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981.
Mao Ting Zhu Mingdong Ahmad Shakeel Ye Guoyou Sheng Zhonghua Hu Shikai Jiao Guiai Xie Lihong Tang Shaoqing Wei Xiangjin Hu Peisong Shao Gaoneng 《Molecular breeding : new strategies in plant improvement》2021,41(10):1-14
Molecular Breeding - The stem color of young mung bean is a very useful tool in germplasm identification. Flowering time and plant height (PH) are known to be strongly correlated with crop adaption... 相似文献
982.
983.
984.
Tan Laura X. L. van Dongen Wouter F. D. Sherman Craig D. H. Ekanayake Kasun B. Dann Peter Sutherland Duncan R. Weston Michael A. 《Biological invasions》2021,23(8):2485-2487
Biological Invasions - A correction to this paper has been published: https://doi.org/10.1007/s10530-021-02548-x 相似文献
985.
Shengan Zhu Xueyao Feng Nemat O. Keyhani Yu Liu Dan Jin Sheng Tong Yan Pei Yanhua Fan 《Environmental microbiology》2021,23(9):5087-5101
Entomopathogenic fungi such as Metarhizium rileyi and Beauveria bassiana are widely used insect biological control agents. Little, however, is known concerning genetic or enzymatic factors that differentiate the mechanisms employed by these two fungal pathogens to infect target hosts. Infection by either of these organisms is known to increase levels of the growth and molting hormone, ecdysone, which also regulates the expression of a number of innate immune pathways. M. rileyi, but not B. bassiana, has apparently evolved an ecdysteroid-22-oxidase (MrE22O) that inactivate ecdysone. We show that deletion of MrE22O impaired virulence compared with the wild-type strain, with an increase in ecdysone titer seen in hosts that was coupled to an increase in the expression of antimicrobial genes. An M. rileyi strain engineered to overexpress MrE22O (MrE22OOE), as well as trans-expression in B. bassiana (Bb::MrE220OE) resulted, in strains displaying enhanced virulence and dampening of host immune responses compared with their respective wild-type parental strains. These results indicate that ecdysone plays an important role in mediating responses to fungal infection and that some insect pathogenic fungi have evolved mechanisms for targeting this hormone as a means for facilitating infection. 相似文献
986.
Shan Mingqiu Jiang Yulan Fu Yuanyuan Zhou Yongyi Lu Zhihui Yu Sheng Yan Hui Liu Chanchan Chen Peidong Bao Beihua Zhang Li Wu Qinan 《Phytochemistry Reviews》2021,20(5):991-1012
Phytochemistry Reviews - Nepeta tenuifolia (N. tenuifolia) is a common aromatic herb that is widespread in East Asia. The aerial parts and spikes can be used as the traditional phytomedicines for... 相似文献
987.
Huang Wei Cao Yu Chen Chenyang Wu Xi Sheng Zhe Li Anying 《Journal of molecular histology》2021,52(4):767-780
Journal of Molecular Histology - Myocardial infarction (MI) is a great threat to patients all over the word. MicroRNAs (miRNAs) are a group of non-coding RNAs and can regulate initiation and... 相似文献
988.
Daniela C. Granato Leandro X. Neves Luciana D. Trino Carolina M. Carnielli Ariane F.B. Lopes Sami Yokoo Bianca A. Pauletti Romênia R. Domingues Jamile O. Sá Gabriella Persinoti Douglas A.A. Paixão César Rivera Fabio M. de Sá Patroni Geizecler Tommazetto Alan R. Santos-Silva Márcio A. Lopes Gilberto de Castro Thaís B. Brandão Adriana F. Paes Leme 《Biochimica et Biophysica Acta - Proteins and Proteomics》2021,1869(8):140659
Saliva is a biofluid that maintains the health of oral tissues and the homeostasis of oral microbiota. Studies have demonstrated that Oral squamous cell carcinoma (OSCC) patients have different salivary microbiota than healthy individuals. However, the relationship between these microbial differences and clinicopathological outcomes is still far from conclusive. Herein, we investigate the capability of using metagenomic and metaproteomic saliva profiles to distinguish between Control (C), OSCC without active lesion (L0), and OSCC with active lesion (L1) patients. The results show that there are significantly distinct taxonomies and functional changes in L1 patients compared to C and L0 patients, suggesting compositional modulation of the oral microbiome, as the relative abundances of Centipeda, Veillonella, and Gemella suggested by metagenomics are correlated with tumor size, clinical stage, and active lesion. Metagenomics results also demonstrated that poor overall patient survival is associated with a higher relative abundance of Stenophotromonas, Staphylococcus, Centipeda, Selenomonas, Alloscordovia, and Acitenobacter. Finally, compositional and functional differences in the saliva content by metaproteomics analysis can distinguish healthy individuals from OSCC patients. In summary, our study suggests that oral microbiota and their protein abundance have potential diagnosis and prognosis value for oral cancer patients. Further studies are necessary to understand the role of uniquely detected metaproteins in the microbiota of healthy and OSCC patients as well as the crosstalk between saliva host proteins and the oral microbiome present in OSCC. 相似文献
989.
采用溶液培养方法,研究不同浓度硝酸铈对花生(Arachis hypogaea)幼苗生长、开花数目及抗氧化酶过氧化物酶(POD)、超氧化物歧化酶(SOD)活性与丙二醛(MDA)含量的影响。结果表明,与对照相比,铈浓度低于20.0 mg·L–1能促进花生幼苗生长及开花,其中以10.0 mg·L–1铈的效果最为明显,其生物量和开花数分别约为对照的1.3倍和2.8倍;但高于20.0 mg·L–1则抑制花生幼苗生长,降低花朵数目;同时,低于20.0 mg/L铈可抑制花生幼苗过氧化物酶(POD)活性和降低其丙二醛(MDA)含量,其中以10.0 mg·L–1铈的抑制效果最明显,其POD活性和MDA含量约为对照的47.51%和20.76%;而低于20.0 mg·L–1铈能提高花生幼苗的超氧化物歧化酶(SOD)活性,其中以5.0 mg·L–1铈的促进效果最明显,其SOD活性约为对照的2.0倍。 相似文献
990.
Rgis E. Meyer Aaron R. Tipton Rebecca LaVictoire Gary J. Gorbsky Dean S. Dawson 《Molecular biology of the cell》2021,32(10):1020
In prophase of meiosis I, homologous chromosomes pair and become connected by cross-overs. Chiasmata, the connections formed by cross-overs, enable the chromosome pair, called a bivalent, to attach as a single unit to the spindle. When the meiotic spindle forms in prometaphase, most bivalents are associated with one spindle pole and then go through a series of oscillations on the spindle, attaching to and detaching from microtubules until the partners of the bivalent become bioriented—attached to microtubules from opposite sides of the spindle. The conserved kinase, Mps1, is essential for the bivalents to be pulled by microtubules across the spindle in prometaphase. Here we show that MPS1 is needed for efficient triggering of the migration of microtubule-attached kinetochores toward the poles and promotes microtubule depolymerization. Our data support the model Mps1 acts at the kinetochore to coordinate the successful attachment of a microtubule and the triggering of microtubule depolymerization to then move the chromosome. 相似文献