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中国科学院西双版纳热带植物园机构知识库
Institutional Repository of Xishuangbanna Tropical Botanical Garden
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Total Views
419
Access Source
internal: 1
External: 418
Domestic: 335
Abroad: 84
Annual Views
163
Access Source
internal: 0
External: 163
Domestic: 163
Abroad: 0
Monthly Views
21
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internal: 0
External: 21
Domestic: 21
Abroad: 0
Visits
Visits
1.
Effects of Fat and Protein Levels on Foraging Preferences of Tanni..
[848]
2.
Tannin concentration enhances seed caching by scatter-hoarding rod..
[738]
3.
Scatter-hoarding rodents use different foraging strategies for see..
[647]
4.
Leaves damaged by insect herbivory have consistently different bio..
[424]
5.
Effects of different tea plantation management systems on arthropo..
[399]
6.
Seed size affects rodent-seed interaction consistently across plan..
[346]
7.
Factors influencing repeated seed movements by scatter-hoarding ro..
[341]
8.
Teasing Apart the Effects of Seed Size and Energy Content on Roden..
[305]
9.
Forest fragmentation effects on plant-animal interaction do not al..
[291]
10.
Pollinator sharing and hybridization in a pair of dioecious figs s..
[268]
11.
Plastid phylogenomics improve phylogenetic resolution in the Laura..
[253]
12.
Pre-invasion assessment of potential invasive wood borers on North..
[222]
13.
Non-pollinating cheater wasps benefit from seasonally poor perform..
[220]
14.
Population genetic structure in three sympatric Ficus species asso..
[206]
15.
Preinvasion Assessment of Exotic Bark Beetle-Vectored Fungi to Det..
[198]
16.
Seed density affects post-dispersal seed predation: evidence from ..
[188]
17.
Fine-scale spatiotemporal variation in seed-rodent interactions: A..
[179]
18.
Re-caching behaviour of rodents improves seed dispersal effectiven..
[173]
19.
Plant-rodent interactions after a heavy snowfall decrease plant re..
[168]
20.
The effect of seed size on seed fate in a subtropical forest, sout..
[164]
21.
雪灾干扰后林冠开阔度对黄心树幼苗更新的影响
[161]
22.
Non-pollinating cheater wasps benefit from seasonally poor perform..
[149]
23.
Canopy openness of individual tree promotes seed dispersal by scat..
[148]
24.
Direct and Indirect Effects of Invasive vs. Native Ant-Hemipteran ..
[146]
25.
Disentangling the relative contributions of factors determining se..
[145]
26.
Population genetic structure in three sympatric Ficus species asso..
[145]
27.
A Comparative Morphological Study of the Ultrastructure of Antenna..
[141]
28.
Active pollination in a functionally dioecious Ficus species: An i..
[128]
29.
Absence of consistent pattern between seasons or among species in ..
[127]
30.
Intraspecific variation in seed size mediates rodent-seed interact..
[126]
31.
The evolution of parasitism from mutualism in wasps pollinating th..
[122]
32.
Leaf-mimicking katydids from the Middle Miocene of Yunnan, southwe..
[120]
33.
Exploring rodent-seed interaction experimental designs: a comparat..
[113]
34.
Diversity and metabolic potentials of microbial communities associ..
[110]
35.
Neighbour effects do not always show consistent patterns, contrast..
[98]
36.
Description of two new species of Sycophilodes (Hymenoptera: Chalc..
[96]
37.
Deforestation for Agriculture Temporarily Improved Soil Quality an..
[92]
38.
Leaves damaged by insect herbivory have consistently different bio..
[10]
Downloads
1.
Leaves damaged by insect herbivory have consistently different bio..
[376]
2.
Tannin concentration enhances seed caching by scatter-hoarding rod..
[309]
3.
Seed size affects rodent-seed interaction consistently across plan..
[293]
4.
Forest fragmentation effects on plant-animal interaction do not al..
[217]
5.
Scatter-hoarding rodents use different foraging strategies for see..
[205]
6.
Pre-invasion assessment of potential invasive wood borers on North..
[167]
7.
Effects of Fat and Protein Levels on Foraging Preferences of Tanni..
[164]
8.
Effects of different tea plantation management systems on arthropo..
[151]
9.
Pollinator sharing and hybridization in a pair of dioecious figs s..
[144]
10.
Population genetic structure in three sympatric Ficus species asso..
[137]
11.
Preinvasion Assessment of Exotic Bark Beetle-Vectored Fungi to Det..
[132]
12.
Factors influencing repeated seed movements by scatter-hoarding ro..
[123]
13.
Fine-scale spatiotemporal variation in seed-rodent interactions: A..
[114]
14.
Canopy openness of individual tree promotes seed dispersal by scat..
[107]
15.
Non-pollinating cheater wasps benefit from seasonally poor perform..
[102]
16.
Population genetic structure in three sympatric Ficus species asso..
[98]
17.
Plastid phylogenomics improve phylogenetic resolution in the Laura..
[96]
18.
Direct and Indirect Effects of Invasive vs. Native Ant-Hemipteran ..
[93]
19.
Seed density affects post-dispersal seed predation: evidence from ..
[89]
20.
Exploring rodent-seed interaction experimental designs: a comparat..
[87]
21.
Absence of consistent pattern between seasons or among species in ..
[85]
22.
Intraspecific variation in seed size mediates rodent-seed interact..
[83]
23.
雪灾干扰后林冠开阔度对黄心树幼苗更新的影响
[78]
24.
Teasing Apart the Effects of Seed Size and Energy Content on Roden..
[73]
25.
Re-caching behaviour of rodents improves seed dispersal effectiven..
[73]
26.
A Comparative Morphological Study of the Ultrastructure of Antenna..
[73]
27.
Plant-rodent interactions after a heavy snowfall decrease plant re..
[69]
28.
Disentangling the relative contributions of factors determining se..
[65]
29.
Diversity and metabolic potentials of microbial communities associ..
[62]
30.
Active pollination in a functionally dioecious Ficus species: An i..
[61]
31.
Non-pollinating cheater wasps benefit from seasonally poor perform..
[58]
32.
Deforestation for Agriculture Temporarily Improved Soil Quality an..
[39]
33.
The effect of seed size on seed fate in a subtropical forest, sout..
[25]
34.
Description of two new species of Sycophilodes (Hymenoptera: Chalc..
[16]
35.
The evolution of parasitism from mutualism in wasps pollinating th..
[14]
36.
Neighbour effects do not always show consistent patterns, contrast..
[11]
37.
Leaf-mimicking katydids from the Middle Miocene of Yunnan, southwe..
[10]
38.
Leaves damaged by insect herbivory have consistently different bio..
[9]
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