Publications by authors named "Jingjiang Zhou"

Article Synopsis
  • Tea leaf spot, caused by the fungus Didymella segeticola, significantly reduces tea yield and quality in high-mountain plantations of Southwest China due to a lack of understanding and control measures.
  • The infection process involves the germination of conidia on leaf surfaces, leading to necrotic lesions and damage to chloroplasts, which affects the leaf's structural integrity.
  • Through transcriptomic and metabolomic analyses, researchers identified two crucial genes (DsHAD and DsADH) that influence the fungus's virulence and its response to oxidative stress, providing insights for developing management strategies.
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Non-coding RNAs play crucial roles in plant responses to viral stresses. However, their molecular mechanisms in tea leaf spot responses remain unclear. In this study, using Camellia sinensis, we identified lncRNA81246 as a long non-coding RNA that localizes to both the nucleus and cytoplasm.

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Article Synopsis
  • - Phytohormones play a vital role in plant growth and stress resistance, making it important to understand their distribution and function for assessing plant health and developing growth regulators.
  • - Advances in fluorescent probe technology have enhanced the ability to monitor phytohormones in plants, effectively visualizing their response to environmental stressors.
  • - Challenges remain in achieving high spatial resolution and biocompatibility in living plants for phytohormone visualization, yet there are numerous opportunities for further exploration in this area.
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Article Synopsis
  • The research focuses on how pea aphids adapt to different alfalfa varieties, which is important for understanding insect-plant interactions and pest management.
  • By analyzing the differentially expressed genes (DEGs) of pea aphids feeding on resistant versus susceptible alfalfa, researchers identified key genes involved in metabolism that play a role in their adaptation.
  • The study highlights specific genes (like ApCarE4 and ApPOD3) that help aphids detoxify and survive on resistant alfalfa, suggesting pathways for future research on pest control strategies.
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Tea leaf spot caused by is a disease that has recently been discovered in the tea plantations of Southwest China, and which has a significant negative impact on the yield and quality of tea leaves. Wuyiencin is a nucleotide antimicrobial that is effective against a range of fungal diseases. However, its mode of action is still unclear.

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Due to a lack of understanding of the disease epidemiology and comprehensive control measures, tea leaf spot caused by has a significant negative impact on tea yield and quality in the tea plantations of Southwest China. Phenazine-1-carboxamide (PCN) is a phenazine compound derived from species, which exhibits antimicrobial activity against various pathogens. However, its inhibitory mechanism is not yet clear.

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Tea leaf spot caused by is a newly discovered fungal disease in southwest China. Due to a lack of knowledge of its epidemiology and control strategies, the disease has a marked impact on tea yield and quality. Pyriofenone is a new fungicide belonging to the aryl phenyl ketone fungicide group, which has shown marked efficacy in controlling various fungal diseases.

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Plant activators have emerged as promising alternatives to conventional crop protection chemicals for managing crop diseases due to their unique mode of action. By priming the plant's innate immune system, these compounds can induce disease resistance against a broad spectrum of pathogens without directly inhibiting their proliferation. Key advantages of plant activators include prolonged defense activity, lower effective dosages, and negligible risk of pathogen resistance development.

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Circular RNA (circRNA) is a type of non-coding RNA with multiple biological functions. Whole circRNA genomes in plants have been identified, and circRNAs have been demonstrated to be widely present and highly expressed in various plant tissues and organs. CircRNAs are highly stable and conserved in plants, and exhibit tissue specificity and developmental stage specificity.

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Background: Odorant-binding proteins (OBPs) are essential in insect's daily behaviors mediated by olfactory perception. Megachile saussurei Radoszkowski (Hymenoptera, Megachilidae) is a principal insect pollinating alfalfa (Medicago sativa) in Northwestern China. The olfactory function have been less conducted, which provides a lot of possibilities for our research.

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Background: Potato, Solanum tuberosum, is one of the most important food crops in the world, playing a significant role in global food security. However, many potato industries and farms may suffer losses of tuber yield and quality in storage due to lepidopteran pests. Here, we evaluated the effectiveness of an ectoparasitic idiobiont mite Pyemotes zhonghuajia in the biological control of the potato tuber moth (PTM) Phthorimaea operculella by determining the lethal, sublethal (nonconsumptive) and transgenerational effects of P.

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Koch is a worldwide agricultural pest mite that feeds on more than 1100 kinds of crops. The mite has developed a high level of tolerance to high temperatures, but the physiological mechanism underlying the outstanding adaptability of this pest to high temperatures remains unclear. To clarify the physiological mechanisms of in response to short-term heat stress, four temperatures (36, 39, 42, and 45 °C) and three short-term heat durations (2, 4, and 6 h) were conducted to test the effects on protein content, the activities of superoxide dismutase (SOD), peroxidase (POD), and catalase (CAT), and the total antioxidant capacity (T-AOC).

