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21.
Plants produce nectar in their flowers as a reward for their pollinators and most of our crops depend on insect pollination, but little is known on the physiological control of nectar secretion. Jasmonates are well-known for their effects on senescence, the development and opening of flowers and on plant defences such as extrafloral nectar. Their role in floral nectar secretion has, however, not been explored so far. We investigated whether jasmonates have an influence on floral nectar secretion in oil-seed rape, Brassica napus. The floral tissues of this plant produced jasmonic acid (JA) endogenously, and JA concentrations peaked shortly before nectar secretion was highest. Exogenous application of JA to flowers induced nectar secretion, which was suppressed by treatment with phenidone, an inhibitor of JA synthesis. This effect could be reversed by additional application of JA. Jasmonoyl-isoleucine and its structural mimic coronalon also increased nectar secretion. Herbivory or addition of JA to the leaves did not have an effect on floral nectar secretion, demonstrating a functional separation of systemic defence signalling from reproductive nectar secretion. Jasmonates, which have been intensively studied in the context of herbivore defences and flower development, have a profound effect on floral nectar secretion and, thus, pollination efficiency in B. napus. Our results link floral nectar secretion to jasmonate signalling and thereby integrate the floral nectar secretion into the complex network of oxylipid-mediated developmental processes of plants. 相似文献
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Larisa Kizima Aixa Rodríguez Jessica Kenney Nina Derby Olga Mizenina Radhika Menon Samantha Seidor Shimin Zhang Keith Levendosky Ninochka Jean-Pierre Pavel Pugach Guillermo Villegas Brian E. Ford Agegnehu Gettie James Blanchard Michael Piatak Jr Jeffrey D. Lifson Gabriela Paglini Natalia Teleshova Thomas M. Zydowsky Melissa Robbiani José A. Fernández-Romero 《PloS one》2014,9(4)
Prevalent infection with human herpes simplex 2 (HSV-2) or human papillomavirus (HPV) is associated with increased human immunodeficiency virus (HIV) acquisition. Microbicides that target HIV as well as these sexually transmitted infections (STIs) may more effectively limit HIV incidence. Previously, we showed that a microbicide gel (MZC) containing MIV-150, zinc acetate (ZA) and carrageenan (CG) protected macaques against simian-human immunodeficiency virus (SHIV-RT) infection and that a ZC gel protected mice against HSV-2 infection. Here we evaluated a modified MZC gel (containing different buffers, co-solvents, and preservatives suitable for clinical testing) against both vaginal and rectal challenge of animals with SHIV-RT, HSV-2 or HPV. MZC was stable and safe in vitro (cell viability and monolayer integrity) and in vivo (histology). MZC protected macaques against vaginal (p<0.0001) SHIV-RT infection when applied up to 8 hours (h) prior to challenge. When used close to the time of challenge, MZC prevented rectal SHIV-RT infection of macaques similar to the CG control. MZC significantly reduced vaginal (p<0.0001) and anorectal (p = 0.0187) infection of mice when 106 pfu HSV-2 were applied immediately after vaginal challenge and also when 5×103 pfu were applied between 8 h before and 4 h after vaginal challenge (p<0.0248). Protection of mice against 8×106 HPV16 pseudovirus particles (HPV16 PsV) was significant for MZC applied up to 24 h before and 2 h after vaginal challenge (p<0.0001) and also if applied 2 h before or after anorectal challenge (p<0.0006). MZC provides a durable window of protection against vaginal infection with these three viruses and, against HSV-2 and HPV making it an excellent candidate microbicide for clinical use. 相似文献
