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Authors: Jingyi Han (撖静宜), Thomas Welch, Ute Voß, Teva Vernoux, Rahul Bhosale and Anthony Bishopp. iScience (2024) Highlights • The first intron of ARF7 is required for expression in the root apical meristem. • It is not required for expression in either lateral roots or the shoot apex. • We find no binding sites in the first intron required for expression in root tips. • We propose that this intron exerts its effects via Intron Mediated Enhancement. Abstract: "Auxin regulates plant growth and development through the transcription factors of the AUXIN RESPONSE FACTOR (ARF) gene family. ARF7 is one of five activators that bind DNA and elicit downstream transcriptional responses. In roots, ARF7 regulates growth, gravitropism and redundantly with ARF19, lateral root organogenesis. In this study we analyzed ARF7 cis-regulation, using different non-coding sequences of the ARF7 locus to drive GFP. We show that constructs containing the first intron led to increased signal in the root tip. Although bioinformatics analyses predicted several transcription factor binding sites in the first intron, we were unable to significantly alter expression of GFP in the root by mutating these. We instead observed the intronic sequences needed to be present within the transcribed sequences to drive expression in the root meristem. These data support a mechanism by which Intron Mediated Enhancement regulates the tissue specific expression of ARF7 in the root meristem."
Via Julio Retamales
Authors: Katsuhiro Shiono and Haruka Matsuura.
Annals of Botany (2024)
Abstract: "Background and Aims - Internal root aeration is essential for root growth in waterlogged conditions. Aerenchyma provides a path for oxygen to diffuse to the roots. In most wetland species, including rice, a barrier to radial oxygen loss (ROL) allows more of the oxygen to diffuse to the root tip, enabling root growth into anoxic soil. Most dryland crops, including barley, do not form a root ROL barrier. We previously found that abscisic acid (ABA) signalling is involved in the induction of ROL barrier formation in rice during waterlogging. Although rice typically does not form a tight ROL barrier in roots in aerated conditions, an ROL barrier with suberized exodermis was induced by application of exogenous ABA. Therefore, we hypothesized that ABA application could also trigger root ROL barrier formation with hypodermal suberization in barley. Methods - Formation of an ROL barrier was examined in roots in different exogenous ABA concentrations and at different time points using cylindrical electrodes and Methylene Blue staining. Additionally, we evaluated root porosity and observed suberin and lignin modification. Suberin, lignin and Casparian strips in the cell walls were observed by histochemical staining. We also evaluated the permeability of the apoplast to a tracer. Key Results - Application of ABA induced suberization and ROL barrier formation in the adventitious roots of barley. The hypodermis also formed lignin-containing Casparian strips and a barrier to the infiltration of an apoplastic tracer (periodic acid). However, ABA application did not affect root porosity. Conclusions Our results show that in artificial conditions, barley can induce the formation of ROL and apoplastic barriers in the outer part of roots if ABA is applied exogenously. The difference in ROL barrier inducibility between barley (an upland species) and rice (a wetland species) might be attributable to differences in ABA signalling in roots in response to waterlogging conditions.
Via Julio Retamales
Authors: Laura Mathieu, Elsa Ballini, Jean-Benoit Morel and Louis-Valentin Méteignier. Current Opinion on Plant Biology (2024) Abstract: "Plants interact with each other via a multitude of processes among which belowground communication facilitated by specialized metabolites plays an important but overlooked role. Until now, the exact targets, modes of action, and resulting phenotypes that these metabolites induce in neighboring plants have remained largely unknown. Moreover, positive interactions driven by the release of root exudates are prevalent in both natural field conditions and controlled laboratory environments. In particular, intraspecific positive interactions suggest a genotypic recognition mechanism in addition to non-self perception in plant roots. This review concentrates on recent discoveries regarding how plants interact with one another through belowground signals in intra- and interspecific mixtures. Furthermore, we elaborate on how an enhanced understanding of these interactions can propel the field of agroecology forward."
Via Julio Retamales
Authors: Pei Lei, Yaxuan Jiang, Yong Zhao, Mingquan Jiang, Ximei Ji, Le Ma, Guangze Jin, Jianxin Li, Subin Zhang, Dexin Kong, Xiyang Zhao and Fanjuan Meng. Journal of Agricultural and Food Chemistry (2024) Abstract: "Abiotic stresses including cold, drought, salt, and iron deficiency severely impair plant development, crop productivity, and geographic distribution. Several bodies of research have shed light on the pleiotropic functions of BASIC HELIX–LOOP–HELIX (bHLH) proteins in plant responses to these abiotic stresses. In this review, we mention the regulatory roles of bHLH TFs in response to stresses such as cold, drought, salt resistance, and iron deficiency, as well as in enhancing grain yield in plants, especially crops. The bHLH proteins bind to E/G-box motifs in the target promoter and interact with various other factors to form a complex regulatory network. Through this network, they cooperatively activate or repress the transcription of downstream genes, thereby regulating various stress responses. Finally, we present some perspectives for future research focusing on the molecular mechanisms that integrate and coordinate these abiotic stresses. Understanding these molecular mechanisms is crucial for the development of stress-tolerant crops."