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Understanding the drivers of urban plant diversity (UPD) and above ground biomass (AGB) in urbanized areas is critical for urban ecosystem services and biodiversity protection. The relationships between UPD and AGB have been investigated simultaneously. However, the drivers of UPD and AGB have been explored independently in tropical coastal areas at different time points.

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Background: The cotton mealybug Phenacoccus solenopsis Tinsley (Hemiptera: Pseudococcidae) is one of the most devastating sap-sucking pests of cultivated plants. The success of P. solenopsis is attributable to its ecological resilience and insecticide resistance, making its control extremely difficult and expensive.

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Insect chitinases play a crucial part to digest chitin in the exoskeleton during the molting process. However, research on insect chitinase related to the environmental stress response is very limited. This study was the first conducted to expression analysis of chitinase- related genes in under abiotic stresses.

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Brown rot caused by the pathogen of the genus is the most destructive disease in peaches worldwide. It has seriously reduced the economic value of the peach ( (L.) Batsch) in Nyingchi and Qamdo, Tibet, China.

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Iridoid monoterpenes, widely distributed in plants and insects, have many ecological functions. While the biosynthesis of iridoids has been extensively studied in plants, little is known about how insects synthesize these natural products. Here, we elucidated the biosynthesis of the iridoids -nepetalactol and -nepetalactone in the pea aphid (Harris), where they act as sex pheromones.

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Recent studies have indicated that the plant volatile methyl benzoate (MB) exhibits significant insecticidal bioactivity against several common insects. However, the potential environmental hazards of MB and its safety to non-target organisms is poorly understood. In the present study, these characteristics were investigated through laboratory experiments and field investigations.

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Odorant-binding protein (OBP) is a potential target for developing insect behavior control agents due to its properties in transporting semiochemicals. In this study, 12 novel jasmonic acid (JA) derivatives were rationally designed and synthesized based on the binding features between OBP3 (ApisOBP3) and compound [()-3,7-dimethylocta-2,6-dien-1-yl 2-(3-oxo-2-pentylcyclopentyl)acetate] with a binding affinity () of 26.79 μM.

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Article Synopsis
  • * Key findings include significant increases in protein content and changes in the activities of enzymes like superoxide dismutase (SOD), peroxidase (POD), and catalase (CAT) in response to the heat stress treatments.
  • * The highest enzymatic activities were recorded at 40°C for 4 hours, suggesting that high temperatures have a larger impact on enzyme activity than the duration of heat exposure.
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Objective: To evaluate the diagnostic performance of metagenomic next-generation sequencing (mNGS) and culture in pathogen detection among intensive care unit (ICU) and non-ICU patients with suspected pulmonary infection.

Methods: In this prospective study, sputum samples were collected from patients with suspected pulmonary infection for 2 consecutive days and then subjected to DNA or RNA sequencing by mNGS or culture; 62 ICU patients and 60 non-ICU patients were admitted. In the end, comparisons were made on the pathogen species identified by mNGS and culture, the overall performance of these two methods in pathogen detection, and the most common pathogens detected by mNGS between the ICU and non-ICU groups.

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The green peach aphid (Hemiptera: Aphididae) relies heavily on its olfactory system to locate plant hosts, find mates, and avoid parasitoids or predators. The insect odorant receptors (ORs) have been proven to play a critical role in the perception of odorants from the environment. In the present study, 33 odorant receptor candidate genes including the Orco gene were identified from the antennal, head, legs and body transcriptomes of .

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Botanical pesticide is highly recommended for integrated pest management (IPM), due to its merits such as environmental friendliness, safe to non-target organisms, operators, animals, and food consumers. The experiment was conducted to determine the lethal and sub-lethal effects of allyl isothiocyanate (AITC) on eggs, third instar larvae, pupae, and females and males of Johannsen (). Different concentrations of AITC under ambient CO by the conical flask sealed fumigation method were used for the experiment.

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is one of the earliest cultivated crops. It is native to Central and South America and is now widely cultivated all over the world for its rich nutrition, short growth period, and high yield, which make it suitable for intercropping. Hull-less L.

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Apple Valsa canker is one of the most serious diseases, having caused significant apple yield and economic loss in China. However, there is still no effective biological methods for controlling this disease. Our present study focused on the inhibitory activity and mechanisms of (T6) fermentation on that causes apple Valsa canker (AVC).

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