文献类型: 外文期刊
作者: Dev W.;Sultana F.;He S.;Waqas M.;Hu D.;Aminu I.M.;Geng X.;Du X.
作者机构:
关键词: Cotton breeding;Genomics;Heat stress;Physiological and biochemical response;Tolerance mechanisms
期刊名称: Journal of Plant Physiology
ISSN: 0176-1617
年卷期: 2024 年 302 卷
页码:
收录情况: SCIE(2024版)
摘要: The growing worldwide population is driving up demand for cotton fibers, but production is hampered by unpredictable temperature rises caused by shifting climatic conditions. Numerous research based on breeding and genomics have been conducted to increase the production of cotton in environments with high and low-temperature stress. High temperature (HT) is a major environmental stressor with global consequences, influencing several aspects of cotton plant growth and metabolism. Heat stress-induced physiological and biochemical changes are research topics, and molecular techniques are used to improve cotton plants' heat tolerance. To preserve internal balance, heat stress activates various stress-responsive processes, including repairing damaged proteins and membranes, through various molecular networks. Recent research has investigated the diverse reactions of cotton cultivars to temperature stress, indicating that cotton plant adaptation mechanisms include the accumulation of sugars, proline, phenolics, flavonoids, and heat shock proteins. To overcome the obstacles caused by heat stress, it is crucial to develop and choose heat-tolerant cotton cultivars. Food security and sustainable agriculture depend on the application of genetic, agronomic, and, biotechnological methods to lessen the impacts of heat stress on cotton crops. Cotton producers and the textile industry both benefit from increased heat tolerance. Future studies should examine the developmental responses of cotton at different growth stages, emphasize the significance of breeding heat-tolerant cultivars, and assess the biochemical, physiological, and molecular pathways involved in seed germination under high temperatures. In a nutshell, a concentrated effort is required to raise cotton's heat tolerance due to the rising global temperatures and the rise in the frequency of extreme weather occurrences. Furthermore, emerging advances in sequencing technologies have made major progress toward successfully se sequencing the complex cotton genome. © 2024
分类号:
- 相关文献
作者其他论文 更多>>
-
Genetics of biochemical attributes regulating morpho-physiology of upland cotton under high temperature conditions
作者:Majeed S.;Chaudhary M.T.;Mubarik M.S.;Rana I.A.;Shaban M.;Tan D.K.;Jia Y.;Du X.;Hinze L.;Azhar M.T.
关键词:Accessions;Biochemical;Breeding;Cotton;Generation mean analysis;Heat stress
-
Epigenetic insight into floral transition and seed development in plants
作者:Mahmood T.;He S.;Abdullah M.;Sajjad M.;Jia Y.;Ahmar S.;Fu G.;Chen B.;Du X.
关键词:(1-0-2)Chromatin remodeling;Epigenetics;Flowering regulation;Photoperiod;Plant ageing;Seed development;Vernalization
-
Effects of polystyrene nanoplastics on the binding of ciprofloxacin to bovine serum albumin
作者:Du K.;Du X.;Sun Z.;Wang Y.;Bao Y.;Lan J.;Shi R.;Zhao Z.
关键词:Bovine serum albumin;Ciprofloxacin;Fluorescence quenching;Nanoplastics;Spectral analysis
-
Phenotype and signaling pathway analysis to explore the interaction between tomato plants and TYLCV in different organs
作者:Li T.;Zhang Z.;Liu Y.;Sun S.;Wang H.;Geng X.
关键词:(2-0-3)Different organs;JA;SA;Tomato;TYLCV;VIGS
-
Impact of salinity stress on cotton and opportunities for improvement through conventional and biotechnological approaches
作者:Chaudhary M.T.;Majeed S.;Rana I.A.;Ali Z.;Jia Y.;Du X.;Hinze L.;Azhar M.T.
关键词:Biotechnology;Cotton;Development;Morphological;Physiological;Salinity
-
Peptide aptamer-based colorimetric sensor for the detection of L-tryptophan in porcine serum
作者:Wang W.;He Y.;He S.;Liu X.;Gui Q.-W.;Deng L.;Wang H.;Cao Z.;Feng Z.;Xiong B.;Yin Y.
关键词:Colorimetric sensor;Gold nanoparticle;L-tryptophan;Peptide aptamer
-
Natural product guvermectin inhibits guanosine 5′-monophosphate synthetase and confers broad-spectrum antibacterial activity
作者:Zhang M.;Li L.;Li C.;Ma A.;Li J.;Yang C.;Chen X.;Cao P.;Li S.;Zhang Y.;Yuchi Z.;Du X.;Liu C.;Wang X.;Wang X.;Xiang W.
关键词:Antibacterial activity;Bacterial disease;Guanine;Guanosine 5′-monophosphate synthetase;Guvermectin