS-box) with genes from 16 other plant species. …”
Enlace del recurso
Enlace del recurso
Enlace del recurso
Online Artículo Texto -
1596por Pervaiz, Tariq, Haifeng, Jia, Salman Haider, Muhammad, Cheng, Zhang, Cui, Mengjie, Wang, Mengqi, Cui, Liwen, Wang, Xicheng, Fang, Jinggui“…The sums of 272,941,656 reads were generated from vitis vinifera leaf at four different developmental stages, with more than 27 billion nucleotides of the sequence data. …”
Publicado 2016
Enlace del recurso
Enlace del recurso
Enlace del recurso
Online Artículo Texto -
1597por Khalil-Ur-Rehman, Muhammad, Sun, Long, Li, Chun-Xia, Faheem, Muhammad, Wang, Wu, Tao, Jian-Min“…BACKGROUND: Bud dormancy is an important biological phenomenon of perennial plants that enables them to survive under harsh environmental circumstances. Grape (Vitis vinifera) is one of the most grown fruit crop worldwide; however, underlying mechanisms involved in grape bud dormancy are not yet clear. …”
Publicado 2017
Enlace del recurso
Enlace del recurso
Enlace del recurso
Online Artículo Texto -
1598por Patel, Sagar, Lu, Zhixiu, Jin, Xiaozhu, Swaminathan, Padmapriya, Zeng, Erliang, Fennell, Anne Y.“…In this study, three strategies were used to develop de novo Vitis vinifera ‘Sultanina’ genome assemblies for comparison with the inbred V. vinifera (PN40024 12X.v2) reference genome and a published Sultanina ALLPATHS-LG assembly (AP). …”
Publicado 2018
Enlace del recurso
Enlace del recurso
Enlace del recurso
Online Artículo Texto -
1599“…Forty-two RNA-seq samples were analyzed from 9 published studies in 7 plant species (Arabidopsis thaliana, Solanum lycopersicum, Zea mays, Vitis vinifera, Malus X domestica, Solanum tuberosum, Triticum aestivum). …”
Enlace del recurso
Enlace del recurso
Enlace del recurso
Online Artículo Texto -
1600por Sun, Xin, Wang, Mengqi, Leng, Xiangpeng, Zhang, Kekun, Liu, Gengsen, Fang, Jinggui“…BACKGROUND: Grapevine (Vitis vinifera L.), which has important nutritional values and health benefits, is one of the most economically important fruit crops cultivated worldwide. …”
Publicado 2020
Enlace del recurso
Enlace del recurso
Enlace del recurso
Online Artículo Texto