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国家自然科学基金(31000240)

作品数:3 被引量:11H指数:2
相关作者:叶长鹏康德礼赵建刚更多>>
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发文基金:国家自然科学基金广东省科技计划工业攻关项目广东省教育部产学研结合项目更多>>
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基于耗散结构理论的考洲洋生态修复研究被引量:5
2015年
考洲洋是一个半封闭性的海湾,特殊的构造使其物质交换较少,而近年来外源污染物的积聚,使得环境问更加堪忧。如何恢复考洲洋的生态环境,使其成为服务于地方海洋经济可持续发展的平台,是一个亟需解决的问题。文中应用了物理学耗散结构理论,对考洲洋生态系统做了整体的分析,探究了影响该海湾生态环境的主要因素,提出了实现其生态修复的可操作模式。
左娅陈向明康德礼叶长鹏
关键词:环境污染生态修复耗散结构理论
Photosynthetic Inhibition on the Microalga Phaeodactylum Tricornutum by the Dried Macroalga Gracilaria Tenuistipitata
The effects of the dried macroalga, Gracilaria tenuistipitata (Rhodophyta), on photosynthesis of a highly stre...
Changpeng YeMengcheng ZhangYufeng Yang
关键词:ALLELOPATHY
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Allochemical Inhibitory Effect of Gracilaria tenuistipitata (Rhodophyta) on the Photosynthetic Apparatus of Pyramimonas.sp as Probed by OJIP Chlorophyll a Fluorescence Measurements
The effects of the dried macroalga, Gracilaria tenuistipitata (Rhodophyta), on photosynthesis of a highly stre...
Changpeng Ye , Mengcheng Zhang, Yufeng Yang , Thirumaran Ganapathy Institute of Hydrobiology of Jinan University, Key Laboratory of Eutrophication and Red Tide Control, Education Department of Guangdong Province, Guangzhou 510632, Guangdong Province,China
关键词:HABSALLELOPATHYJIP-TEST
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温度和营养盐胁迫对龙须菜氨氮吸收速率及生长速率的影响被引量:5
2011年
以龙须菜(Gracilaria lemaneiformis)为试验材料,分别研究了温度和营养盐协迫对其生长及氨氮吸收速率的影响。结果表明,2个环境因子对龙须菜生长和吸收氨氮速率均有显著影响。龙须菜在20℃条件下生长较其在10℃和30℃条件下生长快速(P<0.01);营养盐含量过高和过低均不利于龙须菜的生长;营养盐水平越高,龙须菜吸收氨氮的速率越高(P<0.05),但随着试验时间的延长,则呈现出氨氮吸收速率减小的趋势。鉴于龙须菜对氨氮的高吸收能力,可考虑将其作为富营养化海域的生物修复材料。
赵建刚叶长鹏
关键词:龙须菜温度营养盐生长速率
Inhibition of photosynthesis in the microalga Chaetoceros curvisetus(Bacillariophyta) by macroalga Gracilaria lemaneiformis(Rhodophyta)被引量:1
2013年
We investigated the effects of dried macroalga Gracilaria lemaneiform (Rhodophyta) on photosynthesis of the bloom-forming microalga Chaetoceros curvisetus. C. curvisetus was cultured with different amounts of dried G. lemaneiformis under controlled laboratory conditions. We measured the photosynthetic oxygen evolution rate and established the chlorophyll a fluorescence transient (OJIP) curve coupled with its specific parameters. We observed concentration-dependent and time-dependent relationships between dried G. lemaneiformis and inhibition of photosynthesis in C. curvisetus. Co-culture with dried G. lemaneiformis also resulted in a decrease in the light-saturated maximum photosynthetic oxygen evolution rate (P^ax) in C. curvisetus, and a decrease in the OJIP curve along with its specific parameters; the maximum photochemical efficiency of PSII (FJFm), the amount of active PSII reaction centers per excited cross section at t=0 and t=--tFM (RC/CS0 and RC/CSm, respectively), the absorption flux per excited cross section at t=0 (ABS/ CS0), and the efficiency with which a trapped exciton moves an electron into the electron transport chain (~u0). The dark respiration rate (Rd) increased in C. curvisetus co-cultured with dried G. lemaneiformis. The JIP-test and the oxygen evolution results indicated that dried G. lemaneiJbrmis decreased the number of active reaction centers, blocked the electron transport chain, and damaged the oxygen-evolving complex of C. curvisetus. This result indicated that dried fragments of G. lemaneiformis could effectively inhibit photosynthesis of C. curvisetus, and thus, could serve as a functional product to control and mitigate C. curvisetus blooms.
叶长鹏张梦成杨宇峰
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