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10篇 您的检索式:作者名="Sujeevan"
    题名 作者 年代 出处 被引量
1Barcoding animal life: cytochrome c oxidase subunit 1 divergences among closely related species显示文摘Hebert Paul D.N. Ratnasingham Sujeevan de Waard Jeremy R 2003Proceedings of the Royal Society B: Biological Sciences2003,,:2
2Barcoding animal life: cytochrome c oxidase subunit 1 divergences among closely related species显示文摘Hebert Paul D.N. Ratnasingham Sujeevan de Waard Jeremy R 2003Proceedings of the Royal Society B: Biological Sciences2003,,:1
3Semi-structured documentcategorization with a semantic kernel 显示文摘SUJEEVAN A YOUNES B 2009PatternRecognition2009,42,9:1
4Semi-structured document categorization with a semantic kernel显示文摘Sujeevan A Younes B 2009Pattern Recognition2009,42,9:1
5Barcoding animal life: cytochrome c oxidase subunit 1 divergences among closely related species显示文摘Hebert Paul D.N. Ratnasingham Sujeevan de Waard Jeremy R 2003Proceedings of the Royal Society B: Biological Sciences2003,,:1
6Semi-structured document categorization with a semantic kernel 显示文摘SUJEEVAN A YOUNES B 2009Pattern Recognition2009,42,9:1
7Barcoding animal life: cytochrome c oxidase subunit 1 divergences among closely related species显示文摘Hebert Paul D.N. Ratnasingham Sujeevan de Waard Jeremy R 2003Proceedings of the Royal Society B: Biological Sciences2003,,:1
8Barcoding animal life: cytochrome c oxidase subunit 1 divergences among closely related species显示文摘Hebert Paul D.N. Ratnasingham Sujeevan de Waard Jeremy R 2003Proceedings of the Royal Society B: Biological Sciences2003,,:1
9Bareoding animal life: cytochrome coxidase subunit 1 divergences among closely related species 显示文摘Paul D N Hebert Sujeevan Ratnasingham Jeremy R deWaard 2003Proc Biol Sci2003,270,1:1
10Methane Emission from Rice Fields:Necessity for Molecular Approach for Mitigation显示文摘Anthropogenic methane emissions are a leading cause of the increase in global averagetemperatures,often referred to as global warming.Flooded soils play a significant role in methaneproduction,where the anaerobic conditions promote the production of methane by methanogenicmicroorganisms.Rice fields contribute a considerable portion of agricultural methane emissions,as riceplants provide both factors that enhance and limit methane production.Rice plants harbor both methaneproducingand methane-oxidizing microorganisms.Exudates from rice roots provide source for methaneproduction,while oxygen delivered from the root aerenchyma enhances methane oxidation.Studies haveshown that the diversity of these microorganisms depends on rice cultivars with some genes characterizedas harboring specific groups of microorganisms related to methane emissions.However,there is still aneed for research to determine the balance between methane production and oxidation,as rice plantspossess the ability to regulate net methane production.Various agronomical practices,such as fertilizerand water management,have been employed to mitigate methane emissions.Nevertheless,studiescorrelating agronomic and chemical management of methane with productivity are limited.Moreover,evidences for breeding low-methane-emitting rice varieties are scattered largely due to the absence ofcoordinated breeding programs.Research has indicated that phenotypic characteristics,such as rootbiomass,shoot architecture,and aerenchyma,are highly correlated with methane emissions.This reviewdiscusses available studies that involve the correlation between plant characteristics and methaneemissions.It emphasizes the necessity and importance of breeding low-methane-emitting rice varieties inaddition to existing agronomic,biological,and chemical practices.The review also delves into the idealphenotypic and physiological characteristics of low-methane-emitting rice and potential breeding techniques,drawing from studies conducted with diverse varieties,mutants,and transgenic plants.Sujeevan RAJENDRAN Hyeonseo PARK Jiyoung KIM Soon Ju PARK Dongjin SHIN Jong-Hee LEE Young Hun SONG Nam-Chon PAEK Chul Min KIM 2024Rice science2024,31,2:0
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