Via Julio Retamales
Episode 7 - Bad Table MannersRipples and Tipples: How Partition Changed Indian Food In 1947, the British finally left India after 300 years of colonial rule. They created many arbitrary borders as they left, the most prominent of which was the line that was to separate India from Pakistan.
Via Frank Kusters
Information about vegetable, fruit, berry and nut markets of East Europe and Central Asia: news, market reviews, statistics and analytics, business stories and much more.
Via Frank Kusters
Zosui is a comforting Japanese rice soup cooked in a savory dashi broth with vegetables, eggs, mushrooms, and sometimes meat or seafood.
Via Frank Kusters
The Halal Food Company has launched five new lines of the only 3rd-party certified halal convenience products in the UK. Now available in 140 Sainsburys stores nationwide, the brand has filled a gap in the market for chilled meals that aim to serve the rapidly growing muslim consumer market here in Britain. With 4.2 million
Via Rohaizad Hassan, Frank Kusters
Soy sauce is key when it comes to the flavor of Japanese food. This time, we ask a specialist about the differences in color and flavor between sauces. We also see a soy sauce maker which prepares its sauce in wooden barrels used for over 100 years. In order to pass this disappearing method on, the maker started to produce its own barrels. Finally, we learn about a new type of sauce popular in France and virtually unknown in Japan. Join reporter Kyle from Canada as he dives deep into soy sauce. (Reporter: Kyle Card)
Via Frank Kusters
Hiyayakko (冷奴) is is Japanese cold tofu with condiments of green onion, dried bonito flake, grated ginger and soy sauce.
Via Frank Kusters
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Google has introduced its new algorithm, Panda 4.0, in an effort to reward high quality, original content in the search engine's rankings. But, this doesn't mean marketers should stop curating
Via Robin Good
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Authors: Xianghan Cheng, Feifei Liu, Xiaolei Liu and Xuan Yang. Journal of the Science of Food and Agriculture (2024) Abstract: "Background - The influences of abscisic acid (ABA) applications on precursors and gene expression in 3-alkyl-2-methoxypyrazines (MPs) biosynthetic pathway, MPs concentration and sensory evaluation of its derived peculiar odors in Cabernet Sauvignon grapes and wines were investigated. At the vineyard, ABA solution with 25, 100 and 400 mg L−1 (AT1, AT2 and AT3, respectively) and an aqueous solution (control) were sprayed three times from veraison to pre-harvest. Results - Higher concentration ABA applications (AT2 and AT3) in grapes could significantly reduce MPs concentration and its derived peculiar odors in grapes and wines compared to a lower concentration ABA application (AT1) and control, with AT2 application having the strongest effect. The changes in MPs were mainly a result of the downregulated expression of VvOMTs genes at higher concentration ABA applications, independent of the levels of their potential precursors. Conclusion - The present study reveals that ABA application had the potential to decrease production of MPs in Cabernet Sauvignon grapes and wines, and this result provides reference values for the removal of unpleasant vegetable odors from Cabernet Sauvignon wines in production.
Via Julio Retamales
Authors: Hikaru Sato and Hisayo Yamane. Journal of Experimental Botany (2024) Abstract: "As sessile organisms, plants enter periods of dormancy in response to environmental stresses to ensure continued growth and reproduction in future. During dormancy, plant growth is suppressed, adaptive/survival mechanisms are exerted, and stress tolerance increases over a prolonged period until the plants resume their development or reproduction under favorable conditions. In this review, we focus on seed dormancy and bud dormancy, which are critical for adaptations to fluctuating environmental conditions. We provide an overview of the physiological characteristics of both types of dormancy as well as the importance of the phytohormones abscisic acid and gibberellin for establishing and releasing dormancy, respectively. Additionally, recent epigenetic analyses have revealed that dormancy establishment and release are associated with the removal and deposition of histone modifications at the loci of key regulatory genes influencing phytohormone metabolism and signaling, including DELAY OF GERMINATION 1 and DORMANCY-ASSOCIATED MADS-box genes. We discuss our current understanding of the physiological and molecular mechanisms required to establish and release seed dormancy and bud dormancy, while also describing how environmental conditions control dormancy depth, with a focus on the effects of histone modifications."
