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2015年8月13日星期四

How marmoset babies learn to talk


Scientists used to think humans were the only primates who learned to speak, in part, by mimicking mom and dad, but marmoset monkeys have shown that we’re not all that unique in our learned communication. As the fuzzy little marmosets grow up, parents “teach” their babies mature vocalizations, called phees, by responding to their young’s cries with mature phees. Physical growth also helps the transition from baby to adult calls, but the difference in baby and adult noises is so stark that scientists don’t think it’s just physical maturation that makes a mature phee, they report online today in Science. Similar to humans, baby marmosets seem to listen to and learn from their parents, like an audio version of marmoset see, marmoset do.

Source:http://bit.ly/1WnKsDs

2015年8月12日星期三

Are marine organisms evolving to protect their young in response to ocean acidification?


Summary:
Marine organisms living in acidified waters exhibit a tendency to nurture their offspring to a greater extent than those in more regular conditions. Scientists have found that polychaete worms located around volcanic vents in the Mediterranean grow and develop their eggs within the protection of the family unit -- in contrast to closely-related species that release them into the water column to fend for themselves.
Marine organisms living in acidified waters exhibit a tendency to nurture their offspring to a greater extent than those in more regular conditions.
Credit: Plymouth University
Marine organisms living in acidified waters exhibit a tendency to nurture their offspring to a greater extent than those in more regular conditions.
Researchers at Plymouth University have found that polychaete worms located around volcanic vents in the Mediterranean grow and develop their eggs within the protection of the family unit -- in contrast to closely-related species that release them into the water column to fend for themselves.
The scientists say the findings could provide an important insight into how organisms might adjust to increasing levels of carbon dioxide in the sea -- and the ramifications that might have for future biodiversity.
Their report -- published in Scientific Reports -- was based on field research off the island of Ischia in Italy and lab-work in which the breeding patterns of the worms were observed at closer quarters.
Noelle Lucey, a researcher within Plymouth University's Marine Institute, and of the University of Pavia, said: "One of the most interesting annelid worms here typically grows to around 3cm in length and is found on the seafloor. It was previously thought that their breeding is triggered by a full moon, when they swim up to the surface and release -- or 'broadcast' -- their eggs. But our studies at the CO2 vents off Ischia have found something very different: those species living near the volcanic vents, in waters rich in carbon dioxide, seem to have adapted to the harsher conditions by brooding their offspring."
The team found that 12 of the 13 species that had colonized the vent area exhibited brooding characteristics, most notably producing fewer and larger eggs that were usually retained within some form of protective sac. Ten of those species were in higher abundance around the vents than in the ambient areas surrounding them -- some by a ratio as high as nine-to-one.
The observation that brooding worms dominated the CO2 vent areas, and existing evidence of physiological and genetic adaptation in vent-inhabiting species, prompted the researchers to take immature adult Platynereis dumerilii specimens and attempt to cross breed them in the laboratory. A male -- taken from the ambient control area -- and a female -- from the vent zone -- almost immediately began to breed. But instead of the typical broadcast pattern, the eggs produced were five times larger than the average and were laid in a complex tube structure or brooding pouch.
When genetic analysis was conducted, it became clear that worms from inside the CO2 vents were from a sibling species of Platynereis massiliensis, one that has diverged from Platynereis dumerilii in the recent past -- confirming that all of the polychaete species are brooders of some sort.
Dr Piero Calosi, from the University of Quebec in Rimouski, Canada, said: "Our study confirms the idea that marine organisms have evolved brooding characteristics in response to environmental stresses, such as ocean acidification."
On the breadth and importance of their study Dr Chiara Lombardi, from ENEA, Italy, said: "Studies like ours can help substantially advance our predictive ability on the fate of marine biodiversity simply based on species characteristic, such as their reproductive strategy."
Ms Lucey added: "This study brings us one step closer to understanding which marine species will be more resilient to climate changes. In fact, our work helps in establishing a fundamental principle to be used to guide decisions on the conservation of marine ecosystems and to help better manage the fisheries and aquaculture industries."

Story Source:
The above post is reprinted from materials provided by University of Plymouth. The original item was written by Andrew Merrington. Note: Materials may be edited for content and length.

2015年8月7日星期五

Predator or prey? The eyes have it


Crocodiles and gazelles don’t really see eye-to-eye on a number of issues—the culinary virtues of gazelle meat being the most prominent. But these animals do see the world differently, in part because of their pupils. The crocodile’s has a vertical slit, whereas the pupil of the gazelle is horizontal. The lion, lurking nearby, has a circular dot similar to humans. So why the different shapes? Researchers propose today in Science Advances that an animal’s status as predator or prey may be the determining factor. After analyzing the pupils of more than 200 land species including canines, felines, reptiles, and ungulates, the scientists found that short ambush predators such as alligators and foxes are more likely to have vertical pupils, whereas prey species—like gazelles or sheep—are more likely to have horizontal pupils. A vertical view is best for gauging distances along the ground, a useful ability when you’re lurking in the shadows and have only one shot at a mouse. A horizontal shape gives prey animals a panoramic view suited to spotting predators approaching from nearly any angle. This ability is enhanced by a feature that lets grazers rotate their eyes to keep their pupils parallel with the horizon. Circular pupils are generally found on animals that chase down their prey, such as cheetahs, or on taller ambush predators like lions and tigers. This suggests that above a certain shoulder height—about 42 cm—the functional advantages of vertical pupils are lost. The will to survive, it seems, has helped the eye of the tiger—and the fox and the horse—evolve pupils best suited to helping them do just that.
Source:http://news.sciencemag.org/biology/2015/08/video-predator-or-prey-eyes-have-it

2015年7月20日星期一

International Journal of Computational and Theoretical Chemistry

International Journal of Computational and Theoretical Chemistry (IJCTC) , a peer-reviewed open access journal published bimonthly in English-language, provides a broad coverage of developments in theoretical and computational chemistry, as well as their applications to other scientific fields. Articles are broadly categorized into quantum chemistry, chemical dynamics, statistical mechanics, and chemical biology, ranging from fundamental theoretical methodology and computational algorithm to numerical applications. It also seeks to provide theories that explain chemical observations. Major components include the application of quantum mechanics to the understanding of valency, molecular dynamics, statistical thermodynamics and theories of electrolyte solutions, reaction networks, polymerization and catalysis.

If you like, you can read all issue in this journal for free:http://bit.ly/1Jdpr91

2015年7月7日星期二

10 Amazing Science Experiments you can do @ home



List of experiments: 
 12,000V Jacobs Ladder 
 Amazing Candle Trick! 
 Amazing Gravity Ruler Trick! Anti Gravity Paperclip Trick! 
 Apple Battery - Science Experiment! 
 Atmosphere Pressure 
 Awesome 20 Dollar Bill illusion! 
 Awesome Compressed Air Explosion Science Experiment! 
 Awesome Thumbtack Trick 
 Baking Soda and Vinegar Candle Trick 
 Balancing a Cup on Knifes 

I don't know if you are interested in these amazing science experiments, but I can tell you that when I was a kid, I love to do something like that. You know, child is always curious, and you? If you like, you can also do these experiments at home, that will be fun. But be careful!

Source of this video:https://www.youtube.com/watch?v=wCDTU8KA_SU