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Mandy S. Wong Ling Chen Christopher Foster Radhika Kainthla Jerry W. Shay Woodring E. Wright 《Cell reports》2013,3(4):1028-1035
Highlights? Alternative splicing is a new target for telomerase inhibition/activation ? Elements deep within introns regulate human telomerase splicing ? These intronic elements contain both unusual short repeats and direct repeats ? A direct-repeat oligonucleotide modifies splicing of endogenous telomerase 相似文献
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Lovell HC Jackson RW Mansfield JW Godfrey SA Hancock JT Desikan R Arnold DL 《Molecular Plant Pathology》2011,12(2):167-176
The co-evolution of bacterial plant pathogens and their hosts is a complex and dynamic process. Plant resistance can impose stress on invading pathogens that can lead to, and select for, beneficial changes in the bacterial genome. The Pseudomonas syringae pv. phaseolicola (Pph) genomic island PPHGI-1 carries an effector gene, avrPphB (hopAR1), which triggers the hypersensitive reaction in bean plants carrying the R3 resistance gene. Interaction between avrPphB and R3 generates an antimicrobial environment within the plant, resulting in the excision of PPHGI-1 and its loss from the genome. The loss of PPHGI-1 leads to the generation of a Pph strain able to cause disease in the plant. In this study, we observed that lower bacterial densities inoculated into resistant bean (Phaseolus vulgaris) plants resulted in quicker PPHGI-1 loss from the population, and that loss of the island was strongly influenced by the type of plant resistance encountered by the bacteria. In addition, we found that a number of changes occurred in the bacterial genome during growth in the plant, whether or not PPHGI-1 was lost. We also present evidence that the circular PPHGI-1 episome is able to replicate autonomously when excised from the genome. These results shed more light onto the plasticity of the bacterial genome as it is influenced by in planta conditions. 相似文献
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The aim of this study is to determine the 5alpha-reductase inhibitory activity of several new steroidal compounds PR-01-PR-07 by measuring the conversion of [3H]T to[3H]DHT in Penicillium crustosum broths. These compounds were obtained from marine soft corals collected on the coasts of Andaman and Nicobar at Hori, Natkal and Kalipur (Diglipur) Islands and identified as Sinularia grandilobata Verseveldt, Sinularia crassa Tixier- Durivault, Sinularia gravis Tixier- Durivault, Sinularia sp., Lobophytum sp., Lobophytum crassum and Cladiella sp. PR-01-PR-04 significantly inhibited the conversion of [3H]T to [3H]DHT (P < 0.05) whereas PR-05 and PR-06 did not show an appreciable difference (P > 0.05) in this model. On the other hand PR-07 stimulated (P < 0.05) the enzymatic reaction. 相似文献
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松油和桂皮油由于具有芳香性气味, 因而成为良好的成虫驱避剂, 但是关于它们对蚊虫的杀幼虫作用研究不多。为揭示市售的长叶松Pinus longifolia油和锡兰肉桂Cinnamomum zeylanicum油对来源于印度德里的埃及伊蚊Aedes aegypti 4龄幼虫的毒杀潜力, 我们进行了室内研究, 以幼虫死亡率及行为改变和形态改变等指标评估其杀幼虫潜力。结果表明: 两种油对埃及伊蚊4龄幼虫均具有毒杀作用, 且松油的灭幼效果优于桂皮油。松油的LC50和LC70 值分别为0.33093 mg/L 和0.54476 mg/L, 而桂皮油的LC50和LC70 值分别为0.63159 mg/L和0.77736。进一步观察发现, LC90剂量下桂皮油的杀幼虫潜力强于松油, 其LC90为1.11879 mg/L, 而松油的LC90为 1.04915 mg/L。在处理的幼虫中观察到行为改变, 如兴奋、 坐立不安、 颤抖、 痉挛然后瘫痪, 说明这两种油可能对其神经肌肉系统产生了影响。显微观察处理幼虫的形态改变发现, 与对照相比, 大多数器官的外观正常, 只是肛鳃略为内收缩而引起结构畸形, 提示肛腮可能是这两种油的作用位点, 腮的功能异常引起了幼虫死亡。这两种油品可开发用作防治蚊虫的新型杀幼虫药剂。 相似文献