Via Julio Retamales
Authors: Yusong Lyu, Xinli Dong, Shipeng Niu, Ruijie Cao, Gaoneng Shao, Zhonghua Sheng, Guiai Jiao, Lihong Xie, Shikai Hu, Shaoqing Tang, Xiangjin Wei and Peisong Hu. Journal of Integrative Plant Biology (2024) Summary: We identified a major quantitative trait locus, mesocotyl elongation1 (ME1), which harbors the rice Green Revolution gene Semi-Dwarf1 (SD1), encoding a GA20-oxidase for gibberellin (GA) biosynthesis. An orchestrated ethylene–GA signaling cascade coordinates the ME and emergence of rice seedlings. Furthermore, we found a potential application for ME1 in modern rice direct-seeding breeding. Abstract: "A mechanized direct seeding of rice with less labor and water usage, has been widely adopted. However, this approach requires varieties that exhibit uniform seedling emergence. Mesocotyl elongation (ME) offers the main drive of fast emergence of rice seedlings from soils; nevertheless, its genetic basis remains unknown. Here, we identify a major rice quantitative trait locus Mesocotyl Elongation1 (qME1), an allele of the Green Revolution gene Semi-Dwarf1 (SD1), encoding GA20-oxidase for gibberellin (GA) biosynthesis. ME1 expression is strongly induced by soil depth and ethylene. When rice grains are direct-seeded in soils, the ethylene core signaling factor OsEIL1 directly promotes ME1 transcription, accelerating bioactive GA biosynthesis. The GAs further degrade the DELLA protein SLENDER RICE 1 (SLR1), alleviating its inhibition of rice PHYTOCHROME-INTERACTING FACTOR-LIKE13 (OsPIL13) to activate the downstream expansion gene OsEXPA4 and ultimately promote rice seedling ME and emergence. The ancient traits of long mesocotyl and strong emergence ability in wild rice and landrace were gradually lost in company with the Green Revolution dwarf breeding process, and an elite ME1-R allele (D349H) is found in some modern Geng varieties (long mesocotyl lengths) in northern China, which can be used in the direct seeding and dwarf breeding of Geng varieties. Furthermore, the ectopic and high expression of ME1 driven by mesocotyl-specific promoters resulted in rice plants that could be direct-seeded without obvious plant architecture or yield penalties. Collectively, we reveal the molecular mechanism of rice ME, and provide useful information for breeding new Green Revolution varieties with long mesocotyl suitable for direct-seeding practice."
Via Julio Retamales
Authors: Qi Zhang, Jiancan Du, Xiao Han and Yanru Hu. Plant Diversity (2024) Highlights • Salinity stress enhances COI1-mediated jasmonate signaling. • JAZ1 physically interacts with ABF3. • ABF3 positively regulate jasmonate signaling under saline condition. • JAZ1 suppresses ABF3-enhanced jasmonate signaling. Abstract: "Salinity is a severe abiotic stress that affects plant growth and yield. Salinity stress activates jasmonate (JA) signaling in Arabidopsis thaliana, but the underlying molecular mechanism remains to be elucidated. In this study, we confirmed the activation of JA signaling under saline conditions and demonstrated the importance of the CORONATINE INSENSITIVE1 (COI1)-mediated signaling for this process. Phenotypic analyses reflected the negative regulation of JASMONATE ZIM-DOMAIN (JAZ) repressors during salinity stress-enhanced JA signaling. Mechanistic analyses revealed that JAZ proteins physically interact with ABSCISIC ACID-RESPONSIVE ELEMENT BINDING FACTOR1 (ABF1), AREB1/ABF2, ABF3, and AREB2/ABF4, which belong to the basic leucine zipper (bZIP) transcription factor family and respond to salinity stress. Analyses on the ABF3 overexpression plants and ABF mutants indicated the positive role of ABF3 in regulating JA signaling under saline condition. Furthermore, ABF3 overexpression partially recovered the JA-related phenotypes of JAZ1-Δ3A plants. Moreover, ABF3 was observed to indirectly activate ALLENE OXIDE SYNTHASE (AOS) transcription, but this activation was inhibited by JAZ1. In addition, ABF3 competitively bind to JAZ1, thereby decreasing the interaction between JAZ1 and MYC2, which is the master transcription factor controlling JA signaling. Collectively, our findings have clarified the regulatory effects of ABF3 on JA signaling and provide new insights into how JA signaling is enhanced following an exposure to salinity stress."
Via Julio Retamales
A simple and easy miso butter recipe made of miso, and unsalted butter that can be used for stir-fries, braising, noodles, or spread on toast.
Via Frank Kusters
Ce plat, dénommé “kinugasa don”, s’adapte aux palais végétariens en remplaçant le porc ou le bœuf par du seitan.
Via Frank Kusters
Your inside line on the world’s leading restaurants, bars and hotels...
Via Frank Kusters
Soy sauce is key when it comes to the flavor of Japanese food. This time, we ask a specialist about the differences in color and flavor between sauces. We also see a soy sauce maker which prepares its sauce in wooden barrels used for over 100 years. In order to pass this disappearing method on, the maker started to produce its own barrels. Finally, we learn about a new type of sauce popular in France and virtually unknown in Japan. Join reporter Kyle from Canada as he dives deep into soy sauce. (Reporter: Kyle Card)
Via Frank Kusters
A simple and easy miso butter recipe made of miso, and unsalted butter that can be used for stir-fries, braising, noodles, or spread on toast.
Via Frank Kusters
Japanese scientists Miyashita Hōmei and Nakamura Hiromi won the Ig Nobel Nutrition Prize for experiments including on how electrified chopsticks can make food taste salty. They believe related technology can help people on special diets, reduce food waste, and even become a form of entertainment.
Via Frank Kusters
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