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A 60-year journey of mycorrhizal research in China:Past,present and future directions 被引量:24
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作者 HE XinHua DUAN YingHua +1 位作者 CHEN YingLong XU MingGang 《Science China(Life Sciences)》 SCIE CAS 2010年第12期1374-1398,共25页
The significance of mycorrhizas(fungal roots in 90% of land plants) in plant nutrient acquisition and growth,element biogeo-chemical cycling and maintaining of terrestrial ecosystem structures has been globally establ... The significance of mycorrhizas(fungal roots in 90% of land plants) in plant nutrient acquisition and growth,element biogeo-chemical cycling and maintaining of terrestrial ecosystem structures has been globally established for more than 120 years.Great progress in mycorrhizal research in the past 60 years(1950-2009,1981-2009 in particular) has also been made across China,particularly in the mainland,Hong Kong and Taiwan.For instance,a total of 20 new and ~120 records of arbuscular mycorrhizal(AM) fungal species,30 new and ~800 records of ectomycorrhizal(EM) fungal species,a dozen of new and ~100 records of orchid mycorrhizal(OM) fungal species have been isolated by morphological observation and/or molecular identification in China since the 1950s.Great accomplishment has also been made in the following area,including fungal species richness and genetic structure,relationships between species composition and plant taxa,effects of mycorrhizal fungi on plant nutrient uptake and growth,resistances to pathogens and interactions with other soil microorganisms,potential of mycorrhizal fungi in phytoremediation and/or land reclamation,alterations of enzymatic activities in mycorrhizal plants,and elevated CO2 and O3 on root colonization and species diversity.Unfortunately,the international community cannot easily appreciate almost all Chinese mycorrhizal studies since the vast majority of them have been published in Chinese and/or in China-based journals.The aim of this review is to make a comprehensive exposure of the past and present China's major mycorrhizal research to the whole world,and then to suggest potential directions for the enhancement of future mycorrhizal research within and/or between the Chinese and international mycorrhizal community. 展开更多
关键词 arbuscular mycorrhiza China ECTOMYCORRHIZA orchid mycorrhiza physiological and ecological functioning PHYTOREMEDIATION species diversity international collaboration
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锰氧化细菌的生理生态功能与作用机制研究进展 被引量:8
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作者 段国文 耿新燕 +1 位作者 魏绪宇 赵国琰 《微生物学通报》 CAS CSCD 北大核心 2020年第9期3039-3053,共15页
锰的生物地球化学循环过程与全球尺度的营养元素循环紧密联系,是影响全球生态平衡及气候变化的重要因素之一。在自然界中,锰元素主要以氧化锰和含氧酸盐的矿物形式存在,近年来的研究观点普遍认为细菌介导的氧化作用是自然环境中锰氧化... 锰的生物地球化学循环过程与全球尺度的营养元素循环紧密联系,是影响全球生态平衡及气候变化的重要因素之一。在自然界中,锰元素主要以氧化锰和含氧酸盐的矿物形式存在,近年来的研究观点普遍认为细菌介导的氧化作用是自然环境中锰氧化物形成的主要原因。锰氧化细菌广泛分布于海洋、锰矿土壤等生态系统,近期在植物微生态系统中也被发现,其生理生态功能未知。细菌的锰氧化过程是一个复杂的过程,多铜氧化酶和过氧化物(氢)酶是参与该过程的主要酶类,但关于其催化机制的认识尚不成熟。本综述系统探讨锰氧化细菌的种类和分布、细菌锰氧化作用的生理生态功能、参与细菌锰氧化作用的功能酶及其分子机制,总结这一研究领域所取得的成果和仍未解决的科学问题,并对今后的发展方向进行展望。 展开更多
关键词 锰氧化细菌 多样性 生理生态功能 多铜氧化酶 过氧化物酶
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低丘红壤区重金属污染退化红壤改良的生物效应研究 被引量:4
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作者 孙华 张桃林 孔志明 《水土保持学报》 CSCD 北大核心 2004年第2期17-20,共4页
通过对江西省贵溪市典型重金属污染退化红壤(菜园土)进行盆栽试验显示,施用石灰,特别是施用高量石灰,将土壤pH值调至微碱性,可以显著提高植物的净光合速率,增加土壤微生物量C(其中又以纤维分解菌的变化最为显著);降低土壤有效态重金属... 通过对江西省贵溪市典型重金属污染退化红壤(菜园土)进行盆栽试验显示,施用石灰,特别是施用高量石灰,将土壤pH值调至微碱性,可以显著提高植物的净光合速率,增加土壤微生物量C(其中又以纤维分解菌的变化最为显著);降低土壤有效态重金属的含量,减轻重金属对植物的危害,是现有条件下切实可行的改良措施。 展开更多
关键词 低丘红壤区 重金属污染 红壤改良 生物效应
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