AGL 40.00 No Change ▼ 0.00 (0%)
AIRLINK 127.04 No Change ▼ 0.00 (0%)
BOP 6.67 No Change ▼ 0.00 (0%)
CNERGY 4.51 No Change ▼ 0.00 (0%)
DCL 8.55 No Change ▼ 0.00 (0%)
DFML 41.44 No Change ▼ 0.00 (0%)
DGKC 86.85 No Change ▼ 0.00 (0%)
FCCL 32.28 No Change ▼ 0.00 (0%)
FFBL 64.80 No Change ▼ 0.00 (0%)
FFL 10.25 No Change ▼ 0.00 (0%)
HUBC 109.57 No Change ▼ 0.00 (0%)
HUMNL 14.68 No Change ▼ 0.00 (0%)
KEL 5.05 No Change ▼ 0.00 (0%)
KOSM 7.46 No Change ▼ 0.00 (0%)
MLCF 41.38 No Change ▼ 0.00 (0%)
NBP 60.41 No Change ▼ 0.00 (0%)
OGDC 190.10 No Change ▼ 0.00 (0%)
PAEL 27.83 No Change ▼ 0.00 (0%)
PIBTL 7.83 No Change ▼ 0.00 (0%)
PPL 150.06 No Change ▼ 0.00 (0%)
PRL 26.88 No Change ▼ 0.00 (0%)
PTC 16.07 No Change ▼ 0.00 (0%)
SEARL 86.00 No Change ▼ 0.00 (0%)
TELE 7.71 No Change ▼ 0.00 (0%)
TOMCL 35.41 No Change ▼ 0.00 (0%)
TPLP 8.12 No Change ▼ 0.00 (0%)
TREET 16.41 No Change ▼ 0.00 (0%)
TRG 53.29 No Change ▼ 0.00 (0%)
UNITY 26.16 No Change ▼ 0.00 (0%)
WTL 1.26 No Change ▼ 0.00 (0%)
BR100 10,010 Increased By 126.5 (1.28%)
BR30 31,023 Increased By 422.5 (1.38%)
KSE100 94,192 Increased By 836.5 (0.9%)
KSE30 29,201 Increased By 270.2 (0.93%)

Scientists on November 23 reported they had unravelled the genetic code of the spider mite, a pest that attacks more than a thousand plant species, including corn, soy, apples, grapes, maize and tomatoes. A team led by Yves van de Peer of the Flanders Interuniversity Institute for Biotechnology in Belgium, sequenced the DNA of the two-spotted spider mite (Tetranychus urticae).
The investigation could open insights into how spiders evolved and how they produce their famously strong silk.
It should also open up new strategies for protecting crops from the mite, the scientists hope.
Early analysis has pinpointed genes showing that the 0.1 centimetre (0.04 inch) arthropod can neutralise pesticides as well as poisons that some plants use as a natural defence against predators. The study appears in the British journal Nature.

Copyright Agence France-Presse, 2011

Comments

Comments are closed.