plant response
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Genes ◽  
2022 ◽  
Vol 13 (1) ◽  
pp. 134
Author(s):  
Mengdi Li ◽  
Jiayu Ma ◽  
Hengzhao Liu ◽  
Mengwei Ou ◽  
Hang Ye ◽  
...  

Wall-associated kinase (WAK) and WAK-like kinase (WAKL) are receptor-like kinases (RLKs), which play important roles in signal transduction between the cell wall and the cytoplasm in plants. WAK/WAKLs have been studied in many plants, but were rarely studied in the important economic walnut tree. In this study, 27 and 14 WAK/WAKL genes were identified in Juglans regia and its wild related species Juglans mandshurica, respectively. We found tandem duplication might play a critical role in the expansion of WAK/WAKL gene family in J. regia, and most of the WAK/WAKL homologous pairs underwent purified selection during evolution. All WAK/WAKL proteins have the extracellular WAK domain and the cytoplasmic protein kinase domain, and the latter was more conserved than the former. Cis-acting elements analysis showed that WAK/WAKL might be involved in plant growth and development, plant response to abiotic stress and hormones. Gene expression pattern analysis further indicated that most WAK/WAKL genes in J. regia might play a role in the development of leaves and be involved in plant response to biotic stress. Our study provides a new perspective for the evolutionary analysis of gene families in tree species and also provides potential candidate genes for studying WAK/WAKL gene function in walnuts.


2022 ◽  
pp. 237-253
Author(s):  
Amandeep Rattan ◽  
Dhriti Kapoor ◽  
Ashish ◽  
Nitika Kapoor ◽  
Renu Bhardwaj ◽  
...  
Keyword(s):  

Phyton ◽  
2022 ◽  
Vol 91 (2) ◽  
pp. 239-255
Author(s):  
Deka Reine Judesse Soviguidi ◽  
Rui Pan ◽  
Yi Liu ◽  
Liping Rao ◽  
Wenying Zhang ◽  
...  

2022 ◽  
pp. 173-187
Author(s):  
Abdul Rehman ◽  
Babar Shahzad ◽  
Fasih Ullah Haider ◽  
Muhammad Moeen-ud-din ◽  
Aman Ullah ◽  
...  

Horticulturae ◽  
2021 ◽  
Vol 8 (1) ◽  
pp. 23
Author(s):  
Viktorija Vaštakaitė-Kairienė ◽  
Neringa Rasiukevičiūtė ◽  
Lina Dėnė ◽  
Simona Chrapačienė ◽  
Alma Valiuškaitė

In horticulture, the demand for efficient farming processes and food industries increases rapidly. Plant diseases cause severe crop production and economic losses. Therefore, early detection and identification of the diseases in plants are critical. This study aimed to determine the specific parameters for early detection of Botrytis cinerea in lettuce. The lettuce “Little Gem” was inoculated with B. cinerea isolate spore suspension and disc to evaluate the plant response to inner and outer infection, respectively. The non-destructive measurements of leaf spectral reflectance indices and biochemical compounds (phenols, proteins, DPPH, FRAP, chlorophyll, and carotenoids) were used to evaluate the plant physiological response to inoculation with B. cinerea after 12, 18, 36, 60, and 84 h. Our data showed that lettuce responded differently to inner and outer inoculation with B. cinerea. Therefore, the findings of this study allow for the inoculation method to be chosen to determine the early plant response to infection with B. cinerea according to specific leaf spectral reflectance indexes and phytochemicals in further research.


2021 ◽  
pp. 1-10
Author(s):  
Gilmara Pereira da Silva ◽  
Paulo Guilherme Salvador Wadt ◽  
Renato de Mello Prado ◽  
Gustavo Caione ◽  
Leandro Rossato Moda
Keyword(s):  

2021 ◽  
pp. 108524
Author(s):  
Johan De Gruyter ◽  
James T. Weedon ◽  
Evelyne M. Elst ◽  
Stefan Geisen ◽  
Marcel G.A. van der Heijden ◽  
...  

2021 ◽  
Vol 1 (1) ◽  
Author(s):  
Hagai Shohat ◽  
Natanella Illouz Eliaz ◽  
David Weiss

AbstractThe growth-promoting hormone gibberellin (GA) regulates numerous developmental processes throughout the plant life cycle. It also affects plant response to biotic and abiotic stresses. GA metabolism and signaling in tomato (Solanum lycopersicum) have been studied in the last three decades and major components of the pathways were characterized. These include major biosynthesis and catabolism enzymes and signaling components, such as the three GA receptors GIBBERELLIN INSENSITIVE DWARF 1 (GID1) and DELLA protein PROCERA (PRO), the central response suppressor. The role of these components in tomato plant development and response to the environment have been investigated. Cultivated tomato, similar to many other crop plants, are susceptible to water deficiency. Numerous studies on tomato response to drought have been conducted, including the possible role of GA in tomato drought resistance. Most studies showed that reduced levels or activity of GA improves drought tolerance and drought avoidance. This review aims to provide an overview on GA biosynthesis and signaling in tomato, how drought affects these pathways and how changes in GA activity affect tomato plant response to water deficiency. It also presents the potential of using the GA pathway to generate drought-tolerant tomato plants with improved performance under both irrigation and water-limited conditions.


2021 ◽  
Vol 12 ◽  
Author(s):  
Sofía Reyes-Impellizzeri ◽  
Adrian A. Moreno

The endoplasmic reticulum (ER) is the organelle where one third of the proteins of a cell are synthetized. Several of these proteins participate in the signaling and response of cells, tissues, or from the organism to the environment. To secure the proper synthesis and folding of these proteins, or the disposal of unfolded or misfolded proteins, the ER has different mechanisms that interact and regulate each other. These mechanisms are known as the ER quality control (ERQC), ER-associated degradation (ERAD) and the unfolded protein response (UPR), all three participants of the maintenance of ER protein homeostasis or proteostasis. Given the importance of the client proteins of these ER mechanisms in the plant response to the environment, it is expected that changes or alterations on their components have an impact on the plant response to environmental cues or stresses. In this mini review, we focus on the impact of the alteration of components of ERQC, ERAD and UPR in the plant response to abiotic stresses such as drought, heat, osmotic, salt and irradiation. Also, we summarize findings from recent publications looking for a connection between these processes and their possible client(s) proteins. From this, we observed that a clear connection has been established between the ERAD and UPR mechanisms, but evidence that connects ERQC components to these both processes or their possible client(s) proteins is still lacking. As a proposal, we suggest the use of proteomics approaches to uncover the identity of these proteins and their connection with ER proteostasis